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

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Meanwhile, wet waste feedstocks, such as animal manure and fats, oils, and greases (FOG), represent another important category of resources that could be utilized to produce MCCI bioblendstocks due to its abundant availability. An open-access paper on their results is published in the journal ACS Sustainable Chemistry & Engineering.

Waste 434
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Audi partnering with Climeworks on CO2 direct air capture and storage

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The Swiss company Climeworks is building the world’s largest direct air capture (DAC) and storage facility for converting atmospheric CO 2 to rock in Iceland. C using waste heat from a nearby geothermal plant to release the CO 2 molecules. Furthermore, the rock in Iceland has the ideal composition for storing large amounts of CO 2.

Audi 446
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Cambridge researchers develop standalone device that makes formic acid from sunlight, CO2 and water

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Researchers at the University of Cambridge, with colleagues at the University of Tokyo, have developed a standalone device that converts sunlight, carbon dioxide and water into formic acid, a carbon-neutral fuel, without requiring any additional components or electricity. —senior author Professor Erwin Reisner. —Dr Wang.

Water 418
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Shell to build one of Europe’s biggest biofuels facilities for SAF and renewable diesel; 820,000 tonnes/year

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Once built, the facility will be among the largest in Europe to produce sustainable aviation fuel (SAF) and renewable diesel made from waste. Hydrogen and high-pressure steam are then used in the production process to convert oils into fuels (hydroprocessing), helping to reduce the fuel’s carbon intensity.

Renewable 317
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Dearman-led consortium awarded $3.1M to develop waste-heat-recovery system using liquid air engine

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The Dearman project is to deliver a production-feasible waste-heat recovery system for urban commercial vehicles, which offers life-cycle CO 2 savings of up to 40%; fuel savings of 25%, with the potential of up to almost 50%; and potential payback in less than three years. Earlier post. ). The IDP10-funded project will cost £3.25

Waste 246
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Steelmaker ArcelorMittal Europe targets 30% cut in carbon emissions by 30% by 2030

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Fossil fuel carbon capture and storage, where the current method of steel production is maintained but the carbon is then captured and stored or re-used rather than emitted into the atmosphere. Once completed, it will capture ~15% of available waste gases and convert those into 80 million liters of ethanol annually.

Carbon 195
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EU investing €1.8B in 17 large-scale clean tech projects

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The selected projects cover a wide range of sectors contributing to the EU's decarbonization efforts such as production, distribution and use of green hydrogen, waste-to-hydrogen, offshore wind, manufacturing of photovoltaic (PV) modules, battery storage and recycling, carbon capture and storage, sustainable aviation fuels, and advanced biofuels.

Clean 334