The H2ONaCl–sucrose phase diagram and applications in cryobiology

F. W. Gayle, F. Cocks, M. L. Shepard
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引用次数: 20

Abstract

The liquidus surface of the primary ice phase field of the H2ONaCl–sucrose ternary system has been determined by differential thermal analysis (d.t.a.) techniques. Except in the region of high sucrose concentrations, the line of two-fold saturation bounding this field also was determined. Non-equilibrium glassy phases were formed throughout the system. The degree of metastability of these phases increases with sucrose concentration. At high sucrose levels, the metastability was such that detection of the line of two-fold saturation was precluded. In general, it was found that sucrose was less effective on a weight percent basis than dimethyl sulphoxide and glycerol in depressing the melting point of primary ice and, consequently, less effective in suppressing salt concentration effects at low temperatures in the liquid phase which is residual to primary ice formation.
硫酸-蔗糖相图及其在低温生物学中的应用
用差热分析(d.t.a)技术测定了h2onac -蔗糖三元体系冰相场的液相表面。除高蔗糖浓度区域外,还测定了该区域的两倍饱和边界线。非平衡玻璃相在整个体系中形成。这些相的亚稳态程度随蔗糖浓度的增加而增加。在高蔗糖水平下,亚稳性是这样的,两倍饱和线的检测被排除。一般来说,研究发现,在降低初冰熔点方面,蔗糖的重量百分比比二甲基亚砜和甘油的效果要差,因此,在抑制低温时液相中盐浓度的影响方面效果也差,而低温是初冰形成的残余。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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