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Blue World Technologies takes 15% stake in Danish Power Systems; methanol fuel cell vehicles

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The complete Blue World system includes the fuel cell stack, the methanol reformer, heat-exchanger, power conversion units and a set of power and operation controllers, and balance of plant. A closed thermal integration enables reuse of fuel cell waste heat for fuel evaporation thereby increasing efficiency.

Fuel 317
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Evonik invests in a hollow fiber spinning plant for gas separation membranes used in energy-efficient single-step upgrading of biogas to biomethane

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By contrast to other processes, our membrane technology needs no auxiliary chemicals; nor does it generate any solid wastes or effluents that would need to be disposed of. The technology is based on membranes produced from high-performance polymers that in the past have been processed into fibers and used in hot-gas filtration.

Gas 218
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Global Bioenergies and LanzaTech to collaborate to assess the bioproduction of isobutene from carbon monoxide

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In a paper earlier this year describing a new mixed oxide catalyst for the direct conversion of bio-ethanol to isobutene, researchers from the Pacific Northwest National Laboratory (PNNL) noted that trimerization of isobutene produces tri-isobutenes, which can be used as an additive for jet fuel. Jennifer Holmgren, LanzaTech CEO.

Carbon 199
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DOE issues 4 funding opportunities totaling $78M for advanced biofuels, bioenergy and bioproducts

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This FOA addresses gaps in current research and development (R&D) which hinder better utilizing waste streams (e.g. led research and development consortium dedicated to identifying and overcoming catalysis challenges for biomass conversion processes. Topic Area 4: Biofuels and Bioproducts from Wet Organic Waste Streams.

Waste 170
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DOE issues $10M incubator FOA for batteries, power electronics, engines, materials, fuels and lubricants

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energy storing) materials. competitive waste heat recovery technologies. based systems for waste?heat If an unconventional solution can be found to reducing the cost for either conventional oxidation or conventional conversion of the fiber, the cost could be reduced. active (non?energy duty engines. Thermoelectric?based

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ARPA-E awards $35M to 16 REFUEL projects for energy-dense carbon-neutral liquid fuels; leveraging ammonia

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Most of the selected REFUEL projects target the production of ammonia or its conversion to hydrogen or electricity, due ammonia’s attractiveness as a hydrogen and energy carrier. Renewable Electricity-Powered Carbon Dioxide Conversion to Ethanol for Storage and Transportation (Category 1) The Opus 12, Inc. hydrogen or electricity).

Carbon 150
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ARPA-E awarding $60M to 23 projects; dry cooling and fusion power

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ARPA-E’s ARID program will fund transformative new power plant cooling technologies that enable high thermal-to-electric energy conversion efficiency with zero net water dissipation to the atmosphere. The polymer structure will cover power plant condenser discharge water and will thus provide cooling while preventing evaporation.

Fusion 150