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Ramaco Carbon partnering with ORNL on new processes to make graphite from coal

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Ramaco Carbon is partnering with Oak Ridge National Laboratory to develop new, large-scale processes for making graphite from coal. The conversion of coal to higher value materials, such as graphene, graphite or carbon nanotubes, is of high interest, and a number of researchers have proposed processes.

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Haldor Topsoe establishes focused green hydrogen organization to accelerate electrolysis business

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Haldor Topsoe is determined to take a leading position in the green hydrogen space, and has established a focused green hydrogen organization to accelerate its business. The new organization will leverage Topsoe’s insights into solid oxide electrolysis. —Roeland Baan, CEO at Topsoe.

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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. million, taking their projects through to the demonstration phase, and towards the successful commercialization of their technologies. The biochar is rich in carbon and can be used as a fertilizer.

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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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Haldor Topsoe and Aker Carbon Capture to cooperate on low-carbon hydrogen solutions

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Aker Carbon Capture and Haldor Topsoe have signed a memorandum of understanding with the intention to offer a complete solution for low-carbon hydrogen production. Aker Carbon Capture’s proprietary carbon capture process uses a mixture of water and organic amine solvents to absorb the CO 2.

Carbon 199
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EU project HyFlexFuel converted sewage sludge and other biomasses into kerosene by hydrothermal liquefaction (HTL); SAF

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For the future, it will be important to commercialize advanced biofuel conversion technologies, which utilize a broader and more sustainable feedstock base. Sustainability: The HTL technology has the potential to produce fuels with a low carbon footprint over the entire life cycle, without competing with food and feed production.

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DOE researchers investigate economic and environmental impacts of converting wet waste to renewable diesel

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estimated that with conversion by hydrothermal liquefaction (HTL) and upgrading, the wet waste resource availability in the United States could be converted to jet fuel that is equivalent to about 24% of the U.S. Skaggs et al. demand in 2016. GLE and $0.9/GLE. Meanwhile, the plant size has a great impact on the MFSP.

Waste 434