聚十二烷基甲基硅氧烷分离1-己烯-庚醛混合物效率的评价

IF 2 Q4 CHEMISTRY, PHYSICAL Membranes and Membrane Technologies Pub Date : 2022-12-26 DOI:10.1134/S2517751622060051
E. A. Grushevenko, T. N. Rohmanka, G. A. Dibrov, V. V. Volkov, A. V. Volkov
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引用次数: 1

摘要

氢甲酰化(或氧合成)是目前有机合成中最重要的过程之一。提高该工艺的转化程度和降低运行成本似乎是其发展的一个重要方向。提出了一种氢甲酰化膜反应器作为原位分离催化剂和反应混合物与反应产物(醛)的方法。本工作考虑了基于聚癸基甲基硅氧烷(PDecMS)的膜在1-己烯氢甲酰化成庚二醛的膜反应器中的应用潜力。为了评估1-己烯和庚醛与PDecMS的相互作用,研究了单个物质及其混合物在30 - 60°C下的吸附。还得到了含有1-己烯和庚二醛的混合物的吸附等温线,表明庚二醛在PDecMS中有选择性吸附。在30 ~ 60℃的真空渗透汽化条件下,研究了1-己烯和庚醛在PDecMS膜上的传输。根据得到的实验数据,绘制了1-己烯和庚醛渗透率的温度依赖性图。结果表明,庚醛和己烯通过PDecMS膜的活化能分别为- 11.5 kJ/mol和- 16.4 kJ/mol。对转化率为80%的氢甲酰化反应操作温度(130℃)对渗透率的温度依赖性进行外推,结果表明,当庚醛的渗透率为740 mol m−2 h−1 bar−1,1-己烯的渗透率为55 mol m−2 h−1 bar−1时,庚醛的通量为37 kg m−2 h−1,1-己烯的通量为5 kg m−2 h−1。因此,渗透液将被醛富集。
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Evaluation of the Efficiency of Polydecylmethylsiloxane in the Separation of a 1-Hexene–Heptanal Mixture

Hydroformylation (or oxo synthesis) is currently one of the most important processes of organic synthesis. Increasing the degree of conversion of this process as well as reducing operating costs seems to be an important direction for its development. A hydroformylation membrane reactor is proposed as an in situ method for separating the catalyst and reaction mixture from the reaction products (aldehydes). This work considers the potential of application of a membrane based on polydecylmethylsiloxane (PDecMS) for a membrane reactor for the hydroformylation of 1-hexene to heptanal. To evaluate the interaction of 1-hexene and heptanal with PDecMS, the sorption of the individual substances and their mixtures at 30 up to 60°C is studied. Sorption isotherms are also obtained for a mixture containing 1-hexene and heptanal which demonstrate selective sorption of heptanal in PDecMS. The transport of 1-hexene and heptanal through a membrane based on PDecMS is studied in the vacuum pervaporation mode at 30 up to 60°C. Based on the obtained experimental data, the temperature dependences of the permeability of 1-hexene and heptanal are plotted. It is shown that the activation energy of transport through a PDecMS membrane is −11.5 kJ/mol for heptanal and −16.4 kJ/mol for 1-hexene. Extrapolation of the temperature dependence of permeability to the operating temperature of hydroformylation (130°C) at a conversion of ~80% shows that, at the permeability of heptanal of 740 mol m−2 h−1 bar−1 and of 1-hexene, 55 mol m−2 h−1 bar−1, the flux of heptanal will be 37 kg m−2 h−1 and of 1-hexene, 5 kg m−2 h−1. Thus, the permeate will be enriched with the aldehyde.

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来源期刊
CiteScore
3.10
自引率
31.20%
发文量
38
期刊介绍: The journal Membranes and Membrane Technologies publishes original research articles and reviews devoted to scientific research and technological advancements in the field of membranes and membrane technologies, including the following main topics:novel membrane materials and creation of highly efficient polymeric and inorganic membranes;hybrid membranes, nanocomposites, and nanostructured membranes;aqueous and nonaqueous filtration processes (micro-, ultra-, and nanofiltration; reverse osmosis);gas separation;electromembrane processes and fuel cells;membrane pervaporation and membrane distillation;membrane catalysis and membrane reactors;water desalination and wastewater treatment;hybrid membrane processes;membrane sensors;membrane extraction and membrane emulsification;mathematical simulation of porous structures and membrane separation processes;membrane characterization;membrane technologies in industry (energy, mineral extraction, pharmaceutics and medicine, chemistry and petroleum chemistry, food industry, and others);membranes and protection of environment (“green chemistry”).The journal has been published in Russian already for several years, English translations of the content used to be integrated in the journal Petroleum Chemistry. This journal is a split off with additional topics.
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