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C2CNT process converts flue gas from natural gas power plant into carbon nanotubes

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On 26 July, the first flue gas from the natural gas power plant, the Shepard Energy Center in Calgary, Canada, was directly transformed by the C2CNT process ( earlier post ) into carbon nanotubes. Carbon nanotubes grown by C2CNT directly from carbon dioxide (SEM and TEM imaging). Left and center. Earlier post.).

Carbon 353
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New technology converts waste polyethylene to jet fuel in an hour

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Washington State University researchers have developed an innovative way to convert waste polyethylene plastic to ingredients for jet fuel and other valuable products, making it easier and more cost-effective to reuse plastics. For the process, the researchers used a ruthenium on carbon catalyst and a commonly used solvent.

Convert 436
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All-in-one solar-powered tower makes carbon-neutral kerosene in the field at pilot-scale

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The aviation sector is responsible for about 5% of global anthropogenic emissions causing climate change. That makes the fuel carbon neutral, especially if we use CO 2 captured directly from the air as an ingredient, hopefully in the not-too-distant future. —Aldo Steinfeld. Zoller et al. 2022.06.012.

Solar 446
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Berkeley researchers propose salted biomass as scalable, economical and stable carbon capture and storage solution

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Researchers from the University of California, Berkeley, are proposing burying salted biomass in a dry environment within an engineered biolandfill as a solution to sequester carbon that has been photosynthetically fixed by cultivated plants. A simplified version of the bio-landfill technology. It is essential to keep the biomass dry.

Carbon 259
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Photocatalytic optical fibers convert water into hydrogen

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Researchers at the University of Southampton have transformed optical fibers into photocatalytic microreactors that convert water into hydrogen fuel using solar energy. Alongside hydrogen generation from water, the multi-disciplinary research team is investigating photochemical conversion of carbon dioxide into synthetic fuel.

Water 371
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New porous coordination polymer captures CO2, converts it to useful organic materials

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A new material that can selectively capture CO 2 molecules and efficiently convert them into useful organic materials has been developed by researchers at Kyoto University, along with colleagues at the University of Tokyo and Jiangsu Normal University in China. —Wu et al. —Susumu Kitagawa, materials chemist at Kyoto University.

Polymer 255
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LLNL report lays out technology pathways for California to become carbon-neutral and then -negative by 2045; 3 pillars of negative emissions

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Lawrence Livermore National Laboratory (LLNL) scientists have identified a suite of technologies to help California to become carbon-neutral—and ultimately carbon-negative —by 2045. The key finding of this report is that carbon neutrality is achievable. —“Getting to Neutral”.

Carbon 269