organization:university of british columbia

  • Beyond the Hype of Lab-Grown Diamonds
    https://earther.gizmodo.com/beyond-the-hype-of-lab-grown-diamonds-1834890351

    Billions of years ago when the world was still young, treasure began forming deep underground. As the edges of Earth’s tectonic plates plunged down into the upper mantle, bits of carbon, some likely hailing from long-dead life forms were melted and compressed into rigid lattices. Over millions of years, those lattices grew into the most durable, dazzling gems the planet had ever cooked up. And every so often, for reasons scientists still don’t fully understand, an eruption would send a stash of these stones rocketing to the surface inside a bubbly magma known as kimberlite.

    There, the diamonds would remain, nestled in the kimberlite volcanoes that delivered them from their fiery home, until humans evolved, learned of their existence, and began to dig them up.

    The epic origin of Earth’s diamonds has helped fuel a powerful marketing mythology around them: that they are objects of otherworldly strength and beauty; fitting symbols of eternal love. But while “diamonds are forever” may be the catchiest advertising slogan ever to bear some geologic truth, the supply of these stones in the Earth’s crust, in places we can readily reach them, is far from everlasting. And the scars we’ve inflicted on the land and ourselves in order to mine diamonds has cast a shadow that still lingers over the industry.

    Some diamond seekers, however, say we don’t need to scour the Earth any longer, because science now offers an alternative: diamonds grown in labs. These gems aren’t simulants or synthetic substitutes; they are optically, chemically, and physically identical to their Earth-mined counterparts. They’re also cheaper, and in theory, limitless. The arrival of lab-grown diamonds has rocked the jewelry world to its core and prompted fierce pushback from diamond miners. Claims abound on both sides.

    Growers often say that their diamonds are sustainable and ethical; miners and their industry allies counter that only gems plucked from the Earth can be considered “real” or “precious.” Some of these assertions are subjective, others are supported only by sparse, self-reported, or industry-backed data. But that’s not stopping everyone from making them.

    This is a fight over image, and when it comes to diamonds, image is everything.
    A variety of cut, polished Ada Diamonds created in a lab, including smaller melee stones and large center stones. 22.94 carats total. (2.60 ct. pear, 2.01 ct. asscher, 2.23 ct. cushion, 3.01 ct. radiant, 1.74 ct. princess, 2.11 ct. emerald, 3.11 ct. heart, 3.00 ct. oval, 3.13 ct. round.)
    Image: Sam Cannon (Earther)
    Same, but different

    The dream of lab-grown diamond dates back over a century. In 1911, science fiction author H.G. Wells described what would essentially become one of the key methods for making diamond—recreating the conditions inside Earth’s mantle on its surface—in his short story The Diamond Maker. As the Gemological Institute of America (GIA) notes, there were a handful of dubious attempts to create diamonds in labs in the late 19th and early 20th century, but the first commercial diamond production wouldn’t emerge until the mid-1950s, when scientists with General Electric worked out a method for creating small, brown stones. Others, including De Beers, soon developed their own methods for synthesizing the gems, and use of the lab-created diamond in industrial applications, from cutting tools to high power electronics, took off.

    According to the GIA’s James Shigley, the first experimental production of gem-quality diamond occurred in 1970. Yet by the early 2000s, gem-quality stones were still small, and often tinted yellow with impurities. It was only in the last five or so years that methods for growing diamonds advanced to the point that producers began churning out large, colorless stones consistently. That’s when the jewelry sector began to take a real interest.

    Today, that sector is taking off. The International Grown Diamond Association (IGDA), a trade group formed in 2016 by a dozen lab diamond growers and sellers, now has about 50 members, according to IGDA secretary general Dick Garard. When the IGDA first formed, lab-grown diamonds were estimated to represent about 1 percent of a $14 billion rough diamond market. This year, industry analyst Paul Zimnisky estimates they account for 2-3 percent of the market.

    He expects that share will only continue to grow as factories in China that already produce millions of carats a year for industrial purposes start to see an opportunity in jewelry.
    “I have a real problem with people claiming one is ethical and another is not.”

    “This year some [factories] will come up from 100,000 gem-quality diamonds to one to two million,” Zimnisky said. “They already have the infrastructure and equipment in place” and are in the process of upgrading it. (About 150 million carats of diamonds were mined last year, according to a global analysis of the industry conducted by Bain & Company.)

    Production ramp-up aside, 2018 saw some other major developments across the industry. In the summer, the Federal Trade Commission (FTC) reversed decades of guidance when it expanded the definition of a diamond to include those created in labs and dropped ‘synthetic’ as a recommended descriptor for lab-grown stones. The decision came on the heels of the world’s top diamond producer, De Beers, announcing the launch of its own lab-grown diamond line, Lightbox, after having once vowed never to sell man-made stones as jewelry.

    “I would say shock,” Lightbox Chief Marketing Officer Sally Morrison told Earther when asked how the jewelry world responded to the company’s launch.

    While the majority of lab-grown diamonds on the market today are what’s known as melee (less than 0.18 carats), the tech for producing the biggest, most dazzling diamonds continues to improve. In 2016, lab-grown diamond company MiaDonna announced its partners had grown a 6.28 carat gem-quality diamond, claimed to be the largest created in the U.S. to that point. In 2017, a lab in Augsburg University, Germany that grows diamonds for industrial and scientific research applications produced what is thought to be the largest lab-grown diamond ever—a 155 carat behemoth that stretches nearly 4 inches across. Not gem quality, perhaps, but still impressive.

    “If you compare it with the Queen’s diamond, hers is four times heavier, it’s clearer” physicist Matthias Schreck, who leads the group that grew that beast of a jewel, told me. “But in area, our diamond is bigger. We were very proud of this.”

    Diamonds can be created in one of two ways: Similar to how they form inside the Earth, or similar to how scientists speculate they might form in outer space.

    The older, Earth-inspired method is known as “high temperature high pressure” (HPHT), and that’s exactly what it sounds like. A carbon source, like graphite, is placed in a giant, mechanical press where, in the presence of a catalyst, it’s subjected to temperatures of around 1,600 degrees Celsius and pressures of 5-6 Gigapascals in order to form diamond. (If you’re curious what that sort of pressure feels like, the GIA describes it as similar to the force exerted if you tried to balance a commercial jet on your fingertip.)

    The newer method, called chemical vapor deposition (CVD), is more akin to how diamonds might form in interstellar gas clouds (for which we have indirect, spectroscopic evidence, according to Shigley). A hydrocarbon gas, like methane, is pumped into a low-pressure reactor vessel alongside hydrogen. While maintaining near-vacuum conditions, the gases are heated very hot—typically 3,000 to 4,000 degrees Celsius, according to Lightbox CEO Steve Coe—causing carbon atoms to break free of their molecular bonds. Under the right conditions, those liberated bits of carbon will settle out onto a substrate—typically a flat, square plate of a synthetic diamond produced with the HPHT method—forming layer upon layer of diamond.

    “It’s like snow falling on a table on your back porch,” Jason Payne, the founder and CEO of lab-grown diamond jewelry company Ada Diamonds, told me.

    Scientists have been forging gem-quality diamonds with HPHT for longer, but today, CVD has become the method of choice for those selling larger bridal stones. That’s in part because it’s easier to control impurities and make diamonds with very high clarity, according to Coe. Still, each method has its advantages—Payne said that HPHT is faster and the diamonds typically have better color (which is to say, less of it)—and some companies, like Ada, purchase stones grown in both ways.

    However they’re made, lab-grown diamonds have the same exceptional hardness, stiffness, and thermal conductivity as their Earth-mined counterparts. Cut, they can dazzle with the same brilliance and fire—a technical term to describe how well the diamond scatters light like a prism. The GIA even grades them according to the same 4Cs—cut, clarity, color, and carat—that gemologists use to assess diamonds formed in the Earth, although it uses a slightly different terminology to report the color and clarity grades for lab-grown stones.

    They’re so similar, in fact, that lab-grown diamond entering the larger diamond supply without any disclosures has become a major concern across the jewelry industry, particularly when it comes to melee stones from Asia. It’s something major retailers are now investing thousands of dollars in sophisticated detection equipment to suss out by searching for minute differences in, say, their crystal shape or for impurities like nitrogen (much less common in lab-grown diamond, according to Shigley).

    Those differences may be a lifeline for retailers hoping to weed out lab-grown diamonds, but for companies focused on them, they can become another selling point. The lack of nitrogen in diamonds produced with the CVD method, for instance, gives them an exceptional chemical purity that allows them to be classified as type IIa; a rare and coveted breed that accounts for just 2 percent of those found in nature. Meanwhile, the ability to control everything about the growth process allows companies like Lightbox to adjust the formula and produce incredibly rare blue and pink diamonds as part of their standard product line. (In fact, these colored gemstones have made up over half of the company’s sales since launch, according to Coe.)

    And while lab-grown diamonds boast the same sparkle as their Earthly counterparts, they do so at a significant discount. Zimnisky said that today, your typical one carat, medium quality diamond grown in a lab will sell for about $3,600, compared with $6,100 for its Earth-mined counterpart—a discount of about 40 percent. Two years ago, that discount was only 18 percent. And while the price drop has “slightly tapered off” as Zimnisky put it, he expects it will fall further thanks in part to the aforementioned ramp up in Chinese production, as well as technological improvements. (The market is also shifting in response to Lightbox, which De Beers is using to position lab-grown diamonds as mass produced items for fashion jewelry, and which is selling its stones, ungraded, at the controversial low price of $800 per carat—a discount of nearly 90 percent.)

