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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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Raven SR and Chart Industries to collaborate on hydrogen and carbon capture

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Raven SR, a renewable fuels company, and Chart Industries will collaborate globally on the liquefaction, storage, and transportation of hydrogen as well as pure carbon dioxide produced from Raven SR’s non-combustion Steam/CO 2 Reformation process of converting waste to renewable fuel. —Matt Murdock, CEO of Raven SR.

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BASF and RWE proposing 2GW offshore wind farm for green electricity and hydrogen for chemical industry

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Methane pyrolysis: Methane pyrolysis uses green electricity to split methane into hydrogen and carbon. Another output of this process is high-purity solid carbon, a valuable raw material that can replace carbon in various industrial sectors, such as the steel industry.

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Flue2Chem project awarded £5m to convert industrial waste into sustainable materials

Innovation News Network

The Flue2Chem project aims to reduce carbon emissions by converting industrial waste gases into sustainable materials. The post Flue2Chem project awarded £5m to convert industrial waste into sustainable materials appeared first on Innovation News Network.

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Oxford spin-out OXCCU raises US$22.8M to transform carbon dioxide into sustainable aviation fuel

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OXCCU, a company spun-out from the University of Oxford in 2021 that is focused on converting carbon dioxide and hydrogen into industrial and consumer products ( earlier post ), completed an £18-million (US$22.8 million) Series A financing round.

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US DOE will fund applied research and development to accelerate decarbonization of US industry

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The US Department of Energy (DOE) intends to issue a funding opportunity announcement (FOA) that will support DOE’s efforts to decarbonize the US industrial sector and move the US toward net-zero carbon emissions. The industrial sector currently accounts for one-third of domestic, energy-related carbon dioxide emissions.

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Researchers use efficient microbial electrosynthesis cells to convert CO2 to butyric acid; upgrade to butanol

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Researchers from University of Girona (Spain) successfully used electrically efficient microbial electrosynthesis cells (MES) to convert CO 2 to butyric acid. Chain elongation resulted in the selective (78% on a carbon basis) production of butyric acid, a valuable chemical used in pharmaceuticals, farming, perfumes, and the chemical industry.

Convert 369