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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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T&E: Rising use of private jets sends CO2 emissions soaring

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finds that private jets are 10 times more carbon-intensive than airliners on average, and 50 times more polluting than trains in terms of CO 2 emitted per passenger-km. billion, could be part of the solution by paying for the development of greener technology that can help accelerate innovation and clean flying for everyone.

Emissions 418
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Study finds limiting warming to 2 °C would require at least a $200/t carbon tax globally

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Lloyd Distinguished Service Professor in Economics, and José-Luis Cruz of Princeton University assesses the local social cost of carbon (LSCC) and how that cost aligns with the carbon reduction pledges countries made under the Paris Agreement. The price of carbon should then be set at this price, everywhere.

Tax 397
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RPI researchers to develop novel porous material for air capture of CO2

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Yu and his team will take a unique approach that involves loading amine molecules into a porous material, such as carbon or silica, through which CO 2 can pass and get trapped. In addition to reducing carbon emissions, Yu believes this technology has the potential to generate clean energy in remote places or after natural disasters.

CO2 305
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US Steel and CarbonFree sign MoU to capture CO2 at Gary Works

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If a definitive agreement is reached, the project is expected to capture and mineralize up to 50,000 metric tons of CO 2 per year, the equivalent to carbon emissions from nearly 11,000 passenger cars. The parties may also consider collaborating on more carbon capture, utilization and storage projects in the future.

CO2 368
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New highly efficient catalyst for photoelectrochemical CO2 reduction toward methane

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The researchers think that it could be recycling smokestack carbon dioxide into clean-burning fuel within 5-10 years. Turning carbon dioxide into methane is a very difficult process. Turning carbon dioxide into methane is a very difficult process. Likewise, H 2 O must be broken down to attach the hydrogen to the carbon.

CO2 349
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GTI quantifies opportunity to produce low-carbon renewable natural gas (RNG) from wood wastes

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GTI has released a site-specific engineering design titled “ Low-Carbon Renewable Natural Gas (RNG) from Wood Wastes ”. The RNG product with very low carbon intensity could be used for carbon emission reductions in the transportation, industrial, commercial, and residential energy sectors. The Gasification-powered RNG Process.

Waste 281