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Twelve and Alaska Airlines to collaborate with Microsoft to advance sustainable aviation fuel derived from recaptured CO2 and renewable energy

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Twelve has developed an efficient polymer-electrolyte membrane (PEM) CO 2 electrolyzer that uses proprietary CO 2 -reducing catalysts to split CO 2 with just water and renewable electricity as inputs, syngas (CO and hydrogen) as the output, and pure oxygen as the only byproduct. Earlier post.).

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EPoSil: electroactive polymers for generating electricity from wave power

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A German consortium involving four companies and and two universities is developing dielectric elastomers (electroactive polymers) for the conversion of mechanical energy—in this case wave power—into electrical power. EPoSil hopes to unlock this reserve of renewable energy. million).

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Renewable Chemicals and Advanced Biofuels Company Gevo Files for IPO; Non-binding Letter of Intent with United Airlines for Renewable Jet Fuel

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Gevo has a low capital cost retrofit strategy for ethanol plants to produce isobutanol for direct use; for use in the production of plastics, materials, rubber and other polymers; and for use in the production of hydrocarbon fuels. Isobutanol for the production of plastics, fibers, rubber and other polymers. Click to enlarge.

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Researchers Develop Novel High-Performance Polymer Tin Sulfur Lithium Ion Battery

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Sketch of the Sn/C/CGPE/ Li 2 S/C polymer battery. The battery is formed by a Sn/C composite anode, a PEO-based gel polymer electrolyte, and a Li 2 S/C cathode. Hassoun and Scrosati also replaced the common liquid organic solutions with a gel-type polymer membrane. PEO=poly(ethylene oxide). Credit: Hassoun and Scrosati.

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LanzaTech exploring lipids production as part of its CO2 to acetic acid plans; pathways to renewable fuels

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Accordingly, LanzaTech has begun look at the industrial conversion of acetic acid/acetate to lipids, and has demonstrated this. that conversion wouldn’t actually happen in a LanzaTech bioreactor. Earlier post.). While acetic acide is a valuable chemical, it is a market that could be saturated quickly, Burton notes.

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U Minn seeking to license new process to produce isoprene from biomass at high yield; green tires

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Researchers from the University of Minnesota, with colleagues at the University of Massachusetts Amherst, have developed a new high-yield process—a hybrid of fermentation followed by thermochemical catalysis—to produce renewable isoprene from biomass. The search for a commercially viable process for renewable isoprene is not new.

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Yeast and plant fatty acids produce durable recyclable plastic; conversion into biodiesel

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Like all plastics, the new material is a polymer—a large molecule comprising smaller, repeating units called monomers. The units are called omega-hydroxyfatty acids, and when strung together to form a polymer, they can produce a biologically friendly plastic. Gross (2010) Biosynthesis of Monomers for Plastics from Renewable Oils.