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Study: even with high LDV electrification, low-carbon biofuels will be necessary to meet 80% GHG reduction target; “daunting” policy implications

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The Wisconsin and Michigan team normalized the highly detailed vehicle assumptions and transport calculations from these studies around the rates of electrified vehicle penetration; travel demand growth; and electricity decarbonization. Renewable and nuclear electricity supply technologies are available today.

Carbon 150
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ARPA-E awarding $60M to 23 projects; dry cooling and fusion power

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University of Missouri, Lehigh University, and Evapco). Colorado State University. Ultra-Efficient Turbo-Compression Cooling Colorado State University (CSU) will develop a waste heat driven cooling system with team members Barber- Nichols and Modine, which utilizes an ultra-efficient turbo-compressor powered by exhaust flue gas.

Fusion 150
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Researchers develop four-step catalytic process to produce petroleum refinery feedstocks from biomass sugars

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A team of researchers led by James Dumesic and George Huber, both now at the University of Wisconsin-Madison, have demonstrated how C 5 sugars derived from hemicellulose can be converted into a high-quality petroleum refinery feedstock via a four-step catalytic process. Source: Olcay et al. Click to enlarge.

Convert 268
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Using the PHEV (Plug-In Hybrid Electric Vehicle) to Transition Society Seamlessly and Profitably From Fossil Fuel to 100% Renewable Energy

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Frank is Professor Emeritus, Mechanical and Aeronautical Engineering at the University of California, Davis, where he established the Institute for Transportation Studies (ITS-Davis), and was director of the US Department of Energy’s National Center of Hybrid Excellence at UC Davis. Table of Contents. Engineering Advantages of PHEV.

PHEV 150