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The Mechanism Analysis of NaCl Solution Ice Formation Suppressed by Electric Field

机译:电场抑制NaCl溶液冰层的机理分析

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The cells and tissues usually may besubjected to cryo-injure, but caused to die during freezing process for cryo-preservation. Among them, the most direct reason is extra-cellular and intra-cellular ice formation. How to control, reduce, or eliminate the ice formation has been an important research topic in fundamental cryobiology. The objective of this study was to test a hypothesis that the alternated electric field could significantly influence the solution of 0.9percent NaCl freezing property at a relative slow cooling rate. The test