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GWU team develops low-cost, high-yield one-pot synthesis of carbon nanofibers from atmospheric CO2

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Stuart Licht at The George Washington University in Washington, DC has developed a low-cost, high-yield and scalable process for the electrolytic conversion of atmospheric CO 2 dissolved in molten carbonates into carbon nanofibers (CNFs.) —Ren et al.

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DOE to award up to $6.7M to projects to convert captured CO2 to useful products, including fuels

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The new DOE funding opportunity announcement ( DE-FOA-0001622 ) focuses on the second of these pathways which is focused on securing applications for projects that will develop CO 2 -utilization technologies that produce useful products at lower cost than currently available technologies, without generating additional greenhouse gas emissions.

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SEAT pushes forward with CNG line-up

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SEAT, a member of the Volkswagen Group, continues to spearhead the introduction of compressed natural gas (CNG) technology, giving customers the widest choice of vehicles that are cleaner, more sustainable and offer even greater efficiency. SEAT is committed to boosting CNG as a sustainable alternative to conventional fossil fuels.

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New silica-organic hybrid absorbents deliver among highest performance yet reported for CO2 capture from air

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It is now widely accepted that anthropogenic CO 2 , due to its role as a greenhouse gas, is the major contributor to climate change. Post-fossil fuel alternative sources of carbon therefore need to be found to fulfill our needs for fuels, hydrocarbons, polymers, and other products presently derived mostly from petroleum oil and natural gas.

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DOE to Award Up to $27M in Phase III Small Business Awards; Algae Processing, Fuel Cells, Improved Materials for Motors, Synthetic Fuels Among Areas of Interest

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Grant applications are sought to develop rapid processing technologies for carbon fiber reinforced polymers that can be used in primary and secondary structures of passenger vehicles. saline water).

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