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ExxonMobil, UC Berkeley, Berkeley Lab develop new MOF for carbon capture and steam regeneration

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Scientists from ExxonMobil, University of California, Berkeley and Lawrence Berkeley National Laboratory have developed a new material that could capture more than 90% of CO 2 emitted from industrial sources using low-temperature steam, requiring less energy for the overall carbon capture process. C (250-300 ?F)

Carbon 414
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Shipping industry companies launch new zero-carbon shipping research center

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A group of leading shipping industry companies are taking the next step to develop new fuel types and technologies by launching the Mærsk Mc-Kinney Møller Center for Zero Carbon Shipping. Møller - Mærsk, Cargill, MAN Energy Solutions, Mitsubishi Heavy Industries, NYK Lines and Siemens Energy. Møller Foundation.

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UK to award £54M to 15 projects developing innovative carbon removal technology

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The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The carbon dioxide can then be permanently stored or used in various products or applications. Biochar - This is a form of charcoal produced when organic matter is burned without oxygen.

Carbon 305
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Organically synthesized porous carbon shows “exceptional” potential as Li-ion anode material

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A international team of researchers, led by Lancaster University in the UK and Jilin University in China, reports the first organically synthesized sp?sp sp 3 hybridized porous carbon, OSPC?1. The new carbon shows electron conductivity, high porosity, the highest uptake of lithium ions of any carbon material to?date

Li-ion 170
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LanzaTech, Northwestern, ORNL engineer microbe to convert industrial waste gases to acetone or isopropanol

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A team of scientists from LanzaTech, Northwestern University and the Department of Energy’s Oak Ridge National Laboratory have engineered a microbe to convert molecules of industrial waste gases, such as carbon dioxide and carbon monoxide, into acetone and isopropanol (IPA). —Jennifer Holmgren, CEO of LanzaTech.

Waste 273
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Molten carbonate electrolysis can produce a range of carbon nanomaterials, including graphene, from CO2 at high yield

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Researchers from Huazhong University of Science and Technology in China and George Washington University in the US report in a new paper in the ACS journal Accounts of Chemical Research that a range of important carbon nanomaterials can be produced at high yield by molten carbonate electrolysis.

Carbon 376
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NTU Singapore to develop technologies to extract hydrogen from liquid organic hydrogen carriers

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Liquid organic hydrogen carriers are flexible media for the storage and transportation of renewable energy. Liquid organic hydrogen carriers (LOHCs) technology is one of the promising solutions for safe transportation of hydrogen.

Singapore 150