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Design and control of a novel side-stream extractive distillation column for separating methanol-toluene binary azeotrope with intermediate boiling entrainer

机译:用中间沸腾夹带器将甲醇 - 甲苯二元共沸物分离的新型侧流萃取蒸馏塔的设计与控制

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It is innovative and important to perform complex binary azeotrope separation via single distillation column. In the article, design and control of a novel and simple side-stream extractive distillation (SSED) column with extraction and solvent recovery function is investigated for the separation of methanol and toluene binary azeotrope with intermediate boiling triethylamine (Et3N) as solvent. The steady-state design parameters of the novel SSED column are optimized and obtained with the objective of minimal total annual cost (TAC) via conventional sequential iterative procedure. On the basis of steady-state design, four single-end temperature control structures (STCS), four dual-temperature control structures (DTCS) and four dual-composition control structures (DCCS) are developed and established successively to overcome the operation and control challenges caused by the novel scheme. To seek the robust control, the dynamic performance analysis on account of the above control structures is conducted for the SSED column, which is evaluated for feed flowrates and composition disturbances. The results show that the control performance of DCCS is significantly superior to that of STCS and DTCS while the integral squared error (ISE) and energy-consuming effect are equivalent, and can take shorter time to bring the product purities back to the original steady state in coping with specified feed disturbances.
机译:通过单蒸馏塔进行复杂的二元共沸分离是创新的,重要的。在制品中,研究了具有萃取和溶剂回收功能的新型和简单的侧流萃取蒸馏(SSED)柱的设计和控制用于将甲醇和甲苯二元共沸与中间体沸点三乙胺(ET3N)作为溶剂分离。通过常规顺序迭代程序优化并获得了新型SSED柱的稳态设计参数,并获得了最小的年度成本(TAC)的目的。在稳态设计的基础上,连续开发并建立四个单端温度控制结构(STC),四个双温控结构(DTC)和四个双组成控制结构(DCCS)以克服操作和控制新颖方案造成的挑战。为了寻求稳健的控制,对上述控制结构进行动态性能分析是针对SSED柱进行的,这是评估供给流量和组成干扰的。结果表明,DCCS的控制性能明显优于STC和DTC,而积分平方误差(ISE)和能耗效果是等同的,并且可以采取较短的时间来使产品纯度回到原始稳态应对指定的饲料干扰。

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