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Fulcrum to build second waste-to-fuels plant in Gary, Indiana

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Fulcrum BioEnergy has selected Gary, Indiana as the location of its Centerpoint BioFuels Plant, which will convert municipal solid waste (MSW) into low-carbon, renewable transportation fuel. a highly efficient and economic gasification system for the conversion of the MSW feedstock to syngas.

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US Steel and CarbonFree sign MoU to capture CO2 at Gary Works

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If a definitive agreement is reached, the project is expected to capture and mineralize up to 50,000 metric tons of CO 2 per year, the equivalent to carbon emissions from nearly 11,000 passenger cars. Located in Gary, Indiana, USSteel’s Gary Works has annual production capability of 7.5 million net tons of raw steel per year.

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ClearFlame Engine Technologies hits multiple manufacturing, customer pilot, and fueling milestones

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The first retail sale of E98 ethanol fuel, with CIE (Central Indiana Ethanol), CountryMark, and Co-Alliance Cooperative Inc. In addition to being widely available, it’s proven to be a much greener fuel, with substantially lower carbon emissions than diesel, and significant cost savings. —BJ Johnson, ClearFlame co-founder and CEO.

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246th ACS National Meeting symposium on CO2 conversion to fuels

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Converting CO 2 to usable fuels was the topic of a symposium— CO 2 Conversion: Thermo-, Photo- and Electro-Catalytic —on Sunday at the 246 th National Meeting & Exposition of the American Chemical Society in Indianapolis, Indiana. There were no observable carbonates formed on zirconia.

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NSF grants IU $525,000 to advance research on conversion of CO2 to oxalate as intermediate for materials, plastics and fuel

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Two Indiana University chemists have received $525,000 from the National Science Foundation to advance research with applications to the conversion of CO 2 into oxalate as an intermediate for the ultimate production of carbon-neutral materials, plastics and fuel. IU scientists Steven L. —Steven Tait.

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IU team creates efficient nanographene-Re electro- and photo-catalyst for efficient reduction of CO2 to CO

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Researchers at Indiana University Bloomington have synthesized a nanographene–Re (Rhenium) complex that functions as an efficient electrocatalyst and photocatalyst for the selective reduction of CO 2 to CO for subsequent conversion to fuels. The complex can selectively electrocatalyze CO 2 reduction to CO in tetrahydrofuran at −0.48

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DOE announces more than $65M in public and private funding to commercialize promising energy technologies

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Highly Efficient Electrocatalysts for Direct Conversion Of CO2 To Chemicals, $250,000. Sentient Science (West Lafayette, Indiana). Enhanced Biomimetic Three-Dimensional Nanoporous Gyroid Membrane for High Efficiency Carbon Dioxide Absorption, $250,000. Bio-based Insecticides from Thermochemical Conversion of Biomass, $100,000.