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首页> 外文期刊>Journal of Cleaner Production >Design and optimization of hydrodesulfurization process for liquefied petroleum gases
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Design and optimization of hydrodesulfurization process for liquefied petroleum gases

机译:液化石油气体加氢硫化过程的设计与优化

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摘要

This study, for the first time, carries out the development and optimization of hydrodesulfurization as a promising alternative, for cleaner production of liquefied petroleum gases. Through this process, all the sulfur impurities are hydrogenated into hydrogen sulfide, which is a manageable compound in gas plants as it can subsequently be converted to elemental sulfur. The investigated feedstock with total throughput of 8 x 10(4) kg h(-1) and total sulfur of 3850 ppmw, is from third refinery of South Pars Gas Complex in Iran. For the process optimization, the costs of energy and hydrogen are minimized for sulfur reduction to less than 1 ppmw. The optimal inlet temperature to the reactor is found to be 280 degrees C and the stripper column for the final removal of hydrogen sulfide requires 50 theoretical trays. The costs of energy are 1.5% of treated product price and the hydrogen demand is 75 kg h(-1). For compensation, there would be new incomes from selling ultra-clean product as well as 3.5% over-production of elemental sulfur. Consequently, the results demonstrate the merits of hydrodesulfurization, not only for attaining a cleaner product with ultra-low sulfur content but also for stopping all the ecological drawbacks, including sulfur dioxide emission and water contaminations, associated with the current processes. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本研究首次执行加氢脱硫作为有前途的替代方案的开发和优化,用于液化石油气的清洁生产。通过该方法,将所有硫杂质氢化成硫化氢,其是气体植物中可管理的化合物,随后可以转化为元素硫。含有8×10(4)千克(-1)的总通量的研究原料和3850 ppmW的总硫,是伊朗南方射击气综合体的第三炼油厂。对于该过程优化,能量和氢的成本最小化,硫的降低至小于1ppmW。对反应器的最佳入口温度被发现为280℃,并且最终去除硫化氢的汽提塔柱需要50个理论托盘。能源的成本为1.5%的经处理产品价格,氢需求为75千克(-1)。为了赔偿,将有新的收入销售超清洁产品,以及3.5%的元素硫生产。因此,结果证明了加氢脱硫的优点,不仅用于获得具有超低硫含量的清洁剂,而且用于停止所有生态缺点,包括与当前过程相关的二氧化硫排放和水污染。 (c)2019 Elsevier Ltd.保留所有权利。

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