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ARPA-E holding workshop on increasing efficiency of light collection and bioconversion to liquid fuels

Green Car Congress

The US Department of Energy’s ARPA-E will hold a workshop on “Applied Biotechnology for Transportation Fuels: Meeting Today’s Energy Needs by Maximizing Photon Capture” on 2 December 2010, in Arlington, Va. After light energy is captured, how can the ideal biological system for the production of biofuels be created?

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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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Includes replacement of lighting fixtures, control systems, and roof upgrades at selected facilities. Ultra-light Zero Emissions Buses: Replaces two of Flint MTA diesel buses with advanced all-electric Zero-Emissions GTB-40 buses from Fisher Coachworks. Arlington Transit – ART, Virginia: $1,500,000. Minneapolis-St.

Emissions 256
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Toyota Connected’s ‘Cabin Awareness’ concept uses new tech to detect occupants

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It differs from other technologies on the market such as weight sensors, that can be prone to false alerts and mis-detects, cameras limited by blind spots or other radar systems with a limited range of passenger detection. First, a warning light signals on the instrument cluster. Emergency lights flash. Then, the horn honks.

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DOE ARPA-E awards $156M to projects to 60 projects to accelerate innovation in clean energy technologies

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several genes that allow the plant to use light more efficiently, increase its carbon uptake, and divert more energy to the. light energy. uptake, and optimized light utilization. range of cultivation. no rare earth materials, but is light, compact, and potentially. Arlington). produces more oil per acre.

Energy 294
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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. The process uses cheap and earth-abundant catalytic materials.

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