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Oxford team directly converts CO2 to jet fuel using iron-based catalysts

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The catalyst shows a carbon dioxide conversion through hydrogenation to hydrocarbons in the aviation jet fuel range of 38.2%, with a yield of 17.2%, and a selectivity of 47.8%, and with an attendant low carbon monoxide (5.6%) and methane selectivity (10.4%). In brief, the Fe–Mn–K catalyst shows a CO 2 conversion of 38.2%

Convert 505
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Columbia University engineers make breakthrough in understanding electroreduction of CO2 for conversion to electrofuels

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Recent research in electrocatalytic CO 2 conversion points the way to using CO 2 as a feedstock and renewable electricity as an energy supply for the synthesis of different types of fuel and value-added chemicals such as ethylene, ethanol, and propane. Their paper is published in Proceedings of the National Academy of Sciences (PNAS).

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Photocatalytic reduction of CO2 to formic acid using an alumina-supported, iron-based compound; 80-90% selectivity

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The rising CO2 levels in our atmosphere and their contribution to global warming is now common news. As researchers experiment with different ways to battle this problem, one efficient solution has emerged—converting excess atmospheric CO2 into energy-rich chemicals. Such a system consists of a light-absorbing substrate (i.e.,

CO2 195
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EPFL team develops on-board system to capture CO2 from trucks; reducing emissions by 90%

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First, the vehicle’s flue gases in the exhaust pipe are cooled down and the water is separated from the gases. CO 2 is isolated from the other gases (nitrogen and oxygen) with a temperature swing adsorption (TSA) system, using metal-organic frameworks (MOFs) adsorbent, which are specially designed to absorb CO 2.

Emissions 332
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New one-pot conversion of CO2 to polycarbonate copolymers

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Researchers at Texas A&M have developed a two-step, one-pot conversion of CO 2 and epoxides (highly reactive compounds with a three-membered ring made of two carbon atoms and one oxygen atom) to polycarbonate block copolymers that contain both water-soluble and hydrophobic regions and can aggregate into nanoparticles or micelles.

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Molten carbonate electrolysis can produce a range of carbon nanomaterials, including graphene, from CO2 at high yield

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The utilization of the full spectrum of sunlight in STEP results in a higher solar energy efficiency than other solar conversion processes. organic electrosynthesis of benzoic acid from benzene without over-oxidizing into CO 2. organic electrosynthesis of benzoic acid from benzene without over-oxidizing into CO 2. Source: Prof.

Carbon 376
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RWE Power/BRAIN expanding work on waste gas CO2 microbial conversion project

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A joint research project by RWE Power and biotechnology company BRAIN AG has discovered specialist micro-organisms that directly feed on CO 2 -containing flue gases from lignite-fired power stations and that can grow at temperatures of 60 °C (140 °F). They examined more than 3,000 micro-organisms. More than €2 million (US$2.54

Waste 210