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BMW’s GM of battery cell technology joins Wildcat Discovery’s board

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Lamp received his MSc in physics from the Technical University of Munich in 1989. Between 1994 and 2000 he was group leader at the Department of Energy Conversion and Storage of the Bayerischen Zentrum für angewandte Energieforschung (ZAE) in Garching. In 1993, he obtained his PhD in general physics.

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Tsinghua team develops bio-inspired self-healing sulfur electrodes; almost no capacity decay after 2000 cycles

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By mimicking fibrinolysis, a biological self-healing process, researchers at China’s Tsinghua University have developed a self-healing sulfur microparticle (SMiP) cathode. This inspires many promising applications toward smart electronics, artificial skin, and energy storage. mg (S) cm −2. —Peng et al. —Peng et al.

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ExxonMobil and Global Thermostat in joint development agreement to advance atmospheric carbon capture technology

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By partnering with ExxonMobil, we’re harnessing the expertise and capabilities of one of the world’s largest energy companies to accelerate our ability to realize that vision. Since 2000, ExxonMobil has invested more than $9 billion in energy efficiency and lower-emission technologies such as carbon capture and next generation biofuels.

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Researchers demonstrate sustainable integrated process for wastewater algae to biocrude via hydrothermal liquefaction

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A team at the University of Kansas has demonstrated the feasibility of an integrated wastewater algae-to-biocrude process using hydrothermal liquefaction (HTL) that can sustainably cultivate algal biomass for biofuel production. A paper on their work is published in the ACS journal Energy & Fuels. Credit: ACS, Roberts et al.

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The Power Engineer Electrifying John Deere’s Tractors, Trucks, and More

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Singh’s work is generally being used in non-Deere applications, such as a battery-charging system connected to distributed energy resources like solar, wind, and diesel generators. He worked on high-efficiency electronics systems, including wide-bandgap power-conversion technologies for EV inverters.

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USC team develops highly efficient catalyst system for converting CO2 to methanol; 79% yield from CO2 captured from air

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Researchers at Loker Hydrocarbon Research Institute and Department of Chemistry, University of Southern California, have developed a highly efficient homogeneous Ru-based catalyst system for the production of methanol (CH 3 OH) from CO 2 and H 2 in an ethereal solvent (initial turnover frequency = 70 h −1 at 145 °C). Click to enlarge.

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Researchers propose evaluating alt fuel efficiency based on energy rather than volume; impact of ethanol on vehicle efficiency and GHGs

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Relative changes in vehicle energy efficiency (VEE) (km/MJ) on ethanol/gasoline blends over those on gasoline for different blending levels. converted all vehicle efficiency measurements into vehicle energy efficiency (VEE, km/MJ) based on fuel energy densities reported in each study. Credit: ACS, Yan et al. Click to enlarge.

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