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首页> 外文期刊>Separation and Purification Technology >Separation of propylene and propane by functional mixture of imidazolintum chloride ionic liquid - Organic solvent - Cuprous salt
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Separation of propylene and propane by functional mixture of imidazolintum chloride ionic liquid - Organic solvent - Cuprous salt

机译:丙烯和丙烷通过咪唑酰胺氯离子液体液体 - 有机溶剂 - 亚光盐的功能混合物分离

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To lower viscosity and possible negative effect on mass/heat transfer in industrial operation, we prepared a new absorption system to separate propylene from propane, i.e., ionic liquids (ILs)-organic solvent cuprous salt. The absorption system is constructed by IL of 1-butyl-3-methylimidazolium chloride ([Bmim][Cl]); organic solvent of pyridine, N,N-dimethylformamide (DMF) or N-methyl-2-pyrrolidone (NMP); cuprous chloride (CuCl). We experimentally measured the absorption capability and selectivity of such a new system for pure propylene, propane or their mixture at 1-7 bar and 298-318 K. We investigated different factors such as temperature, pressure, species of organic solvent, Cu+ concentration and regeneration and recycling of absorbents. The addition of organic solvent significantly lowers the viscosity of absorption system (approximately one order of magnitude lower). Organic solvent interestingly enhances the absorption capability for propylene while suppresses the absorption selectivity slightly. Species of solvent has a huge effect on separation performance. [Bmim][Cl]-pyridine-CuCl gives the best separation performance, e.g., in the absorption of a mixture of 50 mol% propylene and 50 mol% propane, the solubility of propylene in [Bmim][Cl]-pyridine-CuCl-2M (mass ratio of [Brnim][Cl]:pyridine, 10:1) is 0.064 mol/L at 298 K/2 bar while that of propane is 0.0105 mol/L with absorption selectivity of 6.1, which is comparable to some other ILs-Ag+ or ILs-Cu+ absorption systems. Such an absorption system can be regenerated through temperature and pressure swing and recycled without remarkable activity loss. Therefore, this new system is a good potential absorbent for separating propylene and propane. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了降低产业手术中的质量/传热可能的负面影响,我们制备了一种新的吸收体系,将丙烯分离出丙烷,即离子液体(ILS) - 多糖溶剂亚铜盐。吸收体系由IL的1-丁基-3-甲基咪唑氯化物([Bmim] [Cl])构成;吡啶,N,N-二甲基甲酰胺(DMF)或N-甲基-2-吡咯烷酮(NMP)的有机溶剂;氯化亚铜(CuCl)。我们在1-7巴的纯丙烯,丙烷或其混合物中测量了这种新系统的吸收能力和选择性,并在1-7巴,298-318k。我们研究了不同的因素,如温度,压力,有机溶剂种类,Cu +浓度和浓度吸收剂的再生和再循环。添加有机溶剂显着降低了吸收系统的粘度(大约一个级别下降)。有趣的是有趣地提高了丙烯的吸收能力,同时抑制吸收选择性略微抑制。溶剂种类对分离性能产生了巨大影响。 [Bmim] [Cl] -Pyridine-CuCl可提供最佳的分离性能,例如,在吸收50mol%丙烯和50mol%丙烷的混合物中,丙烯在[Bmim] [Cl] - CuCl中的溶解度-2M([Brnim] [Cl]的质量比:吡啶,10:1)为0.064 mol / l,在298k / 2巴,而丙烷的吸收选择性为0.0105mol / l,为6.1,可与一些相当其他ILS-AG +或ILS-CU +吸收系统。这种吸收系统可以通过温度和压力摆动再生并再循环而没有显着的活性损失。因此,这种新系统是分离丙烯和丙烷的良好潜在吸收剂。 (c)2016年Elsevier B.v.保留所有权利。

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