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作 者:宋二伟 张耀昌 王二强 SONG Er-wei;ZHANG Yao-chang;WANG Er-qiang(School of Chemistry and Chemical Engineering,University of Chinese Academy of Sciences,Beijing 100049,China;Luoyang R & D Center of Technology,Sinopec Engineering(Group)Co.Ltd,Luoyang 471003,Henan,China)
机构地区:[1]中国科学院大学化学与化工学院,北京100049 [2]中石化炼化工程(集团)股份有限公司洛阳技术研发中心,河南洛阳471003
出 处:《华东理工大学学报(自然科学版)》2018年第4期543-547,共5页Journal of East China University of Science and Technology
基 金:国家自然科学基金面上资助项目(21376240)
摘 要:与传统精馏分离工艺相比,完全热耦合精馏技术(隔板塔)有更多的操作变量(即自由度),这些操作变量在实现优化设计的同时,也会引起多定态现象。采用单组分净物质流,针对隔板塔在三组分分离过程中存在多定态解的现象进行分析,通过等效热耦合四塔模型,研究其多解现象。在不同定态解的条件下,计算并分析隔板塔内部的净物质流。结果表明,多个定态解对应的塔内部组分净物质流之间存在差异。Compared with the conventional distillation process, the fully thermally coupled distillation technology such as dividing wall column has more manipulated variables or degrees of freedom and can be used to optimize design parameters. These redundant manipulated variables can also result in multiple steady states (MSS). MSS is a special phenomenon occurring in the dividing wall column. That is, there exist two or more pairs of internal coupled flow rate to satisfy the specified product purifications under the same conditions as the total feed flow rate, component fraction, thermodynamic condition and so on. In order to have a better understanding on MSS occurring in the dividing wall column, the analyses of the net material flows of one simple component and four-section model are given in this paper and the differences among these multiple steady state solutions for three-component distillation dividing wall column are analyzed. In the first section, based on the simulation software like Aspen Plus and mapping software like Origin, benzene-toluene-xylene system is used to explore the MSS phenomenon. In the second section, the differences of net material flow between multiple steady state solutions are analyzed. Results show that MSS phenomenon indeed exists, which matches the published literatures very well. Besides, the results of net material flow also illustrate that there exist obvious differences among these multiple steady state solutions, which can provide a useful method to choose the optimum values from these candidates. Hence, MSS is a common case existing among the fully thermally coupled distillation process and the analysis of net material flow can bring a useful way to explain and select the best values among these multiple candidate solutions.
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