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Design and control of acetic acid dehydration system via heterogeneous azeotropic distillation using p-xylene as an entrainer

机译:以对二甲苯为夹带剂的非共沸蒸馏乙酸脱水系统的设计与控制

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摘要

In the process of manufacturing terephthalic acid, very small amount of reactant p-xylene may enter into the feed stream of an acetic acid dehydration column. Traditionally, acetic esters were used as entrainers to separate acetic acid and water by heterogeneous azeotropic distillation (HAD). However, they can contaminate the process. In the study, the feasibility of using p-xylene as the entrainer is evaluated to eliminate the drawbacks of the HAD column using acetic esters as entrainers. An improved column is proposed for the separation of acetic acid and water in the presence of methyl acetate and tiny amount of p-xylene. Two configurations of the HAD column using p-xylene as the entrainer are designed by using different p-xylene purge strategies. The HAD column with a side stream to purge p-xylene accumulated in the column gives the most economical design.A temperature control strategy is proposed for this HAD column to maintain acetic acid compositions in both the aqueous phase of the decanter and the column bottom. The controlled stage temperatures are chosen by singular value decomposition and closed-loop analysis methods. Dynamic simulation results reveal that the proposed control strategy can maintain product purities in spite of feed flow and feed composition changes.
机译:在生产对苯二甲酸的过程中,非常少量的对二甲苯反应物可能会进入乙酸脱水塔的进料流中。传统上,使用乙酸酯作为夹带剂,通过非均相共沸蒸馏(HAD)分离乙酸和水。但是,它们会污染过程。在研究中,评估了使用对二甲苯作为夹带剂的可行性,以消除使用乙酸酯作为夹带剂的HAD色谱柱的缺点。提出了一种改进的色谱柱,用于在乙酸甲酯和少量对二甲苯的存在下分离乙酸和水。通过使用不同的对二甲苯吹扫策略,设计了使用对二甲苯作为夹带剂的HAD色谱柱的两种配置。具有侧流以清除塔中积累的对二甲苯的HAD塔提供了最经济的设计。为此HAD塔提出了一种温度控制策略,以在the析器的水相和塔底中均保持乙酸成分。通过奇异值分解和闭环分析方法选择受控的级温度。动态仿真结果表明,尽管进料流量和进料组成发生变化,所提出的控制策略仍可保持产品纯度。

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