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Density, refractive index, apparent specific volume, and electrical conductivity of aqueous solutions of poly(ethylene glycol) 1500 at different temperatures

机译:聚乙二醇1500在不同温度下的水溶液的密度,折射率,表观比容和电导率

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摘要

Thermophysical properties of aqueous solutions of poly(ethylene glycol) 1500 g·mol–1 were measured as a function of polymer concentration w=(0.05, 0.10, 0.15, 0.20 and 0.25) and temperature T/K=(288, 293, 298, 303 and 308). Aqueous systems composed of poly(ethylene glycol) are frequently used in processes involving the separation of biological compounds. The density of the solutions varied from (1001.68 to 1042.65) kg·m–3, the refractive index ranged from (1.3377 to 1.3681), the apparent specific volume was between (0.8336 and 0.8528) g·cm–3, and the electrical conductivity varied between (66.22 and 170.29) 10–3 mS·cm–1. Polynomial models for the properties as a function of temperature and poly(ethylene glycol) 1500 g·mol–1 concentration were fitted to the experimental data. Models accounting for combined effects between variables are particularly useful in industrial applications in which physical parameters must be promptly and accurately calculated.
机译:测量了1500 g·mol–1的聚乙二醇水溶液的热物理性质,它是聚合物浓度w =(0.05,0.10,0.15,0.20和0.25)和温度T / K =(288,293,298)的函数,303和308)。由聚乙二醇构成的水性体系经常用于涉及分离生物化合物的过程中。溶液的密度在(1001.68至1042.65)kg·m-3之间变化,折射率在(1.3377至1.3681)之间,表观比容在(0.8336至0.8528)g·cm-3之间,并且电导率(66.22至170.29)10–3 mS·cm-1之间变化。将性能随温度和1500 g·mol–1聚乙二醇浓度变化的多项式模型拟合到实验数据中。考虑变量之间的综合影响的模型在工业应用中特别有用,在工业应用中必须及时准确地计算物理参数。

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