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Effects of H2O in the Feed of Sulfur Recovery Unit on Sulfur Production and Aromatics Emission from Claus Furnace

机译:水的影响饲料的硫磺回收装置在硫和芳烃生产排放克劳斯炉

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摘要

An increase in the exploitation of sour reservoirs with a high content of acid gas (mainly H2S and CO2) and the enforcement of stringent emission standards have triggered demand for high sulfur recovery efficiency in sulfur recovery units (SRUs). The high amount of H2O that is present in feed gases to the SRU can act as a diluent in the thermal section of the SRU and can also pose operational difficulties and have substantial chemical effect on the equilibrium-limited reactions of sulfur production and the deStruction of impurities. This paper explores the role of H2O (0-12% in the furnace feed). in sulfur recovery and in the fate of undesirable aromatics, COS, and CS2 in the thermal section using a detailed reaction mechanism and industrial SRU operating parameters. An intreasing H2O concentration in the feed decreased the sulfur recovery efficiency in the thermal section significantly, as the equilibrium conversion of H2S to sulfur was affected. The higher H2O concentrations increased the concentrations of H2S H-2, and SO2 at the furnace exit because of the production of OH radicals from enhanced chemical decomposition of H2O by active radicals such as SH, O, and H. It also increased the quantity of unwanted aromatics exiting the Claus furnace; but COS and CS2 production, declined because of the fall in the decomposition of CO2 and feed hydrocarbons as the furnace temperature decreased. This study provides guidelines to increase sulfur production in the thermal section and reduce the number of catalytic stages to decrease SRU operational cost.
机译:增加酸水库的开发与高酸性气体(主要是硫化氢和CO2)和执行严格的排放标准引发了对高硫的需求在硫磺回收装置回收效率(蒸发器)。饲料气体中的蒸发器可以作为稀释剂蒸发器的热节,也可以构成操作困难和实质性的equilibrium-limited化学效应生产和硫的反应破坏的杂质。水的作用(0 - 12%炉提要)。硫回收和不良的命运芳烃、COS和热节CS2使用详细的反应机理和工业蒸发器的操作参数。intreasing H2O浓度饲料硫回收效率的下降热节明显,平衡转换的硫化氢硫的影响。高水浓度的增加浓度的硫化氢,氢、二氧化硫炉退出,因为哦自由基的生产从增强化学分解水的活性自由基,如SH、O和h .它也增加不必要的芳烃的量退出克劳斯炉;生产,拒绝因为下跌二氧化碳和饲料碳氢化合物的分解炉温度降低。提高硫的生产提供了指导方针在热部分和减少的数量催化降低蒸发器的操作阶段成本。

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