Artwork stating 'Education Destroys Barriers', 'We Demand Treatment', and 'I Need A Chance'

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  • Ten years after Fukushima: could new fuels make nuclear power safer?

    After the 2011 Fukushima nuclear disaster, scientists are looking for ways to ensure the future of nuclear power is safer. One possibility is improving the protective barrier that surrounds the fuel pellets. They coated the fuel road with chromium and in tests, the new coatings performed well. However, modeling suggests that the chromium-coating might not provide enough time to stabilize a power plant during a meltdown. Still, these materials have started to appear in commercial nuclear reactors and could help reduce fuel waste and save money.

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  • To maximize emission cuts, this Boston campus gets its power from the Midwest

    Boston University is getting all of its electricity from a wind farm in South Dakota, which should cover its annual energy needs of 205 million kilowatt-hours. Some energy advocates say the higher education institution should have purchased their renewable energy locally, but the university says their main goal was to maximize its reduction in greenhouse gas emissions. They hope to share their model with other “large energy buyers” and use the wind farm as an educational and research opportunity for students.

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  • Norway's Electric Car Triumph Started With an '80s Pop Star

    After Norwegian pop band A-ha made headlines for using an electric vehicle in 1989, the government began implementing incentives for people to drive the cars. These perks made electric vehicles so popular in the Scandinavian country that they had to start scaling some of them back. Still, by the end of 2020, nearly 90 percent of all cars sold were rechargeable.

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  • Floating Wind Turbines Buoy Hopes of Expanding Renewable Energy

    Hywind Scotland is the world's first commercial wind farm using floating wind turbines to generate power for about 36,000 homes a year. This approach — which is being seriously looked at by several countries seeking to reduce their carbon emissions and oil-and-gas companies wanting to expand into renewable energy — allows wind farms to work in deeper waters where there is often stronger winds.

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  • An Architecture Firm's Push to Build Net-Zero Apartments—on a Budget

    Apartments at Front Flats, a new residential building in Philadelphia, is powered by 492 solar panels that are wrapped around the building. The point: to demonstrate that developers can design buildings that are energy-efficient and be built at an affordable cost. It’s not clear yet if the building is “net zero” in terms of producing as much energy as it consumes, but residents are paying only $40 a month for utilities.

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  • How steel might finally kick its coal habit

    Boston Metal is transforming how steel is made by replacing coal with electrons. Instead of using the fossil fuel in furnaces to melt iron ores, the Massachusetts-based company uses electric currents to heat the ore, which doesn’t create any greenhouse gas emissions. So far, the company has made only several tons of steel, but it recently received investor funding to expand its work.

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  • In pursuit of self-determined development, Borneo's indigenous tribes turn to homegrown renewables

    An indigenous-led nonprofit group called Tonibung installed a micro-hydro electrical system for a village deep in Borneo’s rainforests. The project not only supplied much-needed energy for the villagers of Kampung Buayan, but it is also protecting the surrounding ecosystems, creating jobs for people, and encouraging youth to get involved. “We want to advocate for native rights to self-determination and empower indigenous groups to choose the kind of development that meets the aspirations of their people,” says the founder of the organization.

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  • Electric car batteries with five-minute charging times produced

    Batteries that can be fully charged in five minutes have been created for the first time, allowing electric cars to recharge faster. The Israeli company StoreDot produced 1,000 of these new lithium-ion batteries, which can be recharged for 1,000 cycles while retaining 80 percent of the original capacity. It could be a few years before they are mass produced, but the CEO of the company says that this feat “demonstrates it is feasible and it’s commercially ready.”

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  • How Solar Panels Could Help Save Struggling Farms

    As the amount of farmland decreases in the United States and climate change brings hotter and drier conditions, many farmers are turning to agrivoltaics — growing crops and installing solar panels on the same land — as a way to make ends meet. Research on a garden in Arizona showed that certain crops like tomatoes and chiltepin peppers were able to thrive under the shade of solar panels, while also improving the solar panels’ productivity. “It’s a very unique positive feedback,” said one of the researchers.

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  • What A Solar-Powered, Portable Library Looks Like

    Arizona State University’s SolarSPELL project developed a waterproof device with a solar panel and other equipment that allows users to connect to “offline WiFi” networks and browse preloaded webpages. SD cards store open access educational content and national education ministries have the ability to add national textbooks and other culturally relevant content. About 25 users can connect without slowing browsing speeds and the ASU team provides training on how to use the device. While the device is primarily charged using the solar panel, it can also be charged using electricity during cloudy weather.

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