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Inhibition of Ice Growth and Recrystallization by Zirconium Acetate and Zirconium Acetate Hydroxide

机译:冰生长和再结晶的抑制醋酸锆及锆碱式乙酸

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摘要

The control over ice crystal growth, melting, and shaping is important in a variety of fields, including cell and food preservation and ice templating for the production of composite materials. Control over ice growth remains a challenge in industry, and the demand for new cryoprotectants is high. Naturally occurring cryoprotectants, such as antifreeze proteins (AFPs), present one solution for modulating ice crystal growth; however, the production of AFPs is expensive and inefficient. These obstacles can be overcome by identifying synthetic substitutes with similar AFP properties. Zirconium acetate (ZRA) was recently found to induce the formation of hexagonal cavities in materials prepared by ice templating. Here, we continue this line of study and examine the effects of ZRA and a related compound, zirconium acetate hydroxide (ZRAH), on ice growth, shaping, and recrystallization. We found that the growth rate of ice crystals was significantly reduced in the presence of ZRA and ZRAH, and that solutions containing these compounds display a small degree of thermal hysteresis, depending on the solution pH. The compounds were found to inhibit recrystallization in a manner similar to that observed in the presence of AFPs. The favorable properties of ZRA and ZRAH suggest tremendous potential utility in industrial applications.
机译:在许多领域,控制冰晶的生长,融化和成型非常重要,包括电池和食品保存以及用于复合材料生产的冰模板。控制冰的生长仍然是工业上的挑战,并且对新型防冻剂的需求很高。天然的冷冻保护剂,例如抗冻蛋白(AFP),是一种调节冰晶生长的解决方案。然而,AFP的生产昂贵且效率低下。通过识别具有相似AFP性质的合成替代品可以克服这些障碍。最近发现,醋酸锆(ZRA)会在通过冰模板制备的材料中诱导形成六角形空腔。在这里,我们继续进行此研究,并检查ZRA和相关化合物氢氧化乙酸锆(ZRAH)对冰生长,成形和重结晶的影响。我们发现,在存在ZRA和ZRAH的情况下,冰晶的生长速度显着降低,并且根据溶液的pH值,包含这些化合物的溶液显示出较小的热滞后性。发现该化合物以类似于在AFP存在下观察到的方式抑制重结晶。 ZRA和ZRAH的良好性能表明在工业应用中具有巨大的潜在用途。

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