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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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Researchers from the University of Liverpool (UK), with colleagues from Dalian University of Technology (China) and the University of Hull (UK), have developed a new process for the direct, one-step activation of carbon dioxide and methane (dry reforming of methane) into higher value liquid fuels and chemicals (e.g.,

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Compact pilot plant for solar to liquid fuels production

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An electrolysis unit developed by Lappeenranta University of Technology (LUT) produces the required hydrogen by means of solar power. In 2017, operation is planned to be continued on the campus of LUT. The plant consists of three components. The SOLETAIR project will be completed in mid-2018.

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Materials science as key enabler for clean energy transition

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a–i, Advances in materials science and engineering are increasing the efficiency of electricity generation from clean renewable energy sources—solar panels (a) and wind turbines (b), for example—as well as electricity distribution (c) and storage (d). Renewable energy future. Illustration courtesy of Paloma Liu. Chen et al.

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Aachen team develops framework for model-based formulation of biofuel blends with tailored properties

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A team at RWTH Aachen University has developed a framework for the model-based formulation of biofuel blends with tailored properties by considering the fuel’s molecular composition as the fundamental design degree of freedom. Based on the selection of a palette compound (Stage 1), a conversion pathway is created in Stage 2.

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GWU team demonstrates one-pot process for optimized synthesis of controlled CNTs from CO2; coupling cement and C2CNT

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Researchers at George Washington University led by Dr. Stuart Licht ( earlier post ) have developed a new process that transforms CO 2 into a controlled selection of nanotubes (CNTs) via molten electrolysis; they call the process C2CNT (CO2 into carbon nanotubes). Licht (2017). —Licht (2017). —Licht (2017).

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DOE releases five-year strategic plan, 2014-2018; supporting “all of the above” energy strategy

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To achieve this first objective, DOE intends to pursue parallel strategies: Advance options for diverse energy resources and conversion devices for power. The President’s Climate Action Plan contains a goal of doubling renewable energy generation from wind, solar, and geothermal sources between 2012 and 2020.

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GWU team demonstrates highly scalable, low-cost process for making carbon nanotube wools directly from CO2

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Researchers at George Washington University led by Dr. Stuart Licht have demonstrated the first facile high-yield, low-energy synthesis of macroscopic length carbon nanotubes (CNTs)—carbon nanotube wool—from CO 2 using molten carbonate electrolysis ( earlier post ). Johnson et al. Click to enlarge. 2017.07.003.

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