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首页> 外文期刊>Korean Journal of Chemical Engineering >Experimental study and optimization of heavy liquid hydrocarbon thermal cracking to light olefins by response surface methodology
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Experimental study and optimization of heavy liquid hydrocarbon thermal cracking to light olefins by response surface methodology

机译:响应面法优化重质液态烃热裂解制轻质烯烃的实验研究和优化

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摘要

Response surface methodology coupled with central composite design (CCD) was used to investigate the effects of operating variables, namely, coil outlet temperature (COT), flow rate and steam ratio, on the yield of light olefins (ethylene and propylene) in thermal cracking of heavy liquid hydrocarbon. From the CCD studies the effects of COT and flow rate were concluded to be the key factors influencing the yield of light olefins. Based on this experimental design, two empirical models, representing the dependence of ethylene and propylene yields on operating conditions, were developed. The single maximum response of ethylene and propylene yields and simultaneous maximization of both responses have also been obtained at the corresponding optimal independent variables. The results of the multi-response optimization could be used to find the suitable operating conditions.
机译:响应面方法与中心复合设计(CCD)一起用于研究操作变量(即盘管出口温度(COT),流量和蒸汽比)对热裂解中轻质烯烃(乙烯和丙烯)收率的影响重液态烃。根据CCD研究,COT和流速的影响被认为是影响轻质烯烃收率的关键因素。基于该实验设计,开发了两个经验模型,分别表示乙烯和丙烯收率对操作条件的依赖性。在相应的最佳独立变量下,也获得了乙烯和丙烯收率的单个最大响应以及两个响应的同时最大化。多响应优化的结果可用于找到合适的操作条件。

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