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Design and control of a plant-wide process for the production of epichlorohydrin

机译:设计和控制全厂生产环氧氯丙烷的过程

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Epichlorohydrin (ECH) is a primary raw material in the production of some polymers. However, traditional ECH production methods suffer from several disadvantages. Hydrogen peroxide is relatively non-toxic and widely accepted as an environmentally friendly and green oxidant. In the study, we propose the plant-wide process design and control for ECH synthesis by the epoxidation of allyl chloride with hydrogen peroxides over the catalyst of TS-1 in the presence of methanol. In the plant-wide process, the product from a plug flow reactor is separated by a distillation column. Nitrogen gas is fed into the column top for safety concerns. The column bottom product containing mostly ECH and water is decanted into two liquid phases. High purity ECH and water are obtained from the bottoms of two strippers which the liquids of organic and aqueous phases in the decanter are respectively fed into. The control strategy is constructed by steady-state analysis for the plant-wide process and its performance is evaluated by dynamic simulation. Simulation results reveal that the process can be safely operated and product purities can be maintained around the desired values by temperature control in spite of disturbances.
机译:环氧氯丙烷(ECH)是生产某些聚合物的主要原料。然而,传统的ECH生产方法具有几个缺点。过氧化氢是相对无毒的,被广泛认为是一种环境友好的绿色氧化剂。在这项研究中,我们提出了在甲醇存在下,在TS-1催化剂上用过氧化氢将烯丙基氯与过氧化氢进行环氧化的ECH合成的全厂工艺设计和控制。在全厂范围的过程中,来自活塞流反应器的产物被蒸馏塔分离。出于安全考虑,将氮气注入塔顶。将主要包含ECH和水的塔底产物de析为两个液相。从两个汽提塔的底部获得高纯度的ECH和水,分别将th​​e析器中的有机相和水相液体注入其中。该控制策略是通过对整个工厂范围内的过程进行稳态分析来构建的,其性能可以通过动态仿真进行评估。仿真结果表明,尽管受到干扰,但仍可以通过温度控制来安全地运行该过程,并且可以将产品纯度保持在所需值附近。

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