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University of South Florida Spinout Targeting FT Jet Fuel from Biomass with New Catalyst and Process

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A spinout from work at the University of South Florida is developing a new Fischer-Tropsch-based (FT) process to produce hydrocarbon transportation fuels—initially jet fuel—from biomass. Instead of using an iron catalyst as in conventional FT systems, COSI Catalysts Inc. distillation) being required for refining the raw product.

Florida 210
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UF/IFAS researchers develop new sorghum cultivars that could produce up 10.5 kL ethanol per hectare

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Researchers from the University of Florida’s Institute of Food and Agricultural Sciences (UF/IFAS) have found that three UF/IFAS-developed sorghum varieties could produce up to 10,500 liters of ethanol per hectare (about 1,100 gallons US per acre). Castro is now a researcher at the University of Jaén in Spain.

Juice 150
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DOE awards $97M to 33 bioenergy research and development projects

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University of Alabama. University of North Dakota. North Carolina State University. Oregon State University. University of Cincinnati. University of Maryland - College Park. Princeton University. University of Illinois at Urbana-Champaign. Utah State University. Montana State University.

Waste 186
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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Comstock proposes to build a pre-pilot scale system to demonstrate a novel new pathway to convert its biointermediates from forestry residues and other forms of lignocellulosic biomass into renewable diesel, sustainable aviation fuel, gasoline, and marine fuel at dramatically improved yield, efficiency, and cost. Comstock Inc.,

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Researchers Suggest Algae-to-Methane Could Provide Half the Transportation Fuel Required in the US

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Researchers from Auburn University are proposing the development of algae farms where carbon dioxide is received from carbon capture and biologically converted, via photosynthesis and anaerobic digestion, to CNG or LNG transportation fuels. Ron Putt, Auburn University.

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Ionova Technologies says ZIP-Cap ultracapacitors can offer 5x increase in energy density and 25x reduction in build cost (updated with graphic)

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Alternatively, aqueous (water-based) asymmetric ultracapacitors can provide improvements not only in cost, safety and in some cases, environmental impact, but can also provide greater energy and power densities than the non-aqueous approach. While emerging new converters.

Building 304
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Ionova Technologies says ZIP-Cap ultracapacitors can offer 5x increase in energy density and 25x reduction in build cost (updated with graphic)

Green Car Congress

Alternatively, aqueous (water-based) asymmetric ultracapacitors can provide improvements not only in cost, safety and in some cases, environmental impact, but can also provide greater energy and power densities than the non-aqueous approach. While emerging new converters.

Building 275