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A Simulation of Claus Process Via Aspen Hysys for Sulfur Recovery

机译:通过Aspen Hysys模拟Claus回收硫的过程

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In refineries, due to the environmental pollutions, sulfur content in petroleum need be reduced. The incineration process is used for sulfur recovery system which is not friendly process to the environment and needs high temperature. This actual process exhaust high amount of SO2 from the incinerator stack to the environment. The Claus process is the best method to recover sulfur from acid gases that contain hydrogen sulfide. The particular reaction for sulfur removal from sour gas is hydrogen sulfide (H2S) sulfur dioxide (SO2) reformation (2H2S + O2 = S2 + 2H2O). The aim of this study is to get a simulation that is suitable for the characterization of sulfur recovery units. The experimental design for this study was collected from a petroleum refinery located in Iran. This experimental relation supports us to gather with definite consistency that is normally not available online for such process. Aspen HYSYS v8.8 software was used to simulate the Claus process by reactors and component splitters. The result shows the complete conversion of sour gas to product. The simulation protects the environmental impact by SO2 emission. This behavior can be reproduced by this HYSYS design very well. It was found that the BURNAIR feed composition and molar flow is the only factors which can affect the hydrogen sulfide conversion. The sulfur mole fraction increased only in the range of 0.94 to 0.98 by increasing N2 from 0.7 to 0.9.
机译:在炼油厂中,由于环境污染,需要减少石油中的硫含量。焚烧过程用于硫回收系统,该系统对环境不友好,需要高温。该实际过程将大量的SO2从焚化炉烟囱排放到环境中。克劳斯工艺是从含有硫化氢的酸性气体中回收硫的最佳方法。从酸性气体中脱硫的特定反应是硫化氢(H2S),二氧化硫(SO2)重整(2H2S + O2 = S2 + 2H2O)。这项研究的目的是获得适合于硫磺回收装置表征的模拟。这项研究的实验设计是从位于伊朗的一家石油精炼厂收集的。这种实验关系支持我们以一定的一致性进行收集,而该过程通常无法在线获得。使用Aspen HYSYS v8.8软件通过反应器和组分分离器模拟克劳斯过程。结果表明酸性气体完全转化为产物。模拟可保护SO2排放对环境的影响。此行为可以通过此HYSYS设计很好地重现。发现BURNAIR进料组成和摩尔流量是唯一可影响硫化氢转化的因素。通过使N 2从0.7增加到0.9,硫的摩尔分数仅在0.94到0.98的范围内增加。

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