Influence of Regeneration Condition on Physical and Chemical Properties of High Temperature Coal Gas Desulfurization Sorbent

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Physical and chemical properties are closely related to desulfurization, regeneration performance and cycle stability for high temperature coal gas desulfurizer. This review focuses on influence rules of changes in regeneration atmosphere, temperature and space velocity on physical and chemical properties. A large number of experimental researches have shown that regeneration atmosphere, regeneration temperature, space velocity have an important influence on mechanical strength, active component and texture change for high temperature coal gas desulfurizer. The different regeneration atmosphere obviously results in different active ingredients for desulfurization sorbent after regeneration, and regeneration at a higher regeneration temperature will easily cause desulfurizer sintering, as well as small regeneration space velocity can lead to the formation of sulfates. In order to make the circulatory system of sulfidation-regeneration-sulfidation need to the requirements in industrial application, the further research of influence rules of regeneration condition on physical and chemical properties will be crucial.

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658-661

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February 2014

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© 2014 Trans Tech Publications Ltd. All Rights Reserved

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[1] R. Gupta, S. K. Gangwal, S. C. Jain: Energy & Fuels Vol. 6 (1992), P. 21.

Google Scholar

[2] J.D. White, F.R. Groves Jr., D. P. Harrison: Catalysis today Vol. 4(1998), P. 47.

Google Scholar

[3] Hongyan Xu, Chunhu Li, Meisheng Liang, and et al: Environmental Protection of Chemical Vol. 24(2004), P. 165(in Chinese).

Google Scholar

[4] J.W. Wridzer, Bakker, Kapteijn Freek, etc: Chemical Engineering Journal Vol. 96(2003), P. 223.

Google Scholar

[5] Genoveva Buelna, Y.S. Lin: Separation and Purification Technology Vol. 39(2004), P. 167.

Google Scholar

[6] Jin Song, Huiling Fan: Petrochemical Technology Vol. 39(2010), P. 507(in Chinese).

Google Scholar

[7] L. Alonso and J. M. Palacios: Chem. Mater. Vol. 14(2002), P. 225.

Google Scholar

[8] Ju Wang, Bin Liang, Richard Parnas: Fuel Vol. 107(2013), P. 539.

Google Scholar

[9] Jinchang Zhang, Diyong Wu: Gas & Heat Vol. 21(2001), P. 7(in Chinese).

Google Scholar