    Zimnisky said that if the price falls too fast, it could devalue lab-grown diamonds in the eyes of consumers. But for now, at least, paying less seems to be a selling point. A 2018 consumer research survey by MVI Marketing found that most of those polled would choose a larger lab-grown diamond over a smaller mined diamond of the same price.

    “The thing [consumers] seem most compelled by is the ability to trade up in size and quality at the same price,” Garard of IGDA said.

    Still, for buyers and sellers alike, price is only part of the story. Many in the lab-grown diamond world market their product as an ethical or eco-friendly alternative to mined diamonds.

    But those sales pitches aren’t without controversy.
    A variety of lab-grown diamond products arrayed on a desk at Ada Diamonds showroom in Manhattan. The stone in the upper left gets its blue color from boron. Diamonds tinted yellow (top center) usually get their color from small amounts of nitrogen.
    Photo: Sam Cannon (Earther)
    Dazzling promises

    As Anna-Mieke Anderson tells it, she didn’t enter the diamond world to become a corporate tycoon. She did it to try and fix a mistake.

    In 1999, Anderson purchased herself a diamond. Some years later, in 2005, her father asked her where it came from. Nonplussed, she told him it came from the jewelry store. But that wasn’t what he was asking: He wanted to know where it really came from.

    “I actually had no idea,” Anderson told Earther. “That led me to do a mountain of research.”

    That research eventually led Anderson to conclude that she had likely bought a diamond mined under horrific conditions. She couldn’t be sure, because the certificate of purchase included no place of origin. But around the time of her purchase, civil wars funded by diamond mining were raging across Angola, Sierra Leone, the Democratic Republic of Congo and Liberia, fueling “widespread devastation” as Global Witness put it in 2006. At the height of the diamond wars in the late ‘90s, the watchdog group estimates that as many as 15 percent of diamonds entering the market were conflict diamonds. Even those that weren’t actively fueling a war were often being mined in dirty, hazardous conditions; sometimes by children.

    “I couldn’t believe I’d bought into this,” Anderson said.

    To try and set things right, Anderson began sponsoring a boy living in a Liberian community impacted by the blood diamond trade. The experience was so eye-opening, she says, that she eventually felt compelled to sponsor more children. Selling conflict-free jewelry seemed like a fitting way to raise money to do so, but after a great deal more research, Anderson decided she couldn’t in good faith consider any diamond pulled from the Earth to be truly conflict-free in either the humanitarian or environmental sense. While diamond miners were, by the early 2000s, getting their gems certified “conflict free” according to the UN-backed Kimberley Process, the certification scheme’s definition of a conflict diamond—one sold by rebel groups to finance armed conflicts against governments—felt far too narrow.

    “That [conflict definition] eliminates anything to do with the environment, or eliminates a child mining it, or someone who was a slave, or beaten, or raped,” Anderson said.

    And so she started looking into science, and in 2007, launching MiaDonna as one of the world’s first lab-grown diamond jewelry companies. The business has been activism-oriented from the get-go, with at least five percent of its annual earnings—and more than 20 percent for the last three years—going into The Greener Diamond, Anderson’s charity foundation which has funded a wide range of projects, from training former child soldiers in Sierra Leone to grow food to sponsoring kids orphaned by the West African Ebola outbreak.

    MiaDonna isn’t the only company that positions itself as an ethical alternative to the traditional diamond industry. Brilliant Earth, which sells what it says are carefully-sourced mined and lab-created diamonds, also donates a small portion of its profits to supporting mining communities. Other lab-grown diamond companies market themselves as “ethical,” “conflict-free,” or “world positive.” Payne of Ada Diamonds sees, in lab-grown diamonds, not just shiny baubles, but a potential to improve medicine, clean up pollution, and advance society in countless other ways—and he thinks the growing interest in lab-grown diamond jewelry will help propel us toward that future.

    Others, however, say black-and-white characterizations when it comes to social impact of mined diamonds versus lab-grown stones are unfair. “I have a real problem with people claiming one is ethical and another is not,” Estelle Levin-Nally, founder and CEO of Levin Sources, which advocates for better governance in the mining sector, told Earther. “I think it’s always about your politics. And ethics are subjective.”

    Saleem Ali, an environmental researcher at the University of Delaware who serves on the board of the Diamonds and Development Initiative, agrees. He says the mining industry has, on the whole, worked hard to turn itself around since the height of the diamond wars and that governance is “much better today” than it used to be. Human rights watchdog Global Witness also says that “significant progress” has been made to curb the conflict diamond trade, although as Alice Harle, Senior Campaigner with Global Witness told Earther via email, diamonds do still fuel conflict, particularly in the Central African Republic and Zimbabwe.

    Most industry observers seems to agree that the Kimberley Process is outdated and inadequate, and that more work is needed to stamp out other abuses, including child labor and forced labor, in the artisanal and small-scale diamond mining sector. Today, large-scale mining operations don’t tend to see these kinds of problems, according to Julianne Kippenberg, associate director for children’s rights at Human Rights Watch, but she notes that there may be other community impacts surrounding land rights and forced resettlement.

    The flip side, Ali and Levin-Nally say, is that well-regulated mining operations can be an important source of economic development and livelihood. Ali cites Botswana and Russia as prime examples of places where large-scale mining operations have become “major contributors to the economy.” Dmitry Amelkin, head of strategic projects and analytics for Russian diamond mining giant Alrosa, echoed that sentiment in an email to Earther, noting that diamonds transformed Botswana “from one of the poorest [countries] in the world to a middle-income country” with revenues from mining representing almost a third of its GDP.

    In May, a report commissioned by the Diamond Producers Association (DPA), a trade organization representing the world’s largest diamond mining companies, estimated that worldwide, its members generate nearly $4 billion in direct revenue for employees and contractors, along with another $6.8 billion in benefits via “local procurement of goods and services.” DPA CEO Jean-Marc Lieberherr said this was a story diamond miners need to do a better job telling.

    “The industry has undergone such changes since the Blood Diamond movie,” he said, referring to the blockbuster 2006 film starring Leonardo DiCaprio that drew global attention to the problem of conflict diamonds. “And yet people’s’ perceptions haven’t evolved. I think the main reason is we have not had a voice, we haven’t communicated.”

    But conflict and human rights abuses aren’t the only issues that have plagued the diamond industry. There’s also the lasting environmental impact of the mining itself. In the case of large-scale commercial mines, this typically entails using heavy machinery and explosives to bore deep into those kimberlite tubes in search of precious stones.

    Some, like Maya Koplyova, a geologist at the University of British Columbia who studies diamonds and the rocks they’re found in, see this as far better than many other forms of mining. “The environmental footprint is the fThere’s also the question of just how representative the report’s energy consumption estimates for lab-grown diamonds are. While he wouldn’t offer a specific number, Coe said that De Beers’ Group diamond manufacturer Element Six—arguably the most advanced laboratory-grown diamond company in the world—has “substantially lower” per carat energy requirements than the headline figures found inside the new report. When asked why this was not included, Rick Lord, ESG analyst at Trucost, the S&P global group that conducted the analysis, said it chose to focus on energy estimates in the public record, but that after private consultation with Element Six it did not believe their data would “materially alter” the emissions estimates in the study.

    Finally, it’s important to consider the source of the carbon emissions. While the new report states that about 40 percent of the emissions associated with mining a diamond come from fossil fuel-powered vehicles and equipment, emissions associated with growing a diamond come mainly from electric power. Today, about 68 percent of lab-grown diamonds hail from China, Singapore, and India combined according to Zimnisky, where the power is drawn from largely fossil fuel-powered grids. But there is, at least, an opportunity to switch to renewables and drive that carbon footprint way down.
    “The reality is both mining and manufacturing consume energy and probably the best thing we could do is focus on reducing energy consumption.”

    And some companies do seem to be trying to do that. Anderson of MiaDonna says the company only sources its diamonds from facilities in the U.S., and that it’s increasingly trying to work with producers that use renewable energy. Lab-grown diamond company Diamond Foundry grows its stones inside plasma reactors running “as hot as the outer layer of the sun,” per its website, and while it wouldn’t offer any specific numbers, that presumably uses more energy than your typical operation running at lower temperatures. However, company spokesperson Ye-Hui Goldenson said its Washington State ‘megacarat factory’ was cited near a well-maintained hydropower source so that the diamonds could be produced with renewable energy. The company offsets other fossil fuel-driven parts of its operation by purchasing carbon credits.

    Lightbox’s diamonds currently come from Element Six’s UK-based facilities. The company is, however, building a $94-million facility near Portland, Oregon, that’s expected to come online by 2020. Coe said he estimates about 45 percent of its power will come from renewable sources.

    “The reality is both mining and manufacturing consume energy and probably the best thing we could do is focus on reducing energy consumption,” Coe said. “That’s something we’re focused on in Lightbox.”

    In spite of that, Lightbox is somewhat notable among lab-grown diamond jewelry brands in that, in the words of Morrison, it is “not claiming this to be an eco-friendly product.”

    “While it is true that we don’t dig holes in the ground, the energy consumption is not insignificant,” Morrison told Earther. “And I think we felt very uncomfortable promoting on that.”
    Various diamonds created in a lab, as seen at the Ada Diamonds showroom in Manhattan.
    Photo: Sam Cannon (Earther)
    The real real

    The fight over how lab-grown diamonds can and should market themselves is still heating up.

