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Evidences for the Formation of Aromatic Hydrocarbons in Claus Process from Contaminants in H2S Feed Gas

机译:H2S饲料气体污染物中污染物中芳香烃形成的证据

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Claus process is used in oil and gas industry to produce sulfur from H2S. The presence of aromatic contaminants in its feed is believed to have detrimental effect on the process, as they are able to survive the high-temperature environment of Claus furnace and reach the catalytic units, where theyform soot, clog catalyst pores, and deactivate them. Along with aromatics, small hydrocarbons (CH4, C2H6, and C3H8) are also present in feed that are capable of forming polycyclic aromatic hydrocarbons (PAHs) and soot in anoxic, high-temperature environment of the furnace. In this work, a detailed reaction mechanism with 258 species and 1695 reactions for Claus feed containing H2S, aliphatic andaromatic hydrocarbons, CO, CO2 and H2O is developed. The mechanism includes reactions for PAH formation (up to coronene) from hydrocarbons, H2S oxidation, and the interaction of hydrocarbonswith S-containing species. The mechanism is validated using experimental species and aromaticsprofiles. Through furnace simulations, the fate of aromatic contaminants and the amount of PAHs formed from hydrocarbon contaminants are determined.
机译:克劳斯工艺用于石油和天然气工业,从H2S生产硫。据信芳族污染物的存在对该方法具有不利影响,因为它们能够在克劳斯炉的高温环境中存活并到达催化单元,其中它们烟灰,螺纹催化剂孔隙,并使它们失活。随着芳烃,小碳氢化合物(CH4,C2H6和C3H8)也存在能够在炉子的缺氧,高温环境中形成多环芳烃(PAH)和烟灰。在这项工作中,开发了一种详细的反应机理,具有258种和1695个含有H 2 S,脂族芳族烃,CO,CO 2和H 2 O的Claus Feed的反应。该机制包括来自烃,H 2 S氧化的PAH形成(上冠烯)的反应,以及含含含含烃物种的相互作用。使用实验物种和芳香族化合物进行验证该机制。通过炉模拟,确定芳香污染物的命运和由烃污染物形成的PAH的量。

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