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New plasma synthesis process for one-step conversion of CO2 and methane into higher value fuel and chemicals

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Researchers from the University of Liverpool (UK), with colleagues from Dalian University of Technology (China) and the University of Hull (UK), have developed a new process for the direct, one-step activation of carbon dioxide and methane (dry reforming of methane) into higher value liquid fuels and chemicals (e.g., —Wang et al.

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Wärtsilä completes conversion of tanker Bit Viking from heavy fuel oil to to LNG

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Wärtsilä Corporation has completed the conversion of the 25,000 dwt product tanker Bit Viking from heavy fuel oil to liquefied natural gas (LNG) operation. The conversion enables the Bit Viking to qualify for lower nitrogen oxides (NO x ) emission taxes under the Norwegian NO x fund scheme. The converted Bit Viking.

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Sandia team puts power into local grid with supercritical CO2 closed-loop Brayton-cycle turbine

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Sandia National Laboratories researchers recently delivered electricity produced by a new power-generating system to the Sandia-Kirtland Air Force Base electrical grid. The system uses heated supercritical carbon dioxide instead of steam to generate electricity and is based on a closed-loop Brayton cycle.

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Fraunhofer IWKS starts project BReCycle on efficient recycling of fuel cells

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A consortium led by the Fraunhofer Research Institution for Materials Recycling and Resource Strategies IWKS and including Proton Motor Fuel Cell GmbH, MAIREC Edelmetallgesellschaft mbH, Electrocycling GmbH and KLEIN Anlagenbau AG, is developing a closed-loop recycling concept specifically for PEM fuel cells.

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VTT and Neste to build integrated Power-to-Liquids demo facility; CO2 capture, green hydrogen and e-fuels production

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E-fuels offer a way to expand the carbon-neutral transport fuel pool beyond biomass-based renewable fuels to replace fossil fuels in existing internal combustion engines. The end product is a transportation fuel suited for aircraft, ships as well as heavy and light road vehicles.

Building 186
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Georgia Tech team develops highly efficient multi-phase catalyst for SOFCs and other energy storage and conversion systems

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Researchers at Georgia Tech, with colleagues in China and Saudi Arabia, have developed a rationally designed, multi-phase catalyst that significantly enhances the kinetics of oxygen reduction of the state-of-the-art solid oxide fuel cell cathode. The ions meet to make water, which exits the fuel cell. cm 2 at 600 °C. —Chen et al.

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KIST team develops membrane reactor system to produce pure H2 from ammonia with high productivity

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1 ) and ammonia conversion (>99%) at a significantly reduced operating temperature (. Steam is adopted as a sweep gas, presenting efficient H 2 recovery (>91%) while replacing conventionally utilized noble carrier gases that require additional gas separation processes. mol-H 2 g cat ?1 Credit: KIST.