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  • The mechanical stomach powering homes by digesting old food scraps

    The electricity powering 3,000 Perth homes might have started out as moldy bread and rotting lettuce. The city of Cockburn collects food waste from supermarkets and restaurants to be fed into a mechanical "stomach" that converts the waste to energy. Methane is trapped and used to power electric generators. The remainder of the "digested" food is turned into compost and liquid fertilizer. The operation has recycled 43 tons so far, removing 81,000 kilograms of gases that otherwise would escape landfills and warm the atmosphere.

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  • What Went Into Building Europe's Largest Floating Solar Park

    Evides Waterbedrijf, a drinking water company, created Europe’s largest floating solar park. They installed almost 3,000 solar panels on an island in the middle of a reservoir that allows it to move with the sun to maximize its energy. This setup generates about 15 percent of the electricity the company uses at the site.

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  • The Hottest Amenity From Developers? A Power Plant Made of Batteries.

    An apartment complex in Utah includes a solar battery in every apartment allowing the resident, power utility, and building developer to save costs for generating electricity. Through a unique partnership, the power systems can provide 12.6 megawatts of power for the building, which translates into residents saving up to 40 percent on the energy bills. This setup might not be easy to scale, but the developer plans to expand the model in other states.

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  • The EV tax credit can save you thousands — if you're rich enough

    A tax credit was supposed to incentive Americans to buy electric vehicles, but testimony from car buyers and research has shown that only people who can afford the full purchase are getting access to the benefit. The tax break gives electric car purchasers a credit on their taxes the following year, but only as much as they owe the government. The purchase could end up costing more than buyers expected, which can be a barrier for people who want to switch to electric.

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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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  • How Vermont's Energy Efficiency Utility Is Helping Businesses Sweat the Small Stuff

    To make their restaurant more energy efficient and to cut its carbon footprint, The Publyk House utilized the services of Efficiency Vermont, a publicly funded energy efficiency utility. As part of their Deep Energy Retrofit program, the utility helped install insulation, LED lighting, and high-efficiency appliances at the restaurant, allowing them to save 50 percent on energy in two years. Since the start of the program, 10 businesses have been able to cut their energy consumption in half.

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  • “Power Companies Get Exactly What They Want”: How Texas Repeatedly Failed to Protect Its Power Grid Against Extreme Weather

    After winter storms and freezing temperatures in 2011 and 2014 caused power plants in Texas to shut down, the state’s energy regulators failed to adapt the state’s electric grid for future extreme weather events. Experts say the state’s deregulated energy market, failure to weatherize facilities, and a lack of action from lawmakers to update the power grid caused millions of customers to lose power during the deadly 2021 winter storm.

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  • The Texas Freeze: Why the Power Grid Failed

    By relying on the market to give energy suppliers' incentives to keep the power going during extreme weather events, a historic cold snap in Texas revealed cracks in the state’s free-market energy system, which left millions powerless during the storm. Critics of the state’s system say “the alphabet soup of Texas energy oversight bodies” led to inaction and there was a lack of preparation from plant owners to ensure that they could continue to operate in extreme heat and cold temperatures.

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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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  • 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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