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Ice premelting during differential scanning calorimetry

机译:差示扫描量热法中的冰预融化

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摘要

Premelting at the surface of ice crystals is caused by factors such as temperature, radius of curvature, and solute composition. When polycrystalline ice samples are warmed from well below the equilibrium melting point, surface melting may begin at temperatures as low as -15 degrees C. However, it has been reported (. Biophys. J. 65:1853-1865) that when polycrystalline ice was warmed in a differential scanning calorimetry (DSC) pan, melting began at about -50 degrees C, this extreme behavior being attributed to short-range forces. We show that there is no driving force for such premelting, and that for pure water samples in DSC pans curvature effects will cause premelting typically at just a few degrees below the equilibrium melting point. We also show that the rate of warming affects the slope of the DSC baseline and that this might be incorrectly interpreted as an endotherm. The work has consequences for DSC operators who use water as a standard in systems where subfreezing runs are important.
机译:冰晶表面的预融化是由温度,曲率半径和溶质组成等因素引起的。当多晶冰样品从远低于平衡熔点的温度加热时,表面融化可能会在低至-15摄氏度的温度下开始。然而,据报道(。Biophys。J. 65:1853-1865)将其在差示扫描量热法(DSC)锅中加热,在约-50摄氏度下开始熔化,这种极端行为归因于短距离作用力。我们表明,这种预融化没有驱动力,对于DSC锅中的纯水样品,曲率效应通常会在低于平衡熔点几度的程度上引起预融化。我们还表明,升温速率会影响DSC基线的斜率,并且这可能被错误地解释为吸热。这项工作对DSC操作员产生了影响,因为他们在超低温运行非常重要的系统中使用水作为标准。

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