    On March 26, the FTC sent letters to eight lab-grown and diamond simulant companies warning them against making unsubstantiated assertions about the environmental benefits of their products—its first real enforcement action after updating its jewelry guides last year. The letters, first obtained by JCK news director Rob Bates under a Freedom of Information Act request, also warned companies that their advertising could falsely imply the products are mined diamonds, illustrating that, even though the agency now says a lab-grown diamond is a diamond, the specific origin remains critically important. A letter to Diamond Foundry, for instance, notes that the company has at times advertised its stones as “above-ground real” without the qualification of “laboratory-made.” It’s easy to see how a consumer might miss the implication.

    But in a sense, that’s what all of this is: A fight over what’s real.
    “It’s a nuanced reality that we’re in. They are a type of diamond.”

    Another letter, sent to FTC attorney Reenah Kim by the nonprofit trade organization Jewelers Vigilance Committee on April 2, makes it clear that many in the industry still believe that’s a term that should be reserved exclusively for gems formed inside the Earth. The letter, obtained by Earther under FOIA, urges the agency to continue restricting the use of the terms “real,” “genuine,” “natural,” “precious,” and “semi-precious” to Earth-mined diamonds and gemstones. Even the use of such terms in conjunction with “laboratory grown,” the letter argues, “will create even more confusion in an already confused and evolving marketplace.”

    JVC President Tiffany Stevens told Earther that the letter was a response to a footnote in an explanatory document about the FTC’s recent jewelry guide changes, which suggested the agency was considering removing a clause about real, precious, natural and genuine only being acceptable modifiers for gems mined from the Earth.

    “We felt that given the current commercial environment, that we didn’t think it was a good time to take that next step,” Stevens told Earther. As Stevens put it, the changes the FTC recently made, including expanding the definition of diamond and tweaking the descriptors companies can use to label laboratory-grown diamonds as such, have already been “wildly misinterpreted” by some lab-grown diamond sellers that are no longer making the “necessary disclosures.”

    Asked whether the JVC thinks lab-grown diamonds are, in fact, real diamonds, Stevens demurred.

    “It’s a nuanced reality that we’re in,” she said. “They are a type of diamond.”

    Change is afoot in the diamond world. Mined diamond production may have already peaked, according to the 2018 Bain & Company report. Lab diamonds are here to stay, although where they’re going isn’t entirely clear. Zimnisky expects that in a few years—as Lightbox’s new facility comes online and mass production of lab diamonds continues to ramp up overseas—the price industry-wide will fall to about 80 percent less than a mined diamond. At that point, he wonders whether lab-grown diamonds will start to lose their sparkle.

    Payne isn’t too worried about a price slide, which he says is happening across the diamond industry and which he expects will be “linear, not exponential” on the lab-grown side. He points out that lab-grown diamond market is still limited by supply, and that the largest lab-grown gems remain quite rare. Payne and Zimnisky both see the lab-grown diamond market bifurcating into cheaper, mass-produced gems and premium-quality stones sold by those that can maintain a strong brand. A sense that they’re selling something authentic and, well, real.

    “So much has to do with consumer psychology,” Zimnisky said.

    Some will only ever see diamonds as authentic if they formed inside the Earth. They’re drawn, as Kathryn Money, vice president of strategy and merchandising at Brilliant Earth put it, to “the history and romanticism” of diamonds; to a feeling that’s sparked by holding a piece of our ancient world. To an essence more than a function.

    Others, like Anderson, see lab-grown diamonds as the natural (to use a loaded word) evolution of diamond. “We’re actually running out of [mined] diamonds,” she said. “There is an end in sight.” Payne agreed, describing what he sees as a “looming death spiral” for diamond mining.

    Mined diamonds will never go away. We’ve been digging them up since antiquity, and they never seem to lose their sparkle. But most major mines are being exhausted. And with technology making it easier to grow diamonds just as they are getting more difficult to extract from the Earth, the lab-grown diamond industry’s grandstanding about its future doesn’t feel entirely unreasonable.

    There’s a reason why, as Payne said, “the mining industry as a whole is still quite scared of this product.” ootprint of digging the hole in the ground and crushing [the rock],” Koplyova said, noting that there’s no need to add strong acids or heavy metals like arsenic (used in gold mining) to liberate the gems.

    Still, those holes can be enormous. The Mir Mine, a now-abandoned open pit mine in Eastern Siberia, is so large—reportedly stretching 3,900 feet across and 1,700 feet deep—that the Russian government has declared it a no-fly zone owing to the pit’s ability to create dangerous air currents. It’s visible from space.

    While companies will often rehabilitate other land to offset the impact of mines, kimberlite mining itself typically leaves “a permanent dent in the earth’s surface,” as a 2014 report by market research company Frost & Sullivan put it.

    “It’s a huge impact as far as I’m concerned,” said Kevin Krajick, senior editor for science news at Columbia University’s Earth Institute who wrote a book on the discovery of diamonds in far northern Canada. Krajick noted that in remote mines, like those of the far north, it’s not just the physical hole to consider, but all the development required to reach a previously-untouched area, including roads and airstrips, roaring jets and diesel-powered trucks.

    Diamonds grown in factories clearly have a smaller physical footprint. According to the Frost & Sullivan report, they also use less water and create less waste. It’s for these reasons that Ali thinks diamond mining “will never be able to compete” with lab-grown diamonds from an environmental perspective.

    “The mining industry should not even by trying to do that,” he said.

    Of course, this is capitalism, so try to compete is exactly what the DPA is now doing. That same recent report that touted the mining industry’s economic benefits also asserts that mined diamonds have a carbon footprint three times lower than that of lab-grown diamonds, on average. The numbers behind that conclusion, however, don’t tell the full story.

    Growing diamonds does take considerable energy. The exact amount can vary greatly, however, depending on the specific nature of the growth process. These are details manufacturers are typically loathe to disclose, but Payne of Ada Diamonds says he estimates the most efficient players in the game today use about 250 kilowatt hour (kWh) of electricity per cut, polished carat of diamond; roughly what a U.S. household consumes in 9 days. Other estimates run higher. Citing unnamed sources, industry publication JCK Online reported that a modern HPHT run can use up to 700 kWh per carat, while CVD production can clock in north of 1,000 kWh per carat.

    Pulling these and several other public-record estimates, along with information on where in the world today’s lab diamonds are being grown and the energy mix powering the producer nations’ electric grids, the DPA-commissioned study estimated that your typical lab-grown diamond results in some 511 kg of carbon emissions per cut, polished carat. Using information provided by mining companies on fuel and electricity consumption, along with other greenhouse gas sources on the mine site, it found that the average mined carat was responsible for just 160 kg of carbon emissions.

    One limitation here is that the carbon footprint estimate for mining focused only on diamond production, not the years of work entailed in developing a mine. As Ali noted, developing a mine can take a lot of energy, particularly for those sited in remote locales where equipment needs to be hauled long distances by trucks or aircraft.

    There’s also the question of just how representative the report’s energy consumption estimates for lab-grown diamonds are. While he wouldn’t offer a specific number, Coe said that De Beers’ Group diamond manufacturer Element Six—arguably the most advanced laboratory-grown diamond company in the world—has “substantially lower” per carat energy requirements than the headline figures found inside the new report. When asked why this was not included, Rick Lord, ESG analyst at Trucost, the S&P global group that conducted the analysis, said it chose to focus on energy estimates in the public record, but that after private consultation with Element Six it did not believe their data would “materially alter” the emissions estimates in the study.

    Finally, it’s important to consider the source of the carbon emissions. While the new report states that about 40 percent of the emissions associated with mining a diamond come from fossil fuel-powered vehicles and equipment, emissions associated with growing a diamond come mainly from electric power. Today, about 68 percent of lab-grown diamonds hail from China, Singapore, and India combined according to Zimnisky, where the power is drawn from largely fossil fuel-powered grids. But there is, at least, an opportunity to switch to renewables and drive that carbon footprint way down.
    “The reality is both mining and manufacturing consume energy and probably the best thing we could do is focus on reducing energy consumption.”

    And some companies do seem to be trying to do that. Anderson of MiaDonna says the company only sources its diamonds from facilities in the U.S., and that it’s increasingly trying to work with producers that use renewable energy. Lab-grown diamond company Diamond Foundry grows its stones inside plasma reactors running “as hot as the outer layer of the sun,” per its website, and while it wouldn’t offer any specific numbers, that presumably uses more energy than your typical operation running at lower temperatures. However, company spokesperson Ye-Hui Goldenson said its Washington State ‘megacarat factory’ was cited near a well-maintained hydropower source so that the diamonds could be produced with renewable energy. The company offsets other fossil fuel-driven parts of its operation by purchasing carbon credits.

    Lightbox’s diamonds currently come from Element Six’s UK-based facilities. The company is, however, building a $94-million facility near Portland, Oregon, that’s expected to come online by 2020. Coe said he estimates about 45 percent of its power will come from renewable sources.

    “The reality is both mining and manufacturing consume energy and probably the best thing we could do is focus on reducing energy consumption,” Coe said. “That’s something we’re focused on in Lightbox.”

    In spite of that, Lightbox is somewhat notable among lab-grown diamond jewelry brands in that, in the words of Morrison, it is “not claiming this to be an eco-friendly product.”

