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  • Scrap-and-Replace Program Helps Low-Income Californians Afford Cleaner Cars (and Now, E-Bikes)

    In an attempt to curb carbon emissions from the transportation sector, Californians are trading in old, environmentally-unfriendly cars in for greener electric cars or vouchers for alternative transportation. Clean Cars 4 All requires participants to meet income-based eligibility and only takes cars built in 1999 or earlier. The program will soon include rebates on electric bikes as well.

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  • Bringing the chill of the cosmos to a warming planet

    SkyCool Systems manufactures panels that can be incorporated into existing cooling systems to reduce the amount of electricity needed to turn hot air into cold air. The technology is based on radiative cooling and utilizes a thin, mirror-like film engineered using nanotechnology to send heat into space while absorbing almost no radiation. It lowers the temperature of objects by more than 10 degrees and doesn’t require electricity or special fuels, so it does not produce greenhouse gases. While piloting the panels, a grocery outlet saved over $3,000 in electricity costs over the course of just one summer.

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  • Smart Tourism

    Tourists can travel to remote destinations in the Himalayas and help install solar technology in villages where residents live without electricity. GHE has used funds from the tourism component to electrify 100 villages which increased the quality of life for residents and resulted in an opportunity for tourism where one did not exist before. As a result of the electrification, a community tourism initiative allowed for tourists to stay with villagers and provided an addition source of income. The economic stimulus from tourism gave native youth a reason to stay in their villages instead of migrating.

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  • Locals Question the Relevance of First Solar Power Plant in Soroti

    Four years later after a solar grid was installed in Uganda, residents of nearby villages are wondering when they will get some of that power. The 10-megawatt facility, which cost $19 million to build, was expected to provide electricity to about 40,000 homes, schools, and businesses in the area. However, almost all households in the 10 surrounding villages still use firewood for cooking. The lessons learned from this renewable energy project could help inform others as the country looks to power more parts of the country with solar panels.

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  • In Slumping Energy States, Plugging Abandoned Wells Could Provide an Economic Boost

    North Dakota is using some of its COVID-19 pandemic relief funds to plug 239 abandoned oil wells and reclaim 2,000 acres of lands. Abandoned wells can contaminate groundwater and leak methane that is hazardous to human health and contributes to climate change. While not everyone agrees that the funds should be used to plug wells, state officials say the economic relief program is keeping about 600 oilfield workers employed.

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  • University of Arizona researchers unveil new model for desert farming in warming world

    In an experimental garden in Arizona, scientists are seeing how to produce sustainable and local food in a desert environment. They’re growing plants under a photovoltaic “canopy” of solar panels that provide necessary shade for the crops and, at the same time, generate cheap, renewable energy for irrigation systems and farm equipment. So far, they’ve been able to grow basil, Anasazi red beans, and a special bell pepper. While not all crops will work in this system and scaling the garden has its challenges, learning how to grow food in the desert is necessary to adapt to a future with climate change.

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  • Could 80,000 family woodlot owners be the key to saving the Acadian forest?

    Community Forests International created a carbon project to preserve Acadian forest. They measured and quantified carbon storage on small family-owned forest land, certified it by third-party standards, and sold the carbon offsets to an architecture and engineering firm. A conservation easement was also put on the land to ensure the forest’s longevity. The organization has stored enough carbon dioxide to equal the greenhouse gas emissions of 8,229 passenger vehicles driven for a year in three Wabanaki-Acadian forest preserves. The money raised helped buy some of the land to practice sustainable agriculture.

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  • The buildings heated by human warmth

    Harnessing body heat provides energy-saving heating to commercial and residential buildings. The Stockholm Central station in Sweden and the Mall of America in Minnesota both capture body warmth to provide some of the buildings' heat. Each has over 100,000 daily visitors during non-coronavirus times, generating substantial heat that can be captured by energy-efficient construction. Body heat is also utilized in residential spaces, where thermal insulation helps keep the warmth inside. Using body heat requires energy-efficient building materials and generally cannot provide all of a building's heating needs.

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  • Coastal Louisiana tribes team up with biologist to protect sacred sites from rising seas

    Indigenous communities in Louisiana are working with scientists to restore wetland ecosystems and protect tribal mounds along the Gulf Coast through backfilling projects. Depleted oil wells and canals in the area are often abandoned, creating reservoirs of stagnant water that affects freshwater plants and animals. The group has started to identify priority canal sites to fill in and seek funding to kick off the project, which can be challenging to get.

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  • Can we harness the Arctic's methane for energy?

    Alternative energy systems in Africa could help inform how to trap methane in the Arctic. Due to permafrost thawing and glaciers melting, methane, a greenhouse gas that contributes to climate change, is leaking into the atmosphere. In Rwanda, a lake-based methane power plant extracts methane from the water and turns it into electricity. But questions remain about how similar systems and infrastructure could work in the Arctic landscape.

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