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Liquid-liquid equilibria of UCON + (sodium or potassium) phosphate salt aqueous two-phase systems at 23 °C

机译:UCON +(钠或钾)磷酸盐水溶液两相系统在23°C时的液-液平衡

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摘要

Six phase diagrams for UCON−phosphate salt aqueous two-phase systems (ATPSs), at 23 °C, are presented. The ATPSs were obtained combining UCON (a random copolymer of 50 % ethylene oxide and 50 % propylene oxide) and a phosphate salt (KH2PO4, K2HPO4, potassium phosphate buffer pH = 7, NaH2PO4, Na2HPO4, and sodium phosphate buffer pH = 7). Among the salts used, Na2HPO4 proved to be the most effective in ATPS formation, providing the greatest heterogeneous region in the phase diagram. The previous established relation between the anion valence and the concentration needed to form a biphasic system was confirmed: higher valence requires lower concentration. Na+ salts require, in all cases, lower concentration to form ATPSs than the corresponding K+ salts. The size of the heterogeneous region in the phase diagrams increases with an increase of the pH value of the salt used in ATPS preparation.
机译:给出了在23°C下的UCON-磷酸盐盐水溶液两相系统(ATPSs)的六相图。通过结合UCON(50%环氧乙烷和50%环氧丙烷的无规共聚物)和磷酸盐(KH2PO4,K2HPO4,磷酸钾缓冲液pH = 7,NaH2PO4,Na2HPO4和磷酸钠缓冲液pH = 7)获得ATPS。在所使用的盐中,Na2HPO4被证明对ATPS形成最有效,在相图中提供了最大的异质区域。阴离子价数与形成双相系统所需的浓度之间先前建立的关系得到确认:较高的价数需要较低的浓度。在所有情况下,与相应的K +盐相比,Na +盐需要更低的浓度才能形成ATPS。相图中非均相区域的大小随ATPS制备中所用盐的pH值的增加而增加。

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