首页> 外文期刊>Journal of Solution Chemistry >Volumetric Study of Aqueous Solutions of Polyethylene Glycol as a Function of the Polymer Molar Mass in the Temperature Range 283.15 to 313.15 K and 0.1 MPa
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Volumetric Study of Aqueous Solutions of Polyethylene Glycol as a Function of the Polymer Molar Mass in the Temperature Range 283.15 to 313.15 K and 0.1 MPa

机译:聚合物摩尔质量在283.15至313.15 K和0.1 MPa温度范围内的聚乙二醇水溶液的体积研究

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Density measurements were made for binary aqueous solutions of polyethylene glycol at seven temperatures: 283.15, 288.15, 293.15, 298.15, 303.15, 308.15, and 313.15 K. Polyethylene glycol samples with nominal average molar masses of 3000 ga <...mol(-1) (PEG 3000), 6000 ga <...mol(-1) (PEG 6000), 10000 ga <...mol(-1) (PEG 10000) and 20000 ga <...mol(-1) (PEG 20000) were used. These results were used to determine the specific volumes of solutions with solute-to-solvent mass ratios (mass of the solute/mass of the solvent) in the range 0.0546 to 1.4932 for PEG 3000, from 0.0553 to 1.4986 for PEG 6000, from 0.0552 to 1.2241 for PEG 10000, and from 0.0530 to 1.2264 for PEG 20000. The differences between the specific volume of a solution and the specific volume of the pure solvent, at a given temperature, were represented by a virial-type equation in terms of solute concentration. The first-order coefficient of the expansion is the partial specific volume of the solute at infinite dilution. The higher-order coefficients are related to the contribution of pairs, triplets, and higher-order solute aggregates, according to the Constant-Pressure Solution Theory. The functional dependence of the virial coefficients upon temperature is discussed in terms of solute-solute and solute-solvent interactions. The effect of the PEG molar mass on the partial specific volume of solute at infinite dilution, as well as the contributions of pairs of solute molecules to the solution volume, are also investigated. The apparent specific volume, apparent specific expansibility, apparent specific expansibility at infinite dilution and virial coefficients of the apparent specific expansibility are also presented.
机译:在七个温度下对聚乙二醇的二元水溶液进行密度测量:283.15、288.15、293.15、298.15、303.15、308.15和313.15 K.标称平均摩尔质量为3000 ga <... mol(-1)的聚乙二醇样品)(PEG 3000),6000 ga <... mol(-1)(PEG 6000),10000 ga <... mol(-1)(PEG 10000)和20000 ga <... mol(-1)(使用PEG 20000)。这些结果用于确定溶质与溶剂的质量比(溶质质量/溶剂质量)在PEG 3000中为0.0546至1.4932,在PEG 6000中为0.0553至1.4986,从0.0552为0.0552 PEG 10000为1.2241,PEG 20000为0.0530至1.2264。在给定温度下,溶液的比体积与纯溶剂的比体积之间的差异由溶质方面的病毒式方程表示浓度。膨胀的一级系数是无限稀释时溶质的部分比容。根据恒压解理论,高阶系数与成对,三重态和高阶溶质聚集体的贡献有关。根据溶质-溶质和溶质-溶剂的相互作用,讨论了病毒系数对温度的函数依赖性。还研究了PEG摩尔质量对无限稀释时溶质的部分比体积的影响,以及成对的溶质分子对溶液体积的影响。还给出了表观比体积,表观比扩展性,无限稀释下的表观比扩展性和表观比扩展性的病毒系数。

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