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Gen 2 low-cost flywheel-based Torotrak KERS for buses en route to production in mid-2016

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The KERS captures the kinetic energy that is normally wasted when the bus is braking and stores it in a steel and carbon fibre flywheel weighing 8.5kg and spinning at up to 30,000 rpm. In collaboration with its global Tier 1 manufacturing partner, Torotrak is on track to commence production of bus KERS systems from mid-2016 onwards.

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DOE to award $118M to 17 projects to accelerate domestic biofuel production

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Made from widely available domestic feedstocks and advanced refining technologies, energy-dense biofuels provide a pathway for low-carbon fuels that can lower greenhouse gas emissions throughout the transportation sector and accelerate the bioeconomy. per GGE, with lifecycle emissions reductions exceeding 80% over petroleum.

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Stanford team devises new bio-inspired strategy for using CO2 to produce multi-carbon compounds such as plastics and fuels

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Researchers at Stanford University have devised a new strategy for using CO 2 in the synthesis of multi-carbon compounds. CO 2 reacts readily with carbon-centered nucleophiles—a chemical intermediate species that donates an electron pair to an electrophile to form a chemical bond in relation to a reaction.

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FPX Nickel establishes subsidiary to pursue large-scale, low-cost and permanent carbon capture and storage

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to pursue opportunities in large-scale, low-cost and permanent carbon capture and storage (CCS). Importantly, FPX will have the right to use any intellectual property developed by CO 2 Lock, further raising the potential for development of a low- or zero-carbon nickel mining operation at Decar. FPX Nickel Corp.,

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Global Bioenergies reports first production of green isobutene at demo plant

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Global Bioenergies is now entering the final phase of demonstrating its technology for converting renewable carbon into hydrocarbons. The first trials on the demo plant in Leuna were successfully completed, within schedule, in the fall of 2016 and Global Bioenergies announced first production of green isobutene via fermentation.

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

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Ford Motor Company is the first automaker to formulate and test new foam and plastic components using carbon dioxide as feedstock. 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.

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

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thermoacetica –CdS), enabling the photosynthesis of acetic acid from carbon dioxide. 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. Click to enlarge. doi: 10.1126/science.aad3317.

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