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New catalytic process to convert lignin into jet-range hydrocarbons

Green Car Congress

Researchers at Washington State University (WSU) Tri-Cities have developed a catalytic process to convert corn stover lignin into hydrocarbons (C 7 –C 18 )—primarily C 12 –C 18 cyclic structure hydrocarbons in the jet fuel range. The work is featured on. the cover of the December issue of the RSC journal Green Chemistry.

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Lightning Systems converting 35-foot diesel buses to battery-electrics in Boulder; cost-effective electrification

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The first demonstration vehicle will be on the road this summer and will give the bus more than 200 miles of all-electric range. This project will be the first step for the City of Boulder and Via in realizing their combined goal of converting the HOP fleet of 35-foot transit buses to all-electric vehicles.

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DOE awards $18M to six projects for algae-based biofuels; targeting <$5/gge

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Algal biomass can be converted to advanced biofuels that offer promising alternatives to petroleum-based diesel and jet fuels. Additionally, algae can be used to make a range of other valuable bioproducts, such as industrial chemicals, bio-based polymers, and proteins. Marine Algae Industrialization Consortium (MAGIC), Duke University.

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DOE to award $35M to 24 projects to support early-stage, innovative technologies and solutions in advanced manufacturing

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Board of Trustees of the University of Illinois. The University of Illinois will conduct research to develop a composite plastic heat exchanger for a low temperature gas streams common in industry. Colorado State University. Iowa State University. Michigan State University. Temple University.

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USDA and DOE award $12.2M to 10 research projects to accelerate bioenergy crop production and spur economic impact

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The potential benefits of this research range from decreasing oil consumption to increasing options for American farmers. Bartley, University of Oklahoma, Norman. Eric Beers, Virginia Polytechnic and State University, Blacksburg. Braun, University of Missouri, Columbia. Luca Comai, University of California, Davis.

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Using Ozone-Generated Bubbles to Remove Oil Sheen and Contaminants from Water

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A University of Utah engineer has developed an inexpensive new method to remove oil sheen by repeatedly pressurizing and depressurizing ozone gas, creating microscopic bubbles that attack the oil so it can be removed by sand filters. —Professor Andy Hong. The ozone in the bubble attacks certain pollutants because it is a strong oxidant.

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NREL researchers report on two approaches to upgrading biomass pyrolysis oil for hydrocarbon fuels

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At last month’s World Renewable Energy Forum 2012 in Denver, Colorado, researchers from the US National Renewable Energy Laboratory presented papers on two different approaches to upgrade pyrolysis oils to hydrocarbon fuels or fuel intermediates. Fast pyrolysis can convert about 70% of the mass and energy into the liquid product.

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