    “While it is true that we don’t dig holes in the ground, the energy consumption is not insignificant,” Morrison told Earther. “And I think we felt very uncomfortable promoting on that.”
    Various diamonds created in a lab, as seen at the Ada Diamonds showroom in Manhattan.
    Photo: Sam Cannon (Earther)
    The real real

    The fight over how lab-grown diamonds can and should market themselves is still heating up.

    On March 26, the FTC sent letters to eight lab-grown and diamond simulant companies warning them against making unsubstantiated assertions about the environmental benefits of their products—its first real enforcement action after updating its jewelry guides last year. The letters, first obtained by JCK news director Rob Bates under a Freedom of Information Act request, also warned companies that their advertising could falsely imply the products are mined diamonds, illustrating that, even though the agency now says a lab-grown diamond is a diamond, the specific origin remains critically important. A letter to Diamond Foundry, for instance, notes that the company has at times advertised its stones as “above-ground real” without the qualification of “laboratory-made.” It’s easy to see how a consumer might miss the implication.

    But in a sense, that’s what all of this is: A fight over what’s real.
    “It’s a nuanced reality that we’re in. They are a type of diamond.”

    Another letter, sent to FTC attorney Reenah Kim by the nonprofit trade organization Jewelers Vigilance Committee on April 2, makes it clear that many in the industry still believe that’s a term that should be reserved exclusively for gems formed inside the Earth. The letter, obtained by Earther under FOIA, urges the agency to continue restricting the use of the terms “real,” “genuine,” “natural,” “precious,” and “semi-precious” to Earth-mined diamonds and gemstones. Even the use of such terms in conjunction with “laboratory grown,” the letter argues, “will create even more confusion in an already confused and evolving marketplace.”

    JVC President Tiffany Stevens told Earther that the letter was a response to a footnote in an explanatory document about the FTC’s recent jewelry guide changes, which suggested the agency was considering removing a clause about real, precious, natural and genuine only being acceptable modifiers for gems mined from the Earth.

    “We felt that given the current commercial environment, that we didn’t think it was a good time to take that next step,” Stevens told Earther. As Stevens put it, the changes the FTC recently made, including expanding the definition of diamond and tweaking the descriptors companies can use to label laboratory-grown diamonds as such, have already been “wildly misinterpreted” by some lab-grown diamond sellers that are no longer making the “necessary disclosures.”

    Asked whether the JVC thinks lab-grown diamonds are, in fact, real diamonds, Stevens demurred.

    “It’s a nuanced reality that we’re in,” she said. “They are a type of diamond.”

    Change is afoot in the diamond world. Mined diamond production may have already peaked, according to the 2018 Bain & Company report. Lab diamonds are here to stay, although where they’re going isn’t entirely clear. Zimnisky expects that in a few years—as Lightbox’s new facility comes online and mass production of lab diamonds continues to ramp up overseas—the price industry-wide will fall to about 80 percent less than a mined diamond. At that point, he wonders whether lab-grown diamonds will start to lose their sparkle.

    Payne isn’t too worried about a price slide, which he says is happening across the diamond industry and which he expects will be “linear, not exponential” on the lab-grown side. He points out that lab-grown diamond market is still limited by supply, and that the largest lab-grown gems remain quite rare. Payne and Zimnisky both see the lab-grown diamond market bifurcating into cheaper, mass-produced gems and premium-quality stones sold by those that can maintain a strong brand. A sense that they’re selling something authentic and, well, real.

    “So much has to do with consumer psychology,” Zimnisky said.

    Some will only ever see diamonds as authentic if they formed inside the Earth. They’re drawn, as Kathryn Money, vice president of strategy and merchandising at Brilliant Earth put it, to “the history and romanticism” of diamonds; to a feeling that’s sparked by holding a piece of our ancient world. To an essence more than a function.

    Others, like Anderson, see lab-grown diamonds as the natural (to use a loaded word) evolution of diamond. “We’re actually running out of [mined] diamonds,” she said. “There is an end in sight.” Payne agreed, describing what he sees as a “looming death spiral” for diamond mining.

    Mined diamonds will never go away. We’ve been digging them up since antiquity, and they never seem to lose their sparkle. But most major mines are being exhausted. And with technology making it easier to grow diamonds just as they are getting more difficult to extract from the Earth, the lab-grown diamond industry’s grandstanding about its future doesn’t feel entirely unreasonable.

    There’s a reason why, as Payne said, “the mining industry as a whole is still quite scared of this product.”

    #dimants #Afrique #technologie #capitalisme

  • Le projet nucléaire jordanien abandonné, ou du moins reconfiguré à la baisse sans certitude que la nouvelle solution sera plus réaliste financièrement.
    Auteurs: Ali Ahmad is director of the Energy Policy and Security in the Middle East Programme at the Issam Fares Institute at the American University of Beirut in Lebanon. M. V. Ramana is the Simons Chair for Disarmament, Global and Human Security at the School of Public Policy and Global Affairs at the University of British Columbia in Canada and author of “The Power of Promise: Examining Nuclear Energy in India” (Penguin Books, 2012).
    HTRs will not help establish nuclear power in Jordan | Jordan Times
    http://www.jordantimes.com/opinion/ali-ahmad-and-m-v-ramana/htrs-will-not-help-establish-nuclear-power-jordan

    Chairman of Jordan Atomic Energy Commission (JAEC), Khaled Toukan, has announced that the organisation is in “serious and advanced” talks with China National Nuclear Corporation (CNNC) to build a 220 megawatt High Temperature Gas-Cooled Reactor (HTR) in the Kingdom. Viewed in light of earlier announcements by JAEC and its failure to realise any of its proposed plans since 2007, this pronouncement suggests that the Kingdom is downsizing its nuclear plans in a desperate bid to keep alive the possibility of building a nuclear plant in the country. But this effort is as misguided as prior ones and the best option is to stop investing any more effort, or money, into developing nuclear power.

    Perhaps the most important earlier announcement worth recalling is from three years ago, when, amid much fanfare, Jordan signed an inter-governmental agreement with Russia to build two 1,000-megawatt reactors, at a total cost of $10 billion. The two reactors were “expected to be operational by 2022”. Reports suggested that Russia was to finance 50.1 per cent of the project and Jordan would find financing for the other half. But Jordan struggled to come up with its share.

    Although there has been no official announcement to that effect, the project is likely dead. This is presumably why there is now talk of a smaller reactor.

    #énergie #nucléaire #jordanie #électricité

  • The Corporation - Full Movie
    https://www.youtube.com/watch?v=xHrhqtY2khc



    Mark Achbar | The Corporation
    http://thecorporation.com/team/mark-achbar

    Mark Achbar | Hello Cool World Media
    http://hellocoolworld.com/mark-achbar

    The Corporation (2003 film) - Wikipedia
    https://en.wikipedia.org/wiki/The_Corporation_(2003_film)

    The Corporation is a 2003 Canadian documentary film written by University of British Columbia law professor Joel Bakan, and directed by Mark Achbar and Jennifer Abbott. The documentary examines the modern-day corporation. Bakan wrote the book, The Corporation: The Pathological Pursuit of Profit and Power, during the filming of the documentary.

    Squel | The Corporation
    http://thecorporation.com

    More than a decade after The Corporation started a global conversation about the modern business corporation, best-selling author and scholar Joel Bakan is now working on a follow-up project that focuses on the corporation’s remarkable evolution and transformation since the first film.

    “The original film was a call to action,” says Joel Bakan. “Now an entire generation of advocates, from both within and outside corporations, is successfully demanding that major corporations redefine their very purposes and missions to include social and environmental values.”

    As today’s leading companies embed social responsibility and sustainability at the hearts of their business models and operations, the new film reveals an emerging ethos of shared value, a rejection of short-termism, and a new conviction that the best way for companies to do well is by doing good.

    #capitalisme #film #documentaire

    • Aujourd’hui ce film a 15 ans et les affaires continuent comme avant. Ce n’est pas avec des publications que tu changes le monde, il va falloir attendre que quelques grands « players » s’écrasent par leur propre poids entraînant une crise du système pour avoir l’occasion de s’attaquer aux problèmes des fond.

      A ce moment là il sera bien d’avoir quelques références et repères pour expliquer comment ne pas s’y prendre.

      Je crains que la quantité d’informations que tu peux apprendre par minute est soit nettement moins élevée en regardant un film qu’en lisant du texte. Alors puisque dans les moments de crise tout se joue dans des délais extrèmements brefs, la communication écrite sera beaucoup plus importante que la propagagation d’idée à travers les images animées.

  • What Happens When We Let Tech Care For Our Aging Parents | WIRED
    https://www.wired.com/story/digital-puppy-seniors-nursing-homes

    Arlyn Anderson grasped her father’s hand and presented him with the choice. “A nursing home would be safer, Dad,” she told him, relaying the doctors’ advice. “It’s risky to live here alone—”

    “No way,” Jim interjected. He frowned at his daughter, his brow furrowed under a lop of white hair. At 91, he wanted to remain in the woodsy Minnesota cottage he and his wife had built on the shore of Lake Minnetonka, where she had died in his arms just a year before. His pontoon—which he insisted he could still navigate just fine—bobbed out front.

    Arlyn had moved from California back to Minnesota two decades earlier to be near her aging parents. Now, in 2013, she was fiftysomething, working as a personal coach, and finding that her father’s decline was all-consuming.

