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电逆变换:工业规模下可持续的一氧化碳增值利用

Electrical Reverse Shift: Sustainable CO Valorization for Industrial Scale.

作者信息

Thor Wismann Sebastian, Larsen Kasper-Emil, Mølgaard Mortensen Peter

机构信息

Haldor Topsoe A/S, 2800, Kgs. Lyngby, Denmark.

出版信息

Angew Chem Int Ed Engl. 2022 Feb 14;61(8):e202109696. doi: 10.1002/anie.202109696. Epub 2022 Jan 11.

Abstract

Utilization of CO is a requirement for a sustainable production of carbon-based chemicals. The reverse water-gas-shift (RWGS) can valorize CO by reaction with hydrogen to produce a synthesis gas compatible with existing industrial infrastructure. Fully electrified reverse water-gas-shift (eRWGS™) was achieved using integrated ohmic heating and a nickel-type catalyst at industrially relevant conditions. Using a feed of H  : CO in a ratio of 2.25 at 10 barg, utilizing high temperature operation at 1050 °C allowed for production of a synthesis gas with a H /CO ratio of 2.0 and no detectable methane, ideal for production of sustainable fuel by e.g. the Fischer-Tropsch synthesis. Facilitating RWGS through CH as intermediate was found superior to the selective RWGS route, due to higher activity and suppression of carbon formation. The eRWGS™ catalyst is found to provide a preferential emissions-free route for production of synthesis gas for any relevant H /CO ratio, enabling production of sustainable carbon-based chemicals from CO and renewable electricity with high hydrogen and carbon efficiency.

摘要

一氧化碳的利用是可持续生产碳基化学品的必要条件。逆水煤气变换(RWGS)反应可通过一氧化碳与氢气反应,生成与现有工业基础设施兼容的合成气,从而实现一氧化碳的增值利用。在工业相关条件下,利用集成式欧姆加热和镍基催化剂实现了完全电气化的逆水煤气变换(eRWGS™)。在10巴表压下,使用氢气与一氧化碳比例为2.25的进料,在1050°C的高温下运行,可生产出氢气与一氧化碳比例为2.0且无甲烷检出的合成气,这对于通过费托合成等方法生产可持续燃料而言是理想的。研究发现,通过以甲烷为中间体促进逆水煤气变换反应优于选择性逆水煤气变换路线,因为前者具有更高的活性且能抑制积碳。研究发现,对于任何相关的氢气与一氧化碳比例,eRWGS™催化剂都能为合成气生产提供一条优先的无排放路线,从而能够以高氢效率和碳效率,从一氧化碳和可再生电力生产可持续的碳基化学品。

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