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首页> 外文期刊>Chemical engineering journal >Modeling of ethane pyrolysis process: A study on effects of steam and carbon dioxide on ethylene and hydrogen productions
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Modeling of ethane pyrolysis process: A study on effects of steam and carbon dioxide on ethylene and hydrogen productions

机译:乙烷热解过程建模:蒸汽和二氧化碳对乙烯和氢气生产的影响研究

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摘要

In present work, ethylene and hydrogen production is investigated through thermal cracking of ethane in domestic petrochemical plant. In the thermal cracking process, a mixture of ethane and steam is introduced into radiant tubes located vertically in a furnace. The use of steam is mainly due to the partial removal of coke which has undesirable effects on the process. The coke deposition along the tubes causes high pressure drops and also reduction in production yield. In this study, the ethane thermal cracking process of this company is modeled and solved numerically. A comparison between model results and experimental data shows that the model can predict the process accurately. In addition, the effects of using carbon dioxide instead of steam are investigated on coke deposition. According to the results of two cases, the thermal cracking process in presence of CO2 is superior to the conventional process because of higher ethylene and hydrogen productions and less coke thickness. The simulation results reveal that the run length of the reactor in presence of CO2 becomes as twice as the one in presence of steam.
机译:在目前的工作中,通过对国内石化厂中的乙烷进行热裂解来研究乙烯和氢气的生产。在热裂解过程中,将乙烷和蒸汽的混合物引入垂直放置在炉子中的辐射管中。蒸汽的使用主要是由于部分除去了焦炭,这对工艺有不良影响。沿管的焦炭沉积会导致高压降,并且还会降低产量。在这项研究中,对该公司的乙烷热裂解过程进行了建模和数值求解。模型结果与实验数据的比较表明,该模型可以准确地预测过程。另外,研究了使用二氧化碳代替蒸汽对焦炭沉积的影响。根据这两种情况的结果,由于较高的乙烯和氢气产生量以及较小的焦炭厚度,因此在存在CO2的情况下进行热裂解工艺要优于常规工艺。模拟结果表明,在有二氧化碳的情况下反应器的运行长度是在有蒸气的情况下的运行长度的两倍。

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