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Development and industrial application of catalyzer for low-temperature hydrogenation hydrolysis of Claus tail gas

机译:克劳斯尾气低温加氢水解催化剂的开发及工业应用

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With the implementation of more strict national environmental protection laws, energy conservation, emission reduction and clean production will present higher requirements for sulfur recovery tail gas processing techniques and catalyzers. As for Claus tail gas, conventional hydrogenation catalyzers are gradually being replaced by low-temperature hydrogenation catalyzers. This paper concentrates on the development of technologies for low-temperature hydrogenation hydrolysis catalyzers, preparation of such catalyzers and their industrial application. In view of the specific features of SO2 hydrogenation and organic sulfur hydrolysis during low-temperature hydrogenation, a new technical process involving joint application of hydrogenation catalyzers and hydrolysis catalyzers was proposed. In addition, low-temperature hydrogenation catalyzers and low-temperature hydrolysis catalyzers suitable for low-temperature conditions were developed. Joint application of these two kinds of catalyzers may reduce the inlet temperatures in the conventional hydrogenation reactors from 280?°C to 220?°C, at the same time, hydrogenation conversion rates of SO2 can be enhanced to over 99%. To further accelerate the hydrolysis rate of organic sulfur, the catalyzers for hydrolysis of low-temperature organic sulfur were developed. In lab tests, the volume ratio of the total sulfur content in tail gas can be as low as 131?×?10?6 when these two kinds of catalyzers were used in a proportion of 5:5 in volumes. Industrial application of these catalyzers was implemented in 17 sulfur recovery tail gas processing facilities of 15 companies. As a result, Sinopec Jinling Petrochemical Company had outstanding application performances with a tail gas discharging rate lower than 77.9?mg/m3 and a total sulfur recovery of 99.97%.
机译:随着更严格的国家环境保护法的实施,节能,减排和清洁生产将对硫磺回收尾气处理技术和催化剂提出更高的要求。至于克劳斯尾气,常规的氢化催化剂逐渐被低温氢化催化剂所取代。本文着重研究低温加氢水解催化剂的技术发展,这种催化剂的制备及其工业应用。针对低温加氢过程中SO2加氢和有机硫水解的特点,提出了一种加氢催化剂与水解催化剂联合应用的新工艺。另外,开发了适用于低温条件的低温氢化催化剂和低温水解催化剂。两种催化剂的联合应用可以将常规加氢反应器的入口温度从280°C降至220°C,同时,SO2的氢化转化率可以提高到99%以上。为了进一步加速有机硫的水解速度,开发了用于低温有机硫的水解的催化剂。在实验室测试中,当两种催化剂的体积比为5:5时,尾气中总硫含量的体积比可以低至131××10×10 6。这些催化剂的工业应用已在15家公司的17个硫磺回收尾气处理设施中进行。结果,中石化金陵石化公司具有出色的应用性能,尾气排放率低于77.9?mg / m3,总硫回收率为99.97%。

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