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Liquid-Liquid Equilibrium of Primary and Secondary Aqueous Two-Phase Systems Composed of Sucrose + Triton X-114 + Water at Different Temperatures

机译:蔗糖+ Triton X-114 +水在不同温度下组成的初级和次级水两相系统的液-液平衡

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摘要

Liquid—liquid equilibrium (LLE) data for aqueous two-phase systems (ATPSs) composed of sucrose, Triton X-114, and water were determined at 288 K, 293 K, and 298 K. At 293 K and 298 K, the top and bottom phases of the ATPS were enriched with sucrose and Triton X-114, respectively. However, phase inversion was observed in the ATPS formed at a lower temperature (288 K). When the temperature increased, the area of the biphasic region became larger, whereas the slopes and the lengths of the tie lines decreased. Binodal data obtained at different temperatures were correlated using a fourth-order polynomial equation, while tie-line data were correlated using the Othmer—Tobias and Bancroft equations. Moreover, the Setschenow equation was used to investigate the sugaring-out effect of sucrose on the formation of the ATPS. The correlated results and fitting parameters from these empirical equations confirmed the reliability and reproducibility of the experimental results. Furthermore, both top- and bottom-phase solutions can be heated to 303 K to form the secondary ATPSs composed of sucrose and Triton X-114, respectively. The LLE data for secondary ATPSs are presented in this paper.
机译:由蔗糖,Triton X-114和水组成的水两相系统(ATPS)的液-液平衡(LLE)数据在288 K,293 K和298 K时确定。在293 K和298 K时,顶部ATPS的底部和底部分别富含蔗糖和Triton X-114。但是,在较低温度(288 K)下形成的ATPS中观察到了相转化。当温度升高时,两相区域的面积变大,而连接线的斜率和长度减小。使用四阶多项式方程将在不同温度下获得的双曲线数据相关联,而使用Othmer-Tobias和Bancroft方程将联系线数据相关联。此外,使用Setschenow方程来研究蔗糖对ATPS形成的糖化作用。这些经验方程式的相关结果和拟合参数证实了实验结果的可靠性和可重复性。此外,可以将顶层和底层相溶液都加热到303 K,以分别形成由蔗糖和Triton X-114组成的次级ATPS。本文介绍了次级ATPS的LLE数据。

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