    Her father—an inventor, pilot, sailor, and general Mr. Fix-It; “a genius,” Arlyn says—started experiencing bouts of paranoia in his mid-eighties, a sign of Alzheimer’s. The disease had progressed, often causing his thoughts to vanish mid-sentence. But Jim would rather risk living alone than be cloistered in an institution, he told Arlyn and her older sister, Layney. A nursing home certainly wasn’t what Arlyn wanted for him either. But the daily churn of diapers and cleanups, the carousel of in-home aides, and the compounding financial strain (she had already taken out a reverse mortgage on Jim’s cottage to pay the caretakers) forced her to consider the possibility.

    Jim, slouched in his recliner, was determined to stay at home. “No way,” he repeated to his daughter, defiant. Her eyes welled up and she hugged him. “OK, Dad.” Arlyn’s house was a 40-minute drive from the cottage, and for months she had been relying on a patchwork of technology to keep tabs on her dad. She set an open laptop on the counter so she could chat with him on Skype. She installed two cameras, one in his kitchen and another in his bedroom, so she could check whether the caregiver had arrived, or God forbid, if her dad had fallen. So when she read in the newspaper about a new digi­tal eldercare service called CareCoach a few weeks after broaching the subject of the nursing home, it piqued her interest. For about $200 a month, a human-powered avatar would be available to watch over a homebound person 24 hours a day; Arlyn paid that same amount for just nine hours of in-home help. She signed up immediately.

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    A Google Nexus tablet arrived in the mail a week later. When Arlyn plugged it in, an animated German shepherd appeared onscreen, standing at attention on a digitized lawn. The brown dog looked cutesy and cartoonish, with a bubblegum-pink tongue and round, blue eyes.

    She and Layney visited their dad later that week, tablet in hand. Following the instructions, Arlyn uploaded dozens of pictures to the service’s online portal: images of family members, Jim’s boat, and some of his inventions, like a computer terminal known as the Teleray and a seismic surveillance system used to detect footsteps during the Vietnam War. The setup complete, Arlyn clutched the tablet, summoning the nerve to introduce her dad to the dog. Her initial instinct that the service could be the perfect companion for a former technologist had splintered into needling doubts. Was she tricking him? Infantilizing him?

    Tired of her sister’s waffling, Layney finally snatched the tablet and presented it to their dad, who was sitting in his armchair. “Here, Dad, we got you this.” The dog blinked its saucer eyes and then, in Google’s female text-to-speech voice, started to talk. Before Alzheimer’s had taken hold, Jim would have wanted to know exactly how the service worked. But in recent months he’d come to believe that TV characters were interacting with him: A show’s villain had shot a gun at him, he said; Katie Couric was his friend. When faced with an onscreen character that actually was talking to him, Jim readily chatted back.

    Jim named his dog Pony. Arlyn perched the tablet upright on a table in Jim’s living room, where he could see it from the couch or his recliner. Within a week Jim and Pony had settled into a routine, exchanging pleasantries several times a day. Every 15 minutes or so Pony would wake up and look for Jim, calling his name if he was out of view. Sometimes Jim would “pet” the sleeping dog onscreen with his finger to rustle her awake. His touch would send an instantaneous alert to the human caretaker behind the avatar, prompting the CareCoach worker to launch the tablet’s audio and video stream. “How are you, Jim?” Pony would chirp. The dog reminded him which of his daughters or in-person caretakers would be visiting that day to do the tasks that an onscreen dog couldn’t: prepare meals, change Jim’s sheets, drive him to a senior center. “We’ll wait together,” Pony would say. Often she’d read poetry aloud, discuss the news, or watch TV with him. “You look handsome, Jim!” Pony remarked after watching him shave with his electric razor. “You look pretty,” he replied. Sometimes Pony would hold up a photo of Jim’s daughters or his inventions between her paws, prompting him to talk about his past. The dog complimented Jim’s red sweater and cheered him on when he struggled to buckle his watch in the morning. He reciprocated by petting the screen with his index finger, sending hearts floating up from the dog’s head. “I love you, Jim!” Pony told him a month after they first met—something CareCoach operators often tell the people they are monitoring. Jim turned to Arlyn and gloated, “She does! She thinks I’m real good!”

    About 1,500 miles south of Lake Minnetonka, in Monterrey, Mexico, Rodrigo Rochin opens his laptop in his home office and logs in to the CareCoach dashboard to make his rounds. He talks baseball with a New Jersey man watching the Yankees; chats with a woman in South Carolina who calls him Peanut (she places a cookie in front of her tablet for him to “eat”); and greets Jim, one of his regulars, who sips coffee while looking out over a lake.

    Rodrigo is 35 years old, the son of a surgeon. He’s a fan of the Spurs and the Cowboys, a former international business student, and a bit of an introvert, happy to retreat into his sparsely decorated home office each morning. He grew up crossing the border to attend school in McAllen, Texas, honing the English that he now uses to chat with elderly people in the United States. Rodrigo found CareCoach on an online freelancing platform and was hired in December 2012 as one of the company’s earliest contractors, role-playing 36 hours a week as one of the service’s avatars.

    After watching her dad interact with Pony, Arlyn’s reservations about outsourcing her father’s companionship vanished.

    In person, Rodrigo is soft-spoken, with wire spectacles and a beard. He lives with his wife and two basset hounds, Bob and Cleo, in Nuevo León’s capital city. But the people on the other side of the screen don’t know that. They don’t know his name—or, in the case of those like Jim who have dementia, that he even exists. It’s his job to be invisible. If Rodrigo’s clients ask where he’s from, he might say MIT (the CareCoach software was created by two graduates of the school), but if anyone asks where their pet actually is, he replies in character: “Here with you.”

    Rodrigo is one of a dozen CareCoach employees in Latin America and the Philippines. The contractors check on the service’s seniors through the tablet’s camera a few times an hour. (When they do, the dog or cat avatar they embody appears to wake up.) To talk, they type into the dashboard and their words are voiced robotically through the tablet, designed to give their charges the impression that they’re chatting with a friendly pet. Like all the CareCoach workers, Rodrigo keeps meticulous notes on the people he watches over so he can coordinate their care with other workers and deepen his relationship with them over time—this person likes to listen to Adele, this one prefers Elvis, this woman likes to hear Bible verses while she cooks. In one client’s file, he wrote a note explaining that the correct response to “See you later, alligator” is “After a while, crocodile.” These logs are all available to the customer’s social workers or adult children, wherever they may live. Arlyn started checking Pony’s log between visits with her dad several times a week. “Jim says I’m a really nice person,” reads one early entry made during the Minnesota winter. “I told Jim that he was my best friend. I am so happy.”

    After watching her dad interact with Pony, Arlyn’s reservations about outsourcing her father’s companionship vanished. Having Pony there eased her anxiety about leaving Jim alone, and the virtual dog’s small talk lightened the mood.

    Pony was not only assisting Jim’s human caretakers but also inadvertently keeping an eye on them. Months before, in broken sentences, Jim had complained to Arlyn that his in-home aide had called him a bastard. Arlyn, desperate for help and unsure of her father’s recollection, gave her a second chance. Three weeks after arriving in the house, Pony woke up to see the same caretaker, impatient. “Come on, Jim!” the aide yelled. “Hurry up!” Alarmed, Pony asked why she was screaming and checked to see if Jim was OK. The pet—actually, Rodrigo—later reported the aide’s behavior to CareCoach’s CEO, Victor Wang, who emailed Arlyn about the incident. (The caretaker knew there was a human watching her through the tablet, Arlyn says, but may not have known the extent of the person’s contact with Jim’s family behind the scenes.) Arlyn fired the short-tempered aide and started searching for a replacement. Pony watched as she and Jim conducted the interviews and approved of the person Arlyn hired. “I got to meet her,” the pet wrote. “She seems really nice.”

    Pony—friend and guard dog—would stay.
    Grant Cornett

    Victor Wang grew up feeding his Tama­got­chis and coding choose-your-own-­adventure games in QBasic on the family PC. His parents moved from Taiwan to suburban Vancouver, British Columbia, when Wang was a year old, and his grandmother, whom he called Lao Lao in Mandarin, would frequently call from Taiwan. After her husband died, Lao Lao would often tell Wang’s mom that she was lonely, pleading with her daughter to come to Taiwan to live with her. As she grew older, she threatened suicide. When Wang was 11, his mother moved back home for two years to care for her. He thinks of that time as the honey-­sandwich years, the food his overwhelmed father packed him each day for lunch. Wang missed his mother, he says, but adds, “I was never raised to be particularly expressive of my emotions.”

    At 17, Wang left home to study mechanical engineering at the University of British Columbia. He joined the Canadian Army Reserve, serving as an engineer on a maintenance platoon while working on his undergraduate degree. But he scrapped his military future when, at 22, he was admitted to MIT’s master’s program in mechanical engineering. Wang wrote his dissertation on human-machine interaction, studying a robotic arm maneuvered by astronauts on the International Space Station. He was particularly intrigued by the prospect of harnessing tech to perform tasks from a distance: At an MIT entrepreneurship competition, he pitched the idea of training workers in India to remotely operate the buffers that sweep US factory floors.

    In 2011, when he was 24, his grandmother was diagnosed with Lewy body dementia, a disease that affects the areas of the brain associated with memory and movement. On Skype calls from his MIT apartment, Wang watched as his grandmother grew increasingly debilitated. After one call, a thought struck him: If he could tap remote labor to sweep far-off floors, why not use it to comfort Lao Lao and others like her?

    Wang started researching the looming caretaker shortage in the US—between 2010 and 2030, the population of those older than 80 is projected to rise 79 percent, but the number of family caregivers available is expected to increase just 1 percent.

