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University of Nebraska-Lincoln leading $13.5M effort to improve sorghum for biofuel

Green Car Congress

The University of Nebraska-Lincoln will lead a $13.5-million, million, multi-institutional research effort to improve sorghum as a sustainable source for biofuel production. It’s becoming more recognized that we need to move biofuel production to more marginal lands, so they don’t compete with food crops.

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

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University of Alabama. Innovation and optimization of the Szego Mill for reliable, efficient, and successful up-scaling of the deacetylation and mechanical refining process for biofuel production. University of North Dakota. North Carolina State University. Oregon State University. University of Cincinnati.

Waste 186
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DOE Coal FIRST Initiative invests $80M in net-zero carbon electricity and hydrogen plants

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The Coal FIRST Initiative recognizes the importance of hydrogen production from coal, biomass, and waste plastics. The plant will be hosted at one of two Nebraska Public Power District sites, where opportunities for enhanced oil recovery and sequestration have been investigated and where the need for low-carbon power and hydrogen is imminent.

Coal 186
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Consortium for Algal Biofuel Commercialization releases final report on 6-year project

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The Consortium for Algal Biofuel Commercialization (CAB-Comm), led by the University of California, San Diego, has released its final report , detailing the accomplishments and contributions achieved in its six years of operation. Earlier post.) Earlier post.)

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Study casting doubt on GHG benefits of corn stover ethanol draws sharp criticism by other researchers; Liska responds

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The study led by University of Nebraska-Lincoln assistant professor Adam Liska, funded through a three-year, $500,000-grant from the US Department of Energy, used carbon dioxide measurements taken from 2001 to 2010 to validate a soil carbon model that was built using data from 36 field studies across North America. Liska et al.

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Study finds removing corn residue for biofuel production can decrease soil organic carbon and increase CO2 emissions; may miss mandated 60% GHG reduction

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Using corn crop residue to make ethanol and other biofuels reduces soil carbon and under some conditions can generate more greenhouse gases than gasoline, according to a major, multi-year study by a University of Nebraska-Lincoln team of researchers published in the journal Nature Climate Change. Changes in SOC.

Carbon 220
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DOE awarding $12.5M to nuclear energy projects, training

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million investment in three university-led projects, helping to train and educate the next generation of nuclear energy scientists and engineers. University (Westinghouse). Institute (Carpenter Technology; General Electric-Hitachi; The Ohio State University). University of. production of electricity in advanced reactors.

Energy 225