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Control Structures Evaluation for a Salt Extractive Distillation Pilot Plant: Application to Bio-Ethanol Dehydration

机译:盐萃取蒸馏中试装置的控制结构评价:在生物乙醇脱水中的应用

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This paper addresses the challenge of evaluating control structures for a salt extractive distillation column producing absolute ethanol for use as biofuel. A sensitivity analysis aided with designing a pseudo-binary distillation pilot plant and examining the conceived process and the influence of the reflux ratio on both product purity and energy consumption. We compare three control structures for inferential tracking of the distillate composition: a dual-temperature control with an RV (reflux/boilup) structure and two single-end temperature control configurations, and their performance is measured using deterministic indicators. The result is the proposal of a pilot plant design for treating 15 kg/h of a diluted mixture with mole fraction of ethanol equal to 0.2 and assuming a column efficiency of 50%. The R/F (reflux to feed ratio) configuration is the best control structure, given that its corresponding performance indicators conduct lowest steady-state errors, less oscillating responses, and reduced settling times. For this configuration, the reflux flow rate is rationed to the feed flow rate, and the temperature is controlled manipulating the distillate flow rate. Even subject to perturbations, the energy consumption of the plant remains close to the nominal value. The three evaluated control structures consistently met international quality standards for fuel ethanol and enhanced the use of salts in ethanol dehydration.
机译:本文解决了评估盐萃取蒸馏塔生产无水乙醇用作生物燃料的控制结构的挑战。敏感性分析有助于设计拟二元蒸馏中试装置,并研究设想的工艺以及回流比对产品纯度和能耗的影响。我们比较了三种控制结构以推断出馏分的组成:具有RV(回流/沸腾)结构的双温度控制和两个单端温度控制配置,并使用确定性指标测量其性能。结果是提出了中试装置设计的建议,该装置用于处理15千克/小时的稀释混合物,乙醇的摩尔分数等于0.2,并假设色谱柱效率为50%。 R / F(回流进料比)配置是最佳的控制结构,因为其相应的性能指标可实现最低的稳态误差,较小的振荡响应并减少建立时间。对于这种构造,将回流流速与进料流速配比,并控制温度以控制馏出物流速。即使受到干扰,工厂的能耗也仍然接近标称值。三个经过评估的控制结构始终符合燃料乙醇的国际质量标准,并提高了乙醇脱水中盐的使用率。

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