    In 2012 Wang recruited his cofounder, a fellow MIT student working on her computer science doctorate named Shuo Deng, to build CareCoach’s technology. They agreed that AI speech technology was too rudimentary for an avatar capable of spontaneous conversation tailored to subtle mood and behavioral cues. For that, they would need humans.

    Older people like Jim often don’t speak clearly or linearly, and those with dementia can’t be expected to troubleshoot a machine that misunderstands. “When you match someone not fully coherent with a device that’s not fully coherent, it’s a recipe for disaster,” Wang says. Pony, on the other hand, was an expert at deciphering Jim’s needs. Once, Pony noticed that Jim was holding onto furniture for support, as if he were dizzy. The pet persuaded him to sit down, then called Arlyn. Deng figures it’ll take about 20 years for AI to be able to master that kind of personal interaction and recognition. That said, the CareCoach system is already deploying some automated abilities. Five years ago, when Jim was introduced to Pony, the offshore workers behind the camera had to type every response; today CareCoach’s software creates roughly one out of every five sentences the pet speaks. Wang aims to standardize care by having the software manage more of the patients’ regular reminders—prodding them to take their medicine, urging them to eat well and stay hydrated. CareCoach workers are part free­wheeling raconteurs, part human natural-­language processors, listening to and deciphering their charges’ speech patterns or nudging the person back on track if they veer off topic. The company recently began recording conversations to better train its software in senior speech recognition.

    CareCoach found its first customer in December 2012, and in 2014 Wang moved from Massachusetts to Silicon Valley, renting a tiny office space on a lusterless stretch of Millbrae near the San Francisco airport. Four employees congregate in one room with a view of the parking lot, while Wang and his wife, Brittany, a program manager he met at a gerontology conference, work in the foyer. Eight tablets with sleeping pets onscreen are lined up for testing before being shipped to their respective seniors. The avatars inhale and exhale, lending an eerie sense of life to their digital kennel.

    CareCoach conveys the perceptiveness and emotional intelligence of the humans powering it but masquerades as an animated app.

    Wang spends much of his time on the road, touting his product’s health benefits at medical conferences and in hospital executive suites. Onstage at a gerontology summit in San Francisco last summer, he deftly impersonated the strained, raspy voice of an elderly man talking to a CareCoach pet while Brittany stealthily cued the replies from her laptop in the audience. The company’s tablets are used by hospitals and health plans across Massachusetts, California, New York, South Carolina, Florida, and Washington state. Between corporate and individual customers, CareCoach’s avatars have interacted with hundreds of users in the US. “The goal,” Wang says, “is not to have a little family business that just breaks even.”

    The fastest growth would come through hospital units and health plans specializing in high-need and elderly patients, and he makes the argument that his avatars cut health care costs. (A private room in a nursing home can run more than $7,500 a month.) Preliminary research has been promising, though limited. In a study conducted by Pace University at a Manhattan housing project and a Queens hospital, CareCoach’s avatars were found to reduce subjects’ loneliness, delirium, and falls. A health provider in Massachusetts was able to replace a man’s 11 weekly in-home nurse visits with a CareCoach tablet, which diligently reminded him to take his medications. (The man told nurses that the pet’s nagging reminded him of having his wife back in the house. “It’s kind of like a complaint, but he loves it at the same time,” the project’s lead says.) Still, the feelings aren’t always so cordial: In the Pace University study, some aggravated seniors with dementia lashed out and hit the tablet. In response, the onscreen pet sheds tears and tries to calm the person.

    More troubling, perhaps, were the people who grew too fiercely attached to their digi­tal pets. At the conclusion of a University of Washington CareCoach pilot study, one woman became so distraught at the thought of parting with her avatar that she signed up for the service, paying the fee herself. (The company gave her a reduced rate.) A user in Massachusetts told her caretakers she’d cancel an upcoming vacation to Maine unless her digital cat could come along.

    We’re still in the infancy of understanding the complexities of aging humans’ relationship with technology. Sherry Turkle, a professor of social studies, science, and technology at MIT and a frequent critic of tech that replaces human communication, described interactions between elderly people and robotic babies, dogs, and seals in her 2011 book, Alone Together. She came to view roboticized eldercare as a cop-out, one that would ultimately degrade human connection. “This kind of app—in all of its slickness and all its ‘what could possibly be wrong with it?’ mentality—is making us forget what we really know about what makes older people feel sustained,” she says: caring, interpersonal relationships. The question is whether an attentive avatar makes a comparable substitute. Turkle sees it as a last resort. “The assumption is that it’s always cheaper and easier to build an app than to have a conversation,” she says. “We allow technologists to propose the unthinkable and convince us the unthinkable is actually the inevitable.”

    But for many families, providing long-term in-person care is simply unsustainable. The average family caregiver has a job outside the home and spends about 20 hours a week caring for a parent, according to AARP. Nearly two-thirds of such caregivers are women. Among eldercare experts, there’s a resignation that the demographics of an aging America will make technological solutions unavoidable. The number of those older than 65 with a disability is projected to rise from 11 million to 18 million from 2010 to 2030. Given the option, having a digital companion may be preferable to being alone. Early research shows that lonely and vulnerable elders like Jim seem content to communicate with robots. Joseph Coughlin, director of MIT’s AgeLab, is pragmatic. “I would always prefer the human touch over a robot,” he says. “But if there’s no human available, I would take high tech in lieu of high touch.”

    CareCoach is a disorienting amalgam of both. The service conveys the perceptiveness and emotional intelligence of the humans powering it but masquerades as an animated app. If a person is incapable of consenting to CareCoach’s monitoring, then someone must do so on their behalf. But the more disconcerting issue is how cognizant these seniors are of being watched over by strangers. Wang considers his product “a trade-off between utility and privacy.” His workers are trained to duck out during baths and clothing changes.

    Some CareCoach users insist on greater control. A woman in Washington state, for example, put a piece of tape over her CareCoach tablet’s camera to dictate when she could be viewed. Other customers like Jim, who are suffering from Alzheimer’s or other diseases, might not realize they are being watched. Once, when he was temporarily placed in a rehabilitation clinic after a fall, a nurse tending to him asked Arlyn what made the avatar work. “You mean there’s someone overseas looking at us?” she yelped, within earshot of Jim. (Arlyn isn’t sure whether her dad remembered the incident later.) By default, the app explains to patients that someone is surveilling them when it’s first introduced. But the family members of personal users, like Arlyn, can make their own call.

    Arlyn quickly stopped worrying about whether she was deceiving her dad. Telling Jim about the human on the other side of the screen “would have blown the whole charm of it,” she says. Her mother had Alzheimer’s as well, and Arlyn had learned how to navigate the disease: Make her mom feel safe; don’t confuse her with details she’d have trouble understanding. The same went for her dad. “Once they stop asking,” Arlyn says, “I don’t think they need to know anymore.” At the time, Youa Vang, one of Jim’s regular in-­person caretakers, didn’t comprehend the truth about Pony either. “I thought it was like Siri,” she said when told later that it was a human in Mexico who had watched Jim and typed in the words Pony spoke. She chuckled. “If I knew someone was there, I may have been a little more creeped out.”

    Even CareCoach users like Arlyn who are completely aware of the person on the other end of the dashboard tend to experience the avatar as something between human, pet, and machine—what some roboticists call a third ontological category. The care­takers seem to blur that line too: One day Pony told Jim that she dreamed she could turn into a real health aide, almost like Pinoc­chio wishing to be a real boy.

    Most of CareCoach’s 12 contractors reside in the Philippines, Venezuela, or Mexico. To undercut the cost of in-person help, Wang posts English-language ads on freelancing job sites where foreign workers advertise rates as low as $2 an hour. Though he won’t disclose his workers’ hourly wages, Wang claims the company bases its salaries on factors such as what a registered nurse would make in the CareCoach employee’s home country, their language proficiencies, and the cost of their internet connection.

    The growing network includes people like Jill Paragas, a CareCoach worker who lives in a subdivision on Luzon island in the Philippines. Paragas is 35 years old and a college graduate. She earns about the same being an avatar as she did in her former call center job, where she consoled Americans irate about credit card charges. (“They wanted to, like, burn the company down or kill me,” she says with a mirthful laugh.) She works nights to coincide with the US daytime, typing messages to seniors while her 6-year-old son sleeps nearby.

    Even when Jim grew stubborn or paranoid with his daughters, he always viewed Pony as a friend.

    Before hiring her, Wang interviewed Paragas via video, then vetted her with an international criminal background check. He gives all applicants a personality test for certain traits: openness, conscientiousness, extroversion, agreeableness, and neuroticism. As part of the CareCoach training program, Paragas earned certifications in delirium and dementia care from the Alzheimer’s Association, trained in US health care ethics and privacy, and learned strategies for counseling those with addictions. All this, Wang says, “so we don’t get anyone who’s, like, crazy.” CareCoach hires only about 1 percent of its applicants.

