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首页> 外文期刊>Journal of Molecular Liquids >Experimental and simulation investigation on separation of binary hydrocarbon mixture by thermogravitational column
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Experimental and simulation investigation on separation of binary hydrocarbon mixture by thermogravitational column

机译:热再生柱分离二元烃混合物的实验和仿真研究

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In this article, experimental and numerical investigations are performed to study a thermogravitational column (TGC) for the separation of toluene/n-heptane mixture. This research has tried to determine the main significant parameters and their effects on the performance of the process. In experimental examinations, the influence of the main parameters such as feed flow rate, cut and temperature gradient on the performance of the TGC efficiency is studied. In addition, computational fluid dynamics is used to simulate the separation process in this review. The response surface methodology (RSM) was also applied to minimize the number of runs and investigate the optimum operating conditions. The numerical results showed that the predicted data were in good agreement with experimental data, and the average error between experimental and simulation data was around 20%. It was found that the separation factor increased by 129% when the feed rate is changed from 4 to 0.8 ml/min ate theta = 0.5 and Delta T = 40 K. As the temperature gradient increased from 40 K to 60 K, the mass fraction of n-heptane also increases from 6.5% and 11.6%. The optimum conditions were achieved at the feed flow rate 0.81 ml/min, cut 021 and temperature gradient 58.04 K with separation factor 1.17. (C) 2018 Elsevier B.V. All rights reserved.
机译:在本文中,进行实验性和数值研究以研究热催化柱(TGC)以分离甲苯/正庚烷混合物。该研究试图确定主要的重要参数及其对过程性能的影响。在实验检查中,研究了诸如进料流速,切割和温度梯度的主要参数对TGC效率的性能的影响。此外,计算流体动力学用于模拟本综述中的分离过程。还应用响应面方法(RSM)以最小化运行的数量并研究最佳的操作条件。数值结果表明,预测数据与实验数据很好,实验和仿真数据之间的平均误差约为20%。发现分离因子在进料速率从4-0.8ml / min的θ= 0.5和delta t = 40k变化时增加129%。随着温度梯度从40k增加到60k,质量分数增加正庚烷也从6.5%和11.6%增加。在进料流速0.81ml / min,切割021和温度梯度58.04k的进料流速下实现了最佳条件,分离因子1.17。 (c)2018年elestvier b.v.保留所有权利。

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