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Researchers develop highly efficient organometal halide perovskite photoelectrodes for water splitting

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Photoelectrochemical (PEC) water splitting based on solar energy is one promising approach for the production of green hydrogen. However, its widespread application is limited by a lack of efficient photoanodes for catalyzing the rate-limiting oxygen evolution reaction (OER), an important reaction in PEC water splitting. 202300951

Water 369
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BMW i Ventures invests in Prometheus Fuels; CO2 air-capture and conversion to carbon-neutral gasoline

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The average car stays on the road for over eight years; meaning that even if the whole world switched to buying 100% electric cars tomorrow, it would still take almost a decade for today’s internal combustion engines to be off the road. The separation of ethanol and other fuel products from water. to C 2 fuel products such as ethanol.

Gasoline 321
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Kobe team develops method for highly efficient hydrogen production using sunlight, water and hematite

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A research group led by Associate Professor Takashi Tachikawa of Kobe University’s Molecular Photoscience Research Center has developed a strategy that greatly increases the amount of hydrogen produced from sunlight and water using hematite (??Fe A paper on their work appears in the journal Angewandte Chemie International Edition.

Water 334
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Researchers propose testing standards for particulate photocatalysts in solar fuel production

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In this regard, photocatalytic water splitting has attracted significant interest as a cost-effective means to convert sustainable solar energy into valuable chemicals. Photocatalytic water splitting has attracted great interest as a means of cost-effective conversion of sustainable solar energy to valuable chemicals.

Solar 418
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Researchers develop efficient single-atom Ni catalyst for conversion of CO2 to CO

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An international research team has developed a new single-atom electrocatalyst that efficiently converts CO 2 to carbon monoxide (CO). The anion membrane electrode assembly prevented the direct contact between the catalyst and liquid water, maximally suppressing the H 2 evolution side reaction and facilitating the CO 2 mass transport.

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ICCT study finds hydrotreating an inexpensive approach to remove naphthalenes from petroleum jet fuel for contrail abatement

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prepared for the International Council on Clean Transportation (ICCT), has found that hydrotreating is an inexpensive approach to produce near-zero naphthalenes petroleum jet fuel (PJF) for contrail abatement. L) to hydrotreat fossil jet fuel at the conversion refineries that produce the bulk of aviation jet fuel worldwide.

Fuel 170
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Elemental boron effective photothermocatalyst for the conversion of CO2 for fuels and chemicals

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Researchers in Japan and China developed an efficient method for CO 2 reduction over elemental boron catalysts in the presence of only water and light irradiation through a photothermocatalytic process. At this temperature it reacts with water, forming hydrogen and boron oxides in situ. —Jinhua Ye.