    Paragas understands that this is a complicated business. She’s befuddled by the absence of family members around her aging clients. “In my culture, we really love to take care of our parents,” she says. “That’s why I’m like, ‘She is already old, why is she alone?’ ” Paragas has no doubt that, for some people, she’s their most significant daily relationship. Some of her charges tell her that they couldn’t live without her. Even when Jim grew stubborn or paranoid with his daughters, he always viewed Pony as a friend. Arlyn quickly realized that she had gained a valuable ally.
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    1/7Jim Anderson and his wife, Dorothy, in the living room of their home in St. Louis Park, Minnesota in the ’70s. Their house was modeled after an early American Pennsylvania farmhouse.Courtesy Arlyn Anderson
    2/7Jim became a private pilot after returning home from World War II.Courtesy Arlyn Anderson
    6/7A tennis match between Jim and his middle daughter, Layney, on his 80th birthday. (The score was tied at 6-6, she recalls; her dad won the tiebreaker.)Courtesy Arlyn Anderson
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    1/7Jim Anderson and his wife, Dorothy, in the living room of their home in St. Louis Park, Minnesota in the ’70s. Their house was modeled after an early American Pennsylvania farmhouse.Courtesy Arlyn Anderson

    As time went on, the father, daughter, and family pet grew closer. When the snow finally melted, Arlyn carried the tablet to the picnic table on the patio so they could eat lunch overlooking the lake. Even as Jim’s speech became increasingly stunted, Pony could coax him to talk about his past, recounting fishing trips or how he built the house to face the sun so it would be warmer in winter. When Arlyn took her dad around the lake in her sailboat, Jim brought Pony along. (“I saw mostly sky,” Rodrigo recalls.)

    One day, while Jim and Arlyn were sitting on the cottage’s paisley couch, Pony held up a photograph of Jim’s wife, Dorothy, between her paws. It had been more than a year since his wife’s death, and Jim hardly mentioned her anymore; he struggled to form coherent sentences. That day, though, he gazed at the photo fondly. “I still love her,” he declared. Arlyn rubbed his shoulder, clasping her hand over her mouth to stifle tears. “I am getting emotional too,” Pony said. Then Jim leaned toward the picture of his deceased wife and petted her face with his finger, the same way he would to awaken a sleeping Pony.

    When Arlyn first signed up for the service, she hadn’t anticipated that she would end up loving—yes, loving, she says, in the sincerest sense of the word—the avatar as well. She taught Pony to say “Yeah, sure, you betcha” and “don’t-cha know” like a Minnesotan, which made her laugh even more than her dad. When Arlyn collapsed onto the couch after a long day of caretaking, Pony piped up from her perch on the table:

    “Arnie, how are you?”

    Alone, Arlyn petted the screen—the way Pony nuzzled her finger was weirdly therapeutic—and told the pet how hard it was to watch her dad lose his identity.

    “I’m here for you,” Pony said. “I love you, Arnie.”

    When she recalls her own attachment to the dog, Arlyn insists her connection wouldn’t have developed if Pony was simply high-functioning AI. “You could feel Pony’s heart,” she says. But she preferred to think of Pony as her father did—a friendly pet—rather than a person on the other end of a webcam. “Even though that person probably had a relationship to me,” she says, “I had a relationship with the avatar.”

    Still, she sometimes wonders about the person on the other side of the screen. She sits up straight and rests her hand over her heart. “This is completely vulnerable, but my thought is: Did Pony really care about me and my dad?” She tears up, then laughs ruefully at herself, knowing how weird it all sounds. “Did this really happen? Was it really a relationship, or were they just playing solitaire and typing cute things?” She sighs. “But it seemed like they cared.”

    When Jim turned 92 that August, as friends belted out “Happy Birthday” around the dinner table, Pony spoke the lyrics along with them. Jim blew out the single candle on his cake. “I wish you good health, Jim,” Pony said, “and many more birthdays to come.”

    In Monterrey, Mexico, when Rodrigo talks about his unusual job, his friends ask if he’s ever lost a client. His reply: Yes.

    In early March 2014, Jim fell and hit his head on his way to the bathroom. A caretaker sleeping over that night found him and called an ambulance, and Pony woke up when the paramedics arrived. The dog told them Jim’s date of birth and offered to call his daughters as they carried him out on a stretcher.

    Jim was checked into a hospital, then into the nursing home he’d so wanted to avoid. The Wi-Fi there was spotty, which made it difficult for Jim and Pony to connect. Nurses would often turn Jim’s tablet to face the wall. The CareCoach logs from those months chronicle a series of communication misfires. “I miss Jim a lot,” Pony wrote. “I hope he is doing good all the time.” One day, in a rare moment of connectivity, Pony suggested he and Jim go sailing that summer, just like the good old days. “That sounds good,” Jim said.
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    That July, in an email from Wang, Rodrigo learned that Jim had died in his sleep. Sitting before his laptop, Rodrigo bowed his head and recited a silent Lord’s Prayer for Jim, in Spanish. He prayed that his friend would be accepted into heaven. “I know it’s going to sound weird, but I had a certain friendship with him,” he says. “I felt like I actually met him. I feel like I’ve met them.” In the year and a half that he had known them, Arlyn and Jim talked to him regularly. Jim had taken Rodrigo on a sailboat ride. Rodrigo had read him poetry and learned about his rich past. They had celebrated birthdays and holidays together as family. As Pony, Rodrigo had said “Yeah, sure, you betcha” countless times.

    That day, for weeks afterward, and even now when a senior will do something that reminds him of Jim, Rodrigo says he feels a pang. “I still care about them,” he says. After her dad’s death, Arlyn emailed Victor Wang to say she wanted to honor the workers for their care. Wang forwarded her email to Rodrigo and the rest of Pony’s team. On July 29, 2014, Arlyn carried Pony to Jim’s funeral, placing the tablet facing forward on the pew beside her. She invited any workers behind Pony who wanted to attend to log in.

    A year later, Arlyn finally deleted the CareCoach service from the tablet—it felt like a kind of second burial. She still sighs, “Pony!” when the voice of her old friend gives her directions as she drives around Minneapolis, reincarnated in Google Maps.

    After saying his prayer for Jim, Rodrigo heaved a sigh and logged in to the CareCoach dashboard to make his rounds. He ducked into living rooms, kitchens, and hospital rooms around the United States—seeing if all was well, seeing if anybody needed to talk.

  • Radar spots trillions of unseen insects migrating above us | Science | AAAS
    http://www.sciencemag.org/news/2016/12/radar-spots-trillions-unseen-insects-migrating-above-us

    Birds and human vacationers aren’t the only creatures that take to the skies each year to migrate north or south. An analysis of a decade’s worth of data from radars specifically designed to track airborne insects has revealed unseen hordes crossing parts of the southern United Kingdom—2 trillion to 5 trillion insects each year, amounting to several thousand tons of biomass, that may travel up to hundreds of kilometers a day.

    The numbers, reported in this week’s issue of Science, are “stunning,” says Silke Bauer, an ecologist at the Swiss Ornithological Institute in Sempach. “Wow,” adds Larry Stevens, an evolutionary ecologist at the Museum of Northern Arizona in Flagstaff. “C_an you image what these numbers look like in tropical settings, say, over the basins of the Amazon or the Congo?

    Although some insect migrations are well known (think monarchs), the new work takes a systematic approach to flying insects and hints that such mass movements are surprisingly common. These airborne invertebrates, their bodies packed full of nitrogen and phosphorus, could move significant amounts of key nutrients across the globe. “_Insects are little creatures, but collectively they can have a big impact; comparable in magnitude to large ocean migrations [of plankton],” says Lael Parrott, an environmental geographer at the University of British Columbia in Kelowna, Canada.
    […]
    That insects “have an idea of where they want to go to, when they want to go, and what winds are good [is] surprising for these tiny creatures,” Bauer says.

  • The man who ​thinks trees talk to each other | Environment | The Guardian
    https://www.theguardian.com/environment/2016/sep/12/peter-wohlleben-man-who-believes-trees-talk-to-each-other?CMP=twt_a-env

    Trees have friends, feel loneliness, scream with pain and communicate underground via the “woodwide web”. Some act as parents and good neighbours. Others do more than just throw shade – they’re brutal bullies to rival species. The young ones take risks with their drinking and leaf-dropping then remember the hard lessons from their mistakes. It’s a hard-knock life.

    A book called The Hidden Life of Trees is not an obvious bestseller but it’s easy to see the popular appeal of German forester Peter Wohlleben’s claims – they are so anthropomorphic. Certainly, a walk in the park feels different when you imagine the network of roots crackling with sappy chat beneath your feet. We don’t know the half of what’s going on underground and beneath the bark, he says: “We have been looking at nature for the last 100 years like [it is] a machine.”

    There’s a touchy-feely warmth to the book – an “ouch!” when he describes trees having branches hacked, roots cut or being gnawed by insects – and he talks about “brainlike things” going on in trees that enable them to learn over their long lifetimes. He points to scientific research – by Aachen University, the University of British Columbia and the Max Planck Society – that he claims underpins all his vivid descriptions, but he writes as a conservationist and admits that much is still unknown. “It’s very hard to find out what trees are communicating when they feel well,” he says.

    Hidden Life of Trees
    https://bookshop.theguardian.com/hidden-life-of-trees.html

    #arbre #communication #livre

    • Peter Wohlleben - Förster und Autor | Bücher
      http://www.peter-wohlleben.de/buecher.html

      Bücher

      ...
      Das Seelenleben der Tiere
      Liebe, Trauer, Mitgefühl - erstaunliche Einblicke in eine verborgene Welt

      ...
      Wohllebens Waldführer
      Tiere und Pflanzen bestimmen - das Ökosystem entdecken

      ...
      Menschenspuren im Wald
      Ein Waldführer der besonderen Art- erkennen, verstehen, einmischen

      ...
      Unsere kleine Farm
      Anleitung für Selbstversorger

      ...
      Das geheime Leben der Bäume
      Was sie fühlen, wie sie kommunizieren - die Entdeckung einer verborgenen Welt

      ...
      Wald ohne Hüter
      Im Würgegriff von Jagdinteressen und Forstwirtschaft

      eBook-Version

      ...
      Die Gefühle der Tiere
      Von glücklichen Hühnern, liebenden Ziegen und träumenden Hunden

      ...
      Mein Wald
      nachhaltig, sanft, wirtschaftlich

      ...
      Der Wald - ein Nachruf
      Wie der Wald funktioniert, warum wir ihn brauchen und wie wir ihn retten können - ein Förster erklärt

      ...
      Kranichflug und Blumenuhr
      Naturphänomene im Garten beobachten, verstehen

      ...
      Bäume verstehen
      Was uns Bäume erzählen, wie wir sie naturgemäß pflegen

      ...
      Evolution 2.0
      Macht und Ohnmacht des Homo sapiens

      ...
      Der eigene Wald
      Privatwald optimal bewirtschaften

      ...
      Naturschutz ohne Natur
      Von den Grenzen der Umweltpolitik

      ...
      Holzrausch
      Der Bioenergieboom und seine Folgen

      ...
      Wald ohne Hüter
      Im Würgegriff von Jagdinteressen und Forstwirtschaft - Ein Förster erzählt

      #Économie_forestière
      https://fr.wikipedia.org/wiki/For%C3%AAt#Fonction_.C3.A9conomique

  • Satellite Forest Monitoring in Canada | About
    http://forests.foundryspatial.com/about.html

    The Canadian Forest Service of Natural Resources Canada, partnered with the University of British Columbia, with support from the Canadian Space Agency, has been developing the science and methods to track and characterize the history of Canada’s forests. For this research we use Landsat imagery to detect changes, identify the year in which the changes occur, and estimate a change type (such as harvest or wildfire). A change detection approach was applied to an annual time series of Landsat data, enabling the detection of abrupt (e.g. fire) and gradual (e.g. drought) changes. From the time series we can also assess the recovery of forests after disturbances by wildfire and harvest. In this research, we have developed an explore and discovery tool to portray and communicate forest change over Canada. The map shows points representing locations where forest change has been observed between 1985 and 2011. The source Landsat imagery is a continuous surface of pixels, each representing a 30m x 30m square area. For visualization purposes the pixels have been converted to points, and generalized at different zoom levels.

    http://forests.foundryspatial.com

    #forêt #canada #image_satellite #cartographie

  • Scientists: #air #pollution led to more than 5.5 million premature deaths in 2013 | Environment | The Guardian
    http://www.theguardian.com/environment/2016/feb/12/air-pollution-deaths-india-china

    “Air pollution is the fourth-highest risk factor for death globally and by far the leading environmental risk factor for disease,” said Michael Brauer, a researcher from the University of British Columbia.

    Brauer said air pollution contributed to heart disease, stroke, lung cancer, bronchitis, emphysema and acute infections.

    He and his colleagues compared the problem in Asia to the conditions under centuries of industrial revolution in the US and Europe: massive economic growth smothered by clouds of toxic matter in the air.

    #santé #Asie #Chine #Inde

  • Un site de contre cartographie sur les jeux olympiques de Londres en 2012 et Vancouver en 2010

    Alan McConchie PhD Candidate à l’University of British Columbia nous informait :

    With each new Olympics the message control seems to be taken to the next level. Even the Terms of Use page on the London 2012 website tries to prevent you from simply linking to the official site if you are going to portray any official London 2012 organizations “in a false, misleading, derogatory or otherwise objectionable manner”.

    Thus, I had better not provide a link to that site

    http://london2012.com/terms-of-use while at the same time saying that I think the policy is completely ridiculous.

    While we’re on the topic, I’d like to announce an online countermapping project that is designed precisely to confront this extremely controlled, corporatized and militarized landscape of the Olympics.

    The London [de]Tour Guide

    http://londontourguide2012.org

    is a participatory Google map that presents an alternative view of London during the games, detourning the idea of an olympics-themed tourism site while intervening in the digital representation and production of urban space. Anyone can add to the map, and over the next days and weeks the map will shift and develop according to the disparate voices of whoever chooses to contribute.

    The project builds on a similar map of Vancouver created for the 2010 Winter Olympics

    http://vancouvertourguide2010.org

    Disclaimer: I was a part of that project, and I am helping to launch the London version, as well. We are seeking more collaborators on the ground in London to add to the map and spread the word, but of course anyone from around the world can also participate however they wish.

    Et aussi :

    Olympics organisers have warned businesses that during London 2012 their advertising should not include a list of banned words, including “gold”, “silver” and “bronze”, “summer”, “sponsors” and “London”."

    http://www.independent.co.uk/news/uk/home-news/britain-flooded-with-brand-police-to-protect-sponsors-7945436.html

    #cartographie_radicale #jo #jeux_olympiques #londres #vancouver

  • NunatsiaqOnline 2014-03-27: NEWS: Nunavut mine brings prosperity, misfortune to Inuit women: report

    http://www.nunatsiaqonline.ca/stories/article/65674nunavut_mine_brings_prosperity_affliction_to_inuit_women_report

    A new report prepared by Pauktuutit Inuit Women of Canada and researchers at the University of British Columbia paints a troubling portrait of the effects of mining on Inuit women in Baker Lake, a community of 1,700 located 110 kilometres from Agnico Eagle’s Meadowbank gold mine.

    The women told Pauktuutit that, due to the mine, they face discrimination, substance abuse, violence and a break-down in family relationships.

    #canada #nations_premières #inuits #droits_des_femmes #industrie_minières

  • Just Liking A Cause Doesn’t Help : Internet #Slacktivism Harms Charities
    http://www.popsci.com/article/science/just-liking-cause-doesnt-help-internet-slacktivism-harms-charities

    Contrary to some previous studies, research from the University of British Columbia says “liking” a charitable cause publicly allows people to feel they’ve done their part without committing any actual money or time to it.
    [...]
    The researchers found that more public displays of endorsement made people less likely to volunteer their time or financial support for a cause later. More private displays of support, like signing a petition, resulted in a greater likelihood of giving later.

  • Analysis: North Korea’s proposed special economic zones | NK News – North Korea News

    http://www.nknews.org/2013/10/analysis-north-koreas-proposed-special-economic-zones

    The DPRK convened what it called an International Conference on SEZ (Special Economic Zone) Development at the Yanggakdo Hotel in Pyongyang from October 16 to October 17, 2013.

    The conference, organized by the Korea Economic Development Association and which included at least one foreign organizer, Professor Park Kyung-ae of the University of British Columbia in Vancouver, gathered 60 DPRK specialists along with academics from the China, India, Vietnam, the United States, Canada and Malaysia (which has a visa-free travel agreement with the DPRK).

    #corée_du_nord

  • Zero Geography: AAG 2013 CFP: Digital Divides, Digital Domination, and Digital Divisions of Labour

    via @fil qui prépare son voyage en californie

    http://www.zerogeography.net/2012/08/aag-2013-cfp-digital-divides-digital.html

    Association of American Geographers Annual Meeting
    9-13 April 2013
    Los Angeles, CA

    Organizers:
    Mark Graham, Oxford Internet Institute, University of Oxford
    Monica Stephens, Institute of Cartographic Design, Humboldt State University
    Alan McConchie, Department of Geography, University of British Columbia

    The Web is massively uneven in terms of participation and representation. A small number of people are both powerful gatekeepers and produce the bulk of content, while the voices of the majority are largely left out. These phenomena are not unique to the geoweb; geographies of information and knowledge have always been uneven and have always been produced by (and have been producers of) power and privilege.

    Although many speculated that the Internet would offer the potential for reconfigurations of these patterns, we increasingly see that digital divides often just reproduce, replicate, and reinforce earlier offline geographies. This unevenness increasingly matters as online information augments and is woven into everyday life.

    However, the particular asymmetries in the representation and production of spatial information on the geoweb remain opaque and often hidden. This session will focus on the geographies, networks, and power relations of the digital inequalities of the geoweb. We hope to attract research at a range of scales (from the household to the national level) and contexts. Possible topics could include:

    – Gatekeepers of digital information
    – Demographic or geospatial inequalities
    – Invisible exploitation of virtual labor
    – Quantitative studies of geoweb representation
    – Qualitative studies and virtual ethnographies
    – Studies of normative assumptions built into geoweb tools and platforms
    – Studies of racialized, gendered, or otherwise exclusionary geoweb spaces
    – Differences in internet accessibility (i.e. mappings of broadband or wireless penetration)

    #Géographie #Cartographie #Visualisation #Représentation #Internet #Data #Digital-World #Monde-numérique

  • Infants prefer an nasty moose if it punishes an unhelpful elephant | Not Exactly Rocket Science | Discover Magazine
    http://blogs.discovermagazine.com/notrocketscience/2011/11/28/infants-prefer-an-nasty-moose-if-it-punishes-an-unhelpful-el

    Kiley Hamlin from the University of British Columbia has shown that this capacity for finer social appraisals dates back to infancy – we develop it somewhere between our fifth and eighth months of life.
    Hamlin, formerly at Yale University, has a long pedigree in this line of research. Together with Karen Wynn and Paul Bloom, she showed that infants prefer a person who helps others over someone who hinders, even from the tender age of three months. These experiments also showed that infants expect others to behave in the same way – approaching those who help them and avoiding those who harm them. Now, Hamlin has shown that our infant brains can cope with much more nuance than that.