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Review of Experimental Characterization of Active Sites and Determination of Molecular Mechanisms of Adsorption, Desorption and Regeneration of the Deep and Ultradeep Desulfurization Sorbents for Liquid Fuels

机译:液体燃料深,超深脱硫吸收剂活性部位的实验表征及吸附,解吸和再生的分子机理研究综述

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摘要

This review analyzes the recent literature on the direct experimental determination of molecular and atomic-level nature of adsorption sites, mechanisms of adsorption under the mild (close to ambient) conditions, desorption of sulfur-aromatic compounds, and surface chemical reactions upon regeneration of the “spent” sorbents for desulfurization of the liquid fuels. Supported noble, transition metals and metal oxides, binary, and ternary metal oxides, activated carbons, zeolites, supported polymers, pervaporation membranes and other advanced adsorptive desulfurization materials are discussed. The recent trends in developing the deep and ultradeep desulfurization sorbents are discussed, and challenges of the direct determination of molecular mechanisms are described.
机译:这篇综述分析了有关直接实验确定吸附位点的分子和原子级性质,在温和(接近环境)条件下的吸附机理,硫-芳族化合物的解吸以及再生后的表面化学反应的最新文献。用于液体燃料脱硫的“用过的”吸附剂。讨论了负载型贵金属,过渡金属和金属氧化物,二元和三元金属氧化物,活性炭,沸石,负载型聚合物,全蒸发膜和其他高级吸附脱硫材料。讨论了开发深和超深脱硫吸附剂的最新趋势,并描述了直接确定分子机理的挑战。

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