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首页> 外文期刊>The Journal of Chemical Thermodynamics >Activity coefficients at infinite dilution and physicochemical properties for organic solutes and water in the ionic liquid trihexyl-tetradecyl-phosphonium tricyanomethanide
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Activity coefficients at infinite dilution and physicochemical properties for organic solutes and water in the ionic liquid trihexyl-tetradecyl-phosphonium tricyanomethanide

机译:无限稀释和物理化学性质的活性系数在离子液体三己基 - 四烷基 - 膦酸二甲磺酸亚己铵中的有机溶质和水的物理化学性质

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The activity coefficients at infinite dilution, gamma(infinity)(13) and gas-liquid partition coefficients, KL for 62 solutes: alkanes, alkenes, alkynes, cycloalkanes, aromatic hydrocarbons, alcohols, thiophene, ethers, ketones, esters, butanal, nitrogen compounds and water in the ionic liquid trihexyl-tetradecyl-phosphonium tricyanamide were determined by gas-liquid chromatography at the temperatures from 328.15 K to 368.15 K. The partial molar excess Gibbs energies Delta G(1)(E,infinity), enthalpies Delta H-1(E,infinity) and entropies Delta S-1(E,infinity) at infinite dilution were calculated from the experimental gamma(infinity)(13) values obtained over the temperature range. The selectivities and capacities at infinite dilution for water/ butan-1-ol separation problem were calculated from the gamma(infinity)(13) and compared to the literature values for other ionic liquids. High selectivity was obtained in comparison to other ionic liquids. Butanol is considered as possible biofuel. This alcohol is produced by fermentation and it must be separated from the aqueous fermentation broth. The values of K-L were used to determine the linear free energy relationship ( LFER) system constants as a function of temperature. The density of the investigated ionic liquid was also measured at temperatures from 298.15 K to 368.15 K(C) 2018 Elsevier Ltd.
机译:无限稀释,γ(无穷大)(13)和气液分配系数的活性系数,KL为62次溶质:烷烃,烯烃,炔,环烷烃,芳烃,醇,噻吩,醚,酮,酯,丁烷,氮气通过从328.15k至368.15k的温度下的气体色谱法测定离子液体三氧己基 - 四烷基鏻三氰胺中的化合物和水。部分磨牙过量的吉布斯能量Delta g(1)(E,Infinity),焓δh从在温度范围内获得的实验γ(Infinity)(13)值计算无限稀释的-1(E,Infinity)和熵δS-1(e,Infinity)。从γ(Infinity)(13)计算水/丁烷-1-OL分离问题的无限稀释的选择性和容量,并与其他离子液体的文献值相比。与其他离子液体相比,获得了高选择性。丁醇被认为是可能的生物燃料。该醇是通过发酵产生的,并且必须与水性发酵液分离。 K-L的值用于确定作为温度的函数的线性自由能关系(LEFE)系统常数。调查的离子液体的密度也在298.15k至368.15k(c)2018年Elsevier有限公司的温度下测量

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