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DirectFuel Project Targeting Direct Conversion of Solar Energy and CO2 to Engine-ready Hydrocarbon Fuels

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The EU’s DirectFuel project, which launched on 1 October, intends to develop a photobiological process for the direct conversion of sunlight and CO 2 into engine- and infrastructure-ready transport fuels such as propane. The 4-year project will have funding of up to €3.73 million (US$5.1 PCC 6803, a freshwater cyanobacterium.

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

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Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. Microchannel Reactor for Ethanol to n-Butene Conversion. Conversion of 2,3-Butanediol to Biojet Fuel: Scale-up and Technoeconomic Analysis of Energy-Efficient Separations and Fermentative Diol Production. Project title. Federal share.

Waste 186
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Berkeley Lab team creates “cyborgian” hybrid artificial photosynthesis system; CO2 to acetic acid at high yield

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Their hybrid approach combines the highly efficient light harvesting of inorganic semiconductors with the high specificity, low cost, and self-replication and -repair of biocatalysts. thermoacetica serves as an ideal model organism for demonstrating the capabilities of this hybrid artificial photosynthesis system.

Hybrid 150
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Ford first automaker to use captured CO2 to develop foam and plastic for vehicles

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Novomer is commercializing a proprietary catalyst system that transforms waste CO 2 into high performance, low-cost polymers for a variety of applications, including foam and plastic that are easily recyclable. The catalyst system does not use precious metals and requires simple organic chemistry which keeps its synthesis costs low.

Ford 150
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Stanford faculty awarded $2.2 million for innovative energy research; fuel cells, hybrids, splitting CO2

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The Precourt Institute for Energy , an umbrella organization for energy research and education at Stanford, will fund the following three studies and jointly fund one study to be administered by the TomKat Center: Functionalized Graphene-Platinum Composites for Fuel Cells. Carbon Capture and Conversion (CCC) Fuel Cells Hybrids'

Energy 210
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DOE to award up to $6.7M to projects to convert captured CO2 to useful products, including fuels

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Testing and evaluation of organisms grown on flue gas derived from natural gas or other fuels, or on a high-purity CO 2 stream as might be encountered in fermentation processes are not of primary interest for this FOA. carbon fibers or plastics) while significantly reducing the energy demand/over potential required for the conversion process.

Convert 150
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Light-powered nano-bio hybrid organisms consume CO2, create plastics and fuels

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University of Colorado Boulder researchers have developed nanobio-hybrid organisms capable of using airborne carbon dioxide and nitrogen to produce a variety of plastics and fuels, a promising first step toward low-cost carbon sequestration and eco-friendly manufacturing for chemicals. —Prashant Nagpal.

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