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Study: 2/3 of aviation climate impact due to emissions other than CO2

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of the human-made climate impact; two-thirds of this impact are caused by emissions other than CO 2 , according to a new study by researchers in Europe and the US. The study was published in the journal Atmospheric Environment. This new study is based on a thorough review of a decade of research on aviation emissions.

Climate 448
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Study: Crop relocation can help buffer US agriculture from climate change but southern states may face massive loss of productive land

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Projected extreme temperatures under climate change are predicted to reduce average yields for several of the United States’ major crops. The extent of these regional changes in agricultural productivity and how they influence future cropping decisions is a central question for the risks of climate change for agriculture and food security.

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UMD-led study: road salts and other human sources are threatening world’s freshwater supplies

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But a new study led by Sujay Kaushal of the University of Maryland warns that introducing salt into the environment—whether it's for de-icing roads, fertilizing farmland or other purposes—releases toxic chemical cocktails that create a serious and growing global threat to our freshwater supply and human health.

Supplies 195
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Study: Energy sorghum may combine best of annual, perennial bioenergy crops

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Maize and other annual crops are easier to manage with traditional farming, but they are tougher on the environment. The researchers conducted ecosystem-scale comparisons of carbon, nitrogen, water, and energy fluxes of Sorghum bicolor with maize and Miscanthus x. Energy sorghum falls somewhere in between.

Energy 321
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Study finds perennial biofuel crops’ water consumption similar to corn

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A study by a team from the Great Lakes Bioenergy Research Center (GLBRC) has found that perennial biofuel crops’ evapotranspiration does not differ greatly from corn. Hamilton uses the soil-water sensors to measure the rate of evapotranspiration occurring within each cropping system. —Hamilton et al.

Water 150
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A New Energy-Efficient Hydrogel Pulls Water From Air

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Using a new kind of hydrogel material, researchers at the University of Texas at Austin have pulled water out of thin air at temperatures low enough to be achieved with sunlight. Atmospheric water harvesting draws water from humidity in the air. The material is a hydrogel, a polymer network that naturally retains a lot of water.

Water 131
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Monash study on solar-driven electrolysis for green hydrogen production cautions on life-cycle emissions and EROI

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The open-access paper on the study is published in the RSC journal Energy & Environmental Science. of hydrogen is currently produced via water electrolysis and only a fraction of this production is powered by renewable energy. Process flow diagram and construction phase boundary. Palmer et al. According to the IEA, less than 0.1%

Solar 459