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KIT coordinating EPIC project; accelerated drying of electrodes for Li-ion batteries

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The new EPIC project coordinated by Karlsruhe Institute of Technology (KIT) is aimed at accelerating the drying of high-quality electrodes for lithium-ion batteries, increasing the energy efficiency of this process and, hence, reducing the cost of production. Photo: Ralf Diehm/KIT).

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Compact pilot plant for solar to liquid fuels production

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Partners from Germany and Finland in the SOLETAIR project are building a compact pilot plant for the production of gasoline, diesel and kerosene from solar energy, regenerative hydrogen and carbon dioxide. This reactor was developed by KIT. KIT, INERATEC, and VTT plan to extend their cooperation.

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H2ME has 100 fuel cell vehicles on the road in Germany, France and UK

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Hydrogen Mobility Europe ( H2ME ), a multi-country, multi-partner project to demonstrate that hydrogen can support Europe’s future transport demands, announced that it has deployed its first 100 fuel cell electric vehicles (FCEVs) in Germany, France and the UK.

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CELEST, largest German research platform for electrochemical storage, begins operation

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CELEST pools the know-how of 29 institutes of its partners: Karlsruhe Institute of Technology (KIT), Ulm University, and the Center for Solar Energy and Hydrogen Research Baden-Württemberg (ZSW). The Center for Solar Energy and Hydrogen Research Baden-Württemberg (ZSW) and Gießen University are also partners of this proposal.

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Germany’s AgiloBat project seeks flexible battery production in terms of format, material, quantities

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Researchers from the Karlsruhe Institute of Technology (KIT), together with partners at the Center for Solar Energy and Hydrogen Research Baden-Württemberg (ZSW) and the Fraunhofer Institute for Chemical Technology (ICT) are developing an agile production system for batteries. —KIT President, Professor Holger Hanselka.

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Researchers propose using AC and ventilation systems for decentralized production of carbon-neutral synthetic fuels

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Researchers at the Karlsruhe Institute of Technology (KIT) and the University of Toronto have proposed a method enabling air conditioning and ventilation systems to produce synthetic fuels from CO 2 and water from the ambient air. Private photovoltaic systems have shown how well this can work. —Professor Dittmeyer.

Carbon 236
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Proof-of-principle of cost-effective methane cracking technology for H2 production without CO2; 50% cleaner than SMR, comparable to electrolysis

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Researchers of the Institute for Advanced Sustainability Studies ( IASS ) in Potsdam and the Karlsruhe Institute of Technology (KIT) have achieved the proof-of-principle for a innovative technique to extract hydrogen (H 2 ) from methane (CH 4 ) without the formation of CO 2 as a byproduct.

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