首页> 外文期刊>Russian journal of physical chemistry, B. >Modification of Poly(4-Methyl-2-Pentyne) in Supercritical Fluid Medium for Production of CO2-Selective Gas-Separation Membranes
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Modification of Poly(4-Methyl-2-Pentyne) in Supercritical Fluid Medium for Production of CO2-Selective Gas-Separation Membranes

机译:用于生产CO2选择性气体分离膜的超临界流体介质中聚(4-甲基-2-Pentyne)的修饰

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The work is devoted to exploring the possibility of using supercritical fluids as media for modification of polymers offering promise for production of gas-separation membranes with the goal to improve selectivity towards CO2. The possibility is demonstrated for introduction of fragments of quaternary ammonium salts into the structure of poly(4-methyl-2-pentyne) with the help of a two-stage process: bromination of the initial polymer with N-bromosuccinimide followed by the addition of the tertiary amine-N-butylimidazol- conducted in supercritical fluids as a medium. The use of trifluoromethane as the reaction medium provides the highest degree of modification of the brominated polymer with the amine. The polymer produced under the optimized conditions demonstrates a threefold increase of the calculated selectivity of separation of CO2 and N-2 in comparison with the initial poly(4-methyl-2-pentyne).
机译:该工作致力于探索使用超临界流体作为培养基的可能性,用于改变聚合物,以便为生产天然气分离膜的产生,以提高对CO2的选择性。 借助于两阶段方法的帮助将季铵盐的片段引入聚(4-甲基-2-Pentyne)的结构中的可能性:用n-溴嘧啶嘧啶酰亚胺的初始聚合物的溴化,然后添加 将叔胺-N-丁基咪唑 - 在超临界流体中作为培养基进行。 作为反应介质的三氟甲烷的使用提供了胺化聚合物的最高变性与胺。 与初始聚(4-甲基-2-Pentyne)相比,在优化条件下产生的聚合物表明CO 2和N-2分离的计算选择性的三倍增加。

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