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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. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. North Carolina State University. Oregon State University. Microchannel Reactor for Ethanol to n-Butene Conversion. University of Cincinnati. 1,999,882.

Waste 186
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New fast hydrothermal process converts 65% of wet algae feedstock sample to biocrude in one minute

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Phillip Savage at the University of Michigan has found that with appropriate parameters, hydrothermal liquefaction (HTL) can convert 65% of wet algae (a Nannochloropsis species) into biocrude in one minute. Biocrude from Nannochloropsis. Credit: Savage Lab. Click to enlarge. A team led by Prof. Faeth and Phillip E.

Convert 297
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PetroAlgae partners with CRI Catalyst to optimize conversion of biomass to renewable drop-in fuels using IH2 technology

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a provider of licensable commercial micro-crop technology globally, has entered into an agreement with CRI Catalyst Company LP (CRI) to use Integrated Hydropyrolysis and Hydroconversion technology (IH 2 ) for the conversion of PetroAlgae’s micro-crop residues into renewable fuels. PetroAlgae Inc., Earlier post.).

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DOE awarding $35M to 11 projects for hydrokinetic turbine development; ARPA-E SHARKS

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The University of Michigan. The University of Michigan proposes the RAFT concept as a solution for hydrokinetic energy harvesting. University of Washington. University of Virginia. University of Alaska Fairbanks. Confinement-Exploiting Cross-Flow Turbine Arrays – $2,000,000.

Mariner 418
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ExxonMobil, UW-Madison partner on biomass-to-transportation fuel research

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The University of Wisconsin-Madison and ExxonMobil announced a two-year agreement to research the fundamental chemistry of converting biomass into transportation fuels. The science of biomass conversion is very complicated. Researchers have used expensive precious metal catalysts such as platinum for biomass conversion.

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Researchers propose new design principle for proton-conducting electrolytes in intermediate-temperature solid oxide fuel cells

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The University of Michigan - Shanghai Jiao Tong University Joint Institute (UM-SJTU JI,) Professor Qianli Chen and her collaborators are proposing a new design principle for perovskite materials with high proton conductivity for use as electrolyte materials in solid oxide fuel cells.

Design 221
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U Michigan team boosting efficiency of thermoelectric materials; potential of reaching 15-20% efficiency could result in practical applications

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Skutterudites are one of several promising novel thermoelectrics—materials that convert a heat differential to electricity—that have been developed and pursued for more than a decade, notes Ctirad Uher, co-author of the PRL paper and author of a chapter on Skutterudite-based thermoelectrics in the 2006 Thermoelectrics Handbook.

Michigan 186