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Multi-criteria design optimization study of solvent extraction in mixer-settler units

机译:混合沉降器装置中溶剂萃取的多标准设计优化研究

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摘要

Solvent extraction is considered as a multi-criteria optimization problem, since several chemical species with similar extraction kinetic properties are frequently present in the aqueous phase and the selective extraction is not practicable. This optimization, applied to mixer-settler units, considers the best parameters and operating conditions, as well as the best structure or process flow-sheet. Global process optimization is performed for a specific flow-sheet and a comparison of Pareto curves for different flow-sheets is made. The positive weight sum approach linked to the sequential quadratic programming method is used to obtain the Pareto set. In all investigated structures, recovery increases with hold-up, residence time and agitation speed, while the purity has an opposite behaviour. For the same treatment capacity, counter-current arrangements are shown to promote recovery without significant impairment in purity. Recycling the aqueous phase is shown to be irrelevant, but organic recycling with as many stages as economically feasible clearly improves the design criteria and reduces the most efficient organic flow-rate.
机译:溶剂萃取被认为是一个多标准的优化问题,因为在水相中经常存在几种具有相似萃取动力学特性的化学物质,而选择性萃取并不可行。应用于混合沉降器的这种优化考虑了最佳的参数和操作条件,以及最佳的结构或工艺流程。针对特定流程图执行全局过程优化,并比较不同流程图的帕累托曲线。与顺序二次规划方法链接的正权重和方法用于获得帕累托集。在所有研究的结构中,回收率随滞留率,停留时间和搅拌速度的增加而增加,而纯度却相反。对于相同的处理能力,逆流装置显示出可以促进恢复而纯度没有明显降低。循环水相已被证明是无关紧要的,但是在经济上可行的阶段进行有机循环显然可以改善设计标准,并降低最有效的有机流速。

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