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MgAl混合氧化物在高温CO吸附中的基本性质

Basic Properties of MgAl-Mixed Oxides in CO Adsorption at High Temperature.

作者信息

Chaillot Dylan, Folliard Vincent, Miehé-Brendlé Jocelyne, Auroux Aline, Dzene Liva, Bennici Simona

机构信息

Institut de Sciences des Matériaux de Mulhouse, CNRS, Université de Haute-Alsace, Université de Strasbourg, 15 Rue Jean Starcky, 68057 Mulhouse CEDEX, France.

Institut de Recherches sur la Catalyse et l'Environnement de Lyon, Université Lyon 1, CNRS, UMR 5256, IRCELYON, 2 Avenue Albert Einstein, F-69626 Villeurbanne, France.

出版信息

Materials (Basel). 2023 Aug 19;16(16):5698. doi: 10.3390/ma16165698.

Abstract

The increase of consciousness towards global warming and the need to reduce greenhouse gas emissions lead to the necessity of finding alternative applications based on easy-to-use materials in order to control and reduce global CO emissions. Layered Double Hydroxides (LDHs) and LDH-derived materials are potentially good adsorbents for CO, thanks to their low cost, easy synthesis, high sorption capacity, and surface basicity. They have been intensively studied in CO capture at high temperature, presenting variable sorption capacities for MgAl LDHs with the same composition, but prepared under different synthesis conditions. The ambient temperature coprecipitation synthesis method is an attractive one-step procedure to synthesize LDHs under mild conditions, with low energy consumption and short synthesis time. The present study is based on the synthesis and characterization of hydrotalcites by a mild-conditions coprecipitation process and the production of derived mixed oxides to be used as CO adsorbents. A critical comparison to similar materials is reported. Moreover, the effect of the surface basicity of the derived mixed oxides (measured by adsorption calorimetry) and the CO sorption capacity are discussed, showing a linear correlation between the amount of weak and very strong basic sites and the CO adsorption behavior.

摘要

对全球变暖的意识增强以及减少温室气体排放的需求,导致有必要寻找基于易于使用的材料的替代应用,以控制和减少全球一氧化碳排放。层状双氢氧化物(LDHs)及其衍生材料因其成本低、合成简便、吸附容量高和表面碱性等特点,有可能成为一氧化碳的良好吸附剂。它们在高温下的一氧化碳捕获方面已得到深入研究,对于相同组成但在不同合成条件下制备的镁铝LDHs,其吸附容量有所不同。室温共沉淀合成法是一种在温和条件下合成LDHs的有吸引力的一步法,能耗低且合成时间短。本研究基于通过温和条件共沉淀法合成水滑石及其衍生混合氧化物用作一氧化碳吸附剂的合成与表征。报告了与类似材料的关键比较。此外,还讨论了衍生混合氧化物的表面碱性(通过吸附量热法测量)和一氧化碳吸附容量的影响,结果表明弱碱性和极强碱性位点的数量与一氧化碳吸附行为之间存在线性关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8e0/10456579/dcae33d9de5a/materials-16-05698-g001.jpg

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