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DOE awarding >$24M to 77 projects through Technology Commercialization Fund

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Concentric Ring Gas Atomization Die Design for Optimized Particle Production, $150,000 Praxair, Indianapolis, Ind. Novel chemical looping process for conversion of natural gas to pure hydrogen, $150,000 CanmetENERGY, Ottawa, Canada Glowink Inc., MetalTek International, Watertown, Wis. MetalTek International, Watertown, Wis.

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

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A recent study by Advanced Resources International of Arlington, Va., The SENSOR reservoir simulator—a generalized 3D numerical model used to optimize oil and gas recovery processes—was used to determine the amount of CO 2 required for a successful demonstration and the effect of CO 2 on oil production within the project time frame.

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DOE Selects 19 Projects to Monitor and Evaluate Geologic CO2 Storage

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In order for low-cost electricity from coal-fired power plants to remain available, the DOE said, economical methods for capturing and storing the greenhouse gas emissions from these plants must be developed. Advanced Resources International , Arlington, Va. Coal supplies nearly 50% of domestic electricity.

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EPA issues greenhouse gas proposals

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According to the findings, the six key greenhouse gases - carbon dioxide (CO2), methane (CH4), nitrous oxide (N2O), hydroflurocarbons (HFCs), perflurocarbons (PFCs) and sulphur hexafluoride (SF6) - threaten the welfare of both current and future generations.

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DOE Selects 15 Projects Aimed at Secure CO2 Underground Storage

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Geologic storage is currently focused on five types of formations:(1) depleted oil and gas reservoirs, (2) deep saline formations, (3) unmineable coal seams, (4) oil- and gas-rich organic shales, and (5) basalts. The selected projects are described below: Advanced Resources International, Inc. Arlington, Va.)

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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. Chanmanee et al. Click to enlarge.

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