首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Separation of azeotrope (2,2,3,3-tetrafluoro-1-propanol + water) via heterogeneous azeotropic distillation by energy-saving dividing-wall column: Process design and control strategies
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Separation of azeotrope (2,2,3,3-tetrafluoro-1-propanol + water) via heterogeneous azeotropic distillation by energy-saving dividing-wall column: Process design and control strategies

机译:通过节能分壁柱通过非均相共沸蒸馏分离共沸物(2,2,3,3-四氟-1-丙醇+水):工艺设计和控制策略

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To separate the azeotrope of 2,2,3,3-tetrafluoro-1-propanol (TFP) and water, the energy saving heterogeneous azeotropic dividing-wall column (DWC) is proposed using chloroform as an azeotropic agent. Compared with the conventional design, the total condenser duty reduction of 44.57%, total reboiler duty reduction of 42.66% and TAC reduction of 37.79% by the DWC design are obtained. Based on the simulation results, the energy-saving in the DWC design is due to the thermal coupling of the conventional design and the separation of water by the decanter with the purity of 99.5 mol%, rather not to the removal of remixing effect for the column sequence. The control strategy performance for the conventional and DWC designs are satisfactory, since TFP and water are separated with high purity, despite the disturbances of the flow rate of fresh feed, fresh feed composition and liquid split ratio. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:为了将2,2,3,3-四氟-1-丙醇(TFP)和水分离,使用氯仿作为共沸剂提出节能的非均相共沸分壁柱(DWC)。 与常规设计相比,获得了44.57%的总凝血剂占空比减少42.66%,降低DWC设计的42.66%和TAC减少37.79%。 基于仿真结果,DWC设计中的节能是由于传统设计的热耦合和滗析器的纯度为99.5摩尔%的净化,而不是去除复混效果 列序列。 常规和DWC设计的控制策略性能令人满意,因为TFP和水以高纯度分开,尽管新鲜进料的流速,新鲜饲料组合物和液体分流比的紊乱。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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