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首页> 外文期刊>The Journal of Chemical Thermodynamics >Vapour pressure osmometry determination of water activity of binary and ternary aqueous (polymer plus polymer) solutions
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Vapour pressure osmometry determination of water activity of binary and ternary aqueous (polymer plus polymer) solutions

机译:蒸气压渗透法测定二元和三元水溶液(聚合物加聚合物)的水活度

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摘要

Precise water activity measurements at T = 308.15 K were carried out on several binary (water + polymer) and ternary {water + polymer (1) + polymer (2)} systems using the vapour pressure osmometry (VPO) technique. Polymers were polyethylene glycol 400 (PEG400), polyethylene glycol 6000 (PEG6000), polypropylene glycol 400 (PPG400), polyvinylpyrrolidone (PVP) and dextran (DEX). The water activity results obtained were used to calculate the vapour pressure of solutions as a function of concentration and the segment-based local composition models, NRTL and Wilson, were used to correlate the experimental water activity values. It was found that, for the polymer concentration range studied here, the values of the water activity obtained for the binary (water + polymer) solutions decrease in the order DEX > PVP > PEG6000 > PPG400 > PEG400. Furthermore, water activities of solutions of each polymer in the aqueous solutions of (5, 10, 15 and 20)% (w/w) other polymers investigated were also measured at T = 308.15 K. The ability of polymer (1) in decreasing the water activity of binary {water + polymer (2)} solutions was discussed on the basis of the (polymer + water) and {polymer (1) + polymer (2)} interactions. (C) 2014 Elsevier Ltd. All rights reserved.
机译:使用蒸气压渗透计(VPO)技术在几种二元(水+聚合物)和三元{水+聚合物(1)+聚合物(2)}系统上进行了T = 308.15 K时的精确水活度测量。聚合物为聚乙二醇400(PEG400),聚乙二醇6000(PEG6000),聚丙二醇400(PPG400),聚乙烯吡咯烷酮(PVP)和右旋糖酐(DEX)。获得的水分活度结果用于计算溶液的蒸气压随浓度的变化,基于片段的局部组成模型NRTL和Wilson用于关联实验水分活度值。已发现,对于此处研究的聚合物浓度范围,从二元(水+聚合物)溶液中获得的水活度值按DEX> PVP> PEG6000> PPG400> PEG400的顺序降低。此外,在T = 308.15 K时,还测量了所研究的(5、10、15和20)%(w / w)的其他聚合物的水溶液中每种聚合物溶液的水活度。聚合物(1)的降低能力在(聚合物+水)和{聚合物(1)+聚合物(2)}相互作用的基础上讨论了二元{水+聚合物(2)}溶液的水活度。 (C)2014 Elsevier Ltd.保留所有权利。

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