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Iowa State researchers developing low-cost thermochemical process to produce sugars from biomass for bio-fuels and -chemicals; pyrolytic molasses

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Iowa State University (ISU) researchers have developed technologies to efficiently produce, recover and separate sugars from the fast pyrolysis of biomass. ” Low-cost sugars from biomass are a key enabler for many production pathways for bio-based fuels and chemicals. ISU’s Robert C. Earlier post.). Earlier post.).

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US DOE to award nearly $18M to 4 biorefinery projects for mil-spec renewable hydrocarbon fuels

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The US Department of Energy (DOE) will award nearly $18 million to four innovative pilot-scale biorefineries in California, Iowa and Washington that will produce and test drop-in renewable biofuels that meet military specifications for jet fuel and shipboard diesel. The projects selected for negotiation are: Frontline Bioenergy LLC (up to $4.2

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USDA awarding $136M to five major research projects focused in part on developing cellulosic drop-in aviation fuels

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University partners from the states of Washington, Louisiana, Tennessee, and Iowa will lead the projects, which focus in part on developing aviation biofuels from tall grasses, crop residues and forest resources. million to enable the regular production of biomass for economically viable conversion using existing refinery infrastructure.

Louisiana 230
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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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The team will apply atomic layer deposition technology to fabricate and modify the catalyst at the atomic level, with the goal of more than doubling catalyst lifetime, improving selectivity and conversion efficiency at reduced costs. Iowa State University. Bio2Electric, LLC d.b.a. EcoCatalytic Technologies. Zyvex Labs, LLC.

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Pall Awarded Contract by NREL for Filtration and Separation Processes for Biomass-Based Hydrocarbon Fuels; Part of the National Advanced Biofuels Consortium Initiative

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The company will be an engineering partner on each of six processes for biofuel production being evaluated under the program: fermentation, catalytic conversion, catalytic fast pyrolysis, hydropyrolysis, hydrothermal liquefaction, and a low-cost, one-step syngas-to-distillates process.

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DOE Investing Up to $78M Investment in Two Consortia Targeting Algae-Based and Biomass-Based Bio-Hydrocarbon Fuels and Infrastructure; $1.6M for Ethanol Blends Fueling Infrastructure

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These activities will accelerate the ability to overcome several key barriers identified in the Algal Biofuels Roadmap, including: feedstock supply (strain development and cultivation); feedstock logistics (harvesting and extraction); and conversion (production of fuels and co-products). Low-cost one-step syngas to distillates.

St. Louis 199
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New aluminum-cerium alloys could boost rare earth production; improved energy efficiency of engines

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ORNL scientists Zach Sims, Michael McGuire and Orlando Rios, along with colleagues from Eck, LLNL and Ames Laboratory in Iowa, discuss the technical and economic possibilities for aluminum–cerium alloys in an article in JOM , a publication of the Minerals, Metals & Materials Society. Image credit: Carlos Jones, ORNL. Click to enlarge.

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