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University of Texas researchers develop new solar photoelectrosynthetic process to convert CO2 to methanol

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Researchers from The University of Texas at Arlington are developing a new process for photoelectrosynthesis of methanol—the conversion of carbon dioxide to methanol using sunlight and hybrid CuO–Cu 2 O semiconductor nanorod arrays. —Ghadimkhani et al. That’s the value-added option. —Krishnan Rajeshwar.

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Alabama Injection Project Aimed at Enhanced Oil Recovery, Testing Important Geologic CO2 Storage

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Carbon dioxide injection—an important part of carbon capture and storage (CCS) technology—is underway as part of a pilot study of CO 2 enhanced oil recovery (EOR) in the Citronelle Field of Mobile County, Alabama. A recent study by Advanced Resources International of Arlington, Va., Southern Company of Birmingham, Ala.,

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DOE Selects 19 Projects to Monitor and Evaluate Geologic CO2 Storage

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The US Department of Energy (DOE) has selected 19 projects to enhance the capability to simulate, track, and evaluate the potential risks of carbon dioxide storage in geologic formations. Researchers will develop systems for tagging CO 2 with carbon-14 at atmospheric level (1 part per trillion) and measuring the carbon-14 CO 2 levels.

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DOE Selects 15 Projects Aimed at Secure CO2 Underground Storage

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The US Department of Energy has selected 15 projects to develop technologies aimed at safely and economically storing carbon dioxide in geologic formations. Arlington, Va.) Columbia University researchers will test and evaluate carbon-14 as a reactive tracer to assess CO 2 transport in a basaltic storage reservoir.

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UTA researchers demonstrate one-step solar process to convert CO2 and H2O directly into renewable liquid hydrocarbon fuels

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Researchers at the University of Texas at Arlington have demonstrated a new solar process for the one-step, gas-phase conversion of CO 2 and H 2 O to C 5+ liquid hydrocarbons and O 2 by operating the photocatalytic reaction at elevated temperatures and pressures.

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US DOT Awards $100M in Recovery Act Funds to 43 Transit Projects to Reduce Energy Consumption and Greenhouse Gas Emissions

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The new Fisher buses will provide more than triple the equivalent fuel economy in all-electric mode and reduce CO2 emissions due to the extensive use of lightweight materials and the large capacity battery system. Arlington Transit – ART, Virginia: $1,500,000. Productive Alternatives/Transit Alternatives, Minnesota: $845,000.

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DOE Joint Genome Institute approves 41 projects for 2012 Community Sequencing Program; climate, environment and bioenergy feedstocks

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Still other projects are targeting improvements in biofuel feedstock production, focusing on the potential of microorganisms to improve feedstock growth and prevent devastating diseases that hinder yields. The Dangl team seeks to apply the genetic and genomic information toward applications in bioenergy and carbon cycling research.