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Advanced Biofuels USA receives USDA grant for feasibility study of eastern shore energy beet-to-jetfuel project

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Unique Maryland-based innovations of the bio-jetfuel project include non-food, low nutrient input energy beets developed by Plant Sensory Systems, LLC of Baltimore and a proprietary enzyme conversion system that utilizes the entire biomass of the energy beet root, including biomass ignored during conventional sugar production.

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DOE awarding $72M to 27 projects to develop and advance carbon capture technologies, including direct air capture

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will prepare an initial engineering design study to use commercial-scale membrane CO 2 capture technology at the CEMEX Balcones cement plant in New Braunfels, TX. Praxair will complete an initial engineering design study for a Linde-BASF CO 2 capture system at a commercial steam methane reforming (SMR) hydrogen plant in Convent, LA.

Carbon 236
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DOE Selects 8 Projects to Advance Technologies for the Co-Production of Power and Hydrogen, Fuels or Chemicals from Coal-Biomass Feedstocks

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GTI will demonstrate how the pellets/briquettes are rugged enough to withstand transportation and piling and show how the pellets/briquettes can be processed into a crushed or pulverized product suitable for use in a commercial coal gasifier. VPI, teaming with the University of Delaware Energy Institute in Newark, Del.,

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USDA Report Provides Regional Roadmap To Meeting the Biofuels Goals of the Renewable Fuels Standard by 2022; Southeast to Provide ~50% of Advanced Biofuels

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Assuming an average biorefinery size of 40 million gallons per year, USDA estimates it meeting the RFS2 advanced biofuels goals will mean building of 527 biorefineries, at a cost of $168 billion. Commercial scale algae production is not included. Decision support and policy analysis tools. Woody biomass, municipal waste potential.

Renewable 210
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ARPA-E awards $175M to 68 novel clean energy OPEN 2021 projects

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The selected projects will focus on technologies such as revolutionizing fuel cells for light- and heavy-duty vehicles, and technologies to generate less nuclear waste and reduce the cost of fuel. 3D-Printed Ceramic Thermocatalytic CO 2 Reactor with High Carbon Conversion and Energy Efficiencies - $3,100,104. University of Delaware.

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ARPA-E Selects 37 Projects for $106M in Funding in Second Round; Electrofuels, Better Batteries and Carbon Capture

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Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. This project will develop and optimize a novel, engineered microorganism that produces a biodiesel-equivalent fuel from renewable hydrogen and carbon dioxide, at costs of less than $2.50 of Delaware). per gallon. Harvard, Univ. of Georgia).

Carbon 249
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ARPA-E awards $35M to 16 REFUEL projects for energy-dense carbon-neutral liquid fuels; leveraging ammonia

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REFUEL projects will convert low-cost renewable energy into a transportable chemical fuel and use these fuels for transportation applications, while reducing production costs and environmental impact. Renewable Electricity-Powered Carbon Dioxide Conversion to Ethanol for Storage and Transportation (Category 1) The Opus 12, Inc.

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