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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Modelling and experimental validation of dimethyl carbonate solvent recovery from an aroma mixture by batch distillation
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Modelling and experimental validation of dimethyl carbonate solvent recovery from an aroma mixture by batch distillation

机译:批量蒸馏从芳香混合物中碳酸二甲酯溶剂回收的建模与实验验证

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Modelling and experimental validation of solvent recovery from an aroma mixture by batch distillation process is presented, with particular emphasis of the effect of the prediction of the physicochemical properties and the phase equilibrium data on the content of the aroma compounds in the distillate cuts. The illustrative case study refers to an industrial batch distillation to recover dimethyl carbonate (DMC) from an extract generated by a solvent extraction process involving variable natural raw materials for tailored perfume and fragrance applications. Due to the high number of aroma compounds in natural extracts, a synthetic mixture containing six target aroma compounds (alpha-pinene, eucalyptol, linalool, cis-3-hexenol, fenchone and benzyl acetate) was mixed with DMC for the modelling and experimental studies of the batch distillation process. The methodology is tested through the simulation of the process with BatchColumn (R) software. As physicochemical properties of the aroma compounds and the vapour liquid equilibrium (VLE) of all involved mixtures are required for simulation study, group contribution methods are used to predict missing properties such as vapour pressure, vaporisation enthalpy and liquid and vapour heat capacities. For VLE calculation, the modified UNIFAC group contribution method is considered and new binary interaction parameters for the main groups COO and CH2O are regressed from experimental data. Simulation results are in good agreement with experiments carried out in a fully automated batch distillation column at 15 kPa and help optimise the industrial process operation. The proposed methodology can be applied for the design of other solvent recovery process in fragrance industry. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:介绍了通过批量蒸馏工艺从香气混合物中溶剂回收的建模和实验验证,特别强调了物理化学性质的预测和相平衡数据对馏出物切口中香气化合物含量的影响。该说明性案例研究是指工业批量蒸馏,以从涉及可变天然原料的溶剂萃取工艺产生的提取物中回收二甲基碳酸二甲酯(DMC),所述溶剂萃取过程涉及可变天然原料的用于量身定制的香水和香味应用。由于天然提取物中的芳香化合物具有大量的芳香化合物,将含有六种靶芳香化合物(α-叉烯,桉涂基,烯醇,CIS-3-己烯醇,卵酮和苄酯)的合成混合物与DMC混合用于模拟和实验研究批量蒸馏过程。通过使用BatchColumn(R)软件的过程进行测试测试方法。作为仿真研究所需的芳香化合物和蒸汽液体平衡(VLE)的物理化学性质是仿真研究所必需的,用于预测缺失的特性,例如蒸气压,蒸发焓和液体和蒸汽热容。对于VLE计算,考虑修改的Unifac组贡献方法,并从实验数据回归COO和CH2O的新二进制交互参数。仿真结果与15kPa的全自动批量蒸馏塔中的实验一致,有助于优化工业过程操作。所提出的方法可以应用于在香味工业中的其他溶剂回收过程的设计。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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