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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Phase equilibria study in binary systems (tetra-n-butylphosphonium tosylate ionic liquid+1-alcohol, or benzene, or n-alkylbenzene)
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Phase equilibria study in binary systems (tetra-n-butylphosphonium tosylate ionic liquid+1-alcohol, or benzene, or n-alkylbenzene)

机译:二元体系中的相平衡研究(甲苯磺酸四正丁基phosph离子液体+ 1-醇或苯或正烷基苯)

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Ambient pressure (solid + liquid) equilibria (SLE) and (liquid + liquid) equilibria (LLE) of binary systems-ionic liquid (IL) tetra-n-butylphosphonium p-toluenesulfonate + I -alcohol (1-butanol, I-hexanol, 1-octanol, 1-decanol, or 1-dodecanol), benzene, or n-alkylbenzene (toluene, ethylbenzene, n-propylbenzene)- have been determined by using dynamic method in a broad range of mole fractions and temperatures from 250 to 335 K. For binaries containing alcohol, simple eutectic diagrams were observed with complete miscibility in the liquid phase. Only in the case of system { IL + n-propylbenzene} was mutual immiscibility with an upper critical solution temperature (UCST) with low solubility of the IL in the alcohol and high solubility of the alcohol in the IL detected. The basic thermal properties of pure IL, i.e., melting and glass-transition temperatures as well as enthalpy of melting, have been measured with differential scanning microcalorimetry technique (DSC). Well-known UNIQUAC, Wilson, NRTL, NRTL1, and NRTL2 equations have been fitted to obtain experimental data sets. For the system containing immiscibility gap (IL + n-propylbenzene}, parameters of the equations have been derived only from SLE data. As a measure of goodness of correlations, root-mean square deviations of temperature have been used. These experimental results were compared to the previously measured binary systems with tetra-n-butylphosphonium methanesulfonate. Changing anion from methanesulfonate to p-toluenesulfonate decreases solubilities in systems with alcohols and increases the solubilities in binary systems with benzene and alkylbenzenes.
机译:二元体系的环境压力(固体+液体)平衡(SLE)和(液体+液体)平衡(LLE)-离子液体(IL)对甲苯磺酸四正丁基+ + I-醇(1-丁醇,I-己醇) ,1-辛醇,1-癸醇或1-十二烷醇),苯或正烷基苯(甲苯,乙苯,正丙基苯)-已通过动力学方法在250至750的较宽摩尔分数和温度范围内测定335K。对于含酒精的二元醇,观察到简单的共晶图,在液相中具有完全混溶性。仅在系统{IL +正丙基苯}的情况下,才可以与上临界溶液温度(UCST)互溶,并且检测到IL在醇中的溶解度低,而醇在IL中的溶解度高。已使用差示扫描量热技术(DSC)测量了纯IL的基本热性能,即熔融温度和玻璃化转变温度以及熔融焓。众所周知的UNIQUAC,Wilson,NRTL,NRTL1和NRTL2方程已拟合以获得实验数据集。对于包含不混溶间隙(IL +正丙基苯)的系统,方程的参数仅从SLE数据中得出,为了衡量相关性,使用了温度的均方根偏差,并对这些实验结果进行了比较将甲烷磺酸盐的阴离子从甲烷磺酸盐改变为对甲苯磺酸盐会降低以前在醇中的溶解度,并增加了在苯和烷基苯中的二元体系的溶解度。

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