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Modification and optimization of benzene alkylation process for production of ethylbenzene

机译:苯烷基化生产乙苯的工艺改造与优化

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摘要

In this paper, an industrial ethylbenzene production unit has been simulated and the results are compared against five-day experimental data. According to prevailing unit condition, i.e. recycled ratio of benzene, benzene selectivity, and energy consumption, the unit is not working under its optimum conditions for minimum cost of ethylbenzene production. In the current design, high amount of benzene recycle (6:1) causes to have an additional cost due to fractionation of ethylbenzene from benzene. A new approach is proposed to modify the benzene alkylation process and reduce the unit's energy consumption, in the newly designed scheme, two double-bed alkylation reactors converted into four single-bed reactors. The amount of injected ethylene, alkylation reactors temperature, and recycled stream are regulated as adjustable parameters for the optimization of the process. In the modified process, the reflux ratio reduced to 1.87 and the benzene selectivity increased. The optimized process shows a considerable decrease in the unit's energy consumption in compare to the current process. Also, the mass fraction of ethylbenzene would reach to 99.12% of purity before entering to the transalkylation reactor for further purification. Therefore, if the presented purity is acceptable for the final application, the transalkylation reactor could be eliminated from the new design.
机译:本文模拟了工业乙苯生产装置,并将结果与​​五天的实验数据进行了比较。根据主要的单元条件,即苯的循环利用率,苯的选择性和能耗,该单元无法在其最佳条件下工作,以降低乙苯的生产成本。在当前设计中,由于乙苯从苯中分馏,大量的苯循环(6:1)会导致成本增加。在新设计的方案中,提出了一种新方法来改进苯烷基化工艺并降低装置的能耗,将两个双床烷基化反应器转换为四个单床反应器。乙烯的注入量,烷基化反应器温度和循环料流作为可调节参数进行调节,以优化工艺。在改进的方法中,回流比降低至1.87,苯选择性提高。与当前流程相比,优化的流程显示出设备能耗的大幅降低。同样,在进入烷基转移反应器进行进一步纯化之前,乙苯的质量分数将达到纯度的99.12%。因此,如果给出的纯度对于最终应用是可接受的,则可以从新设计中取消烷基转移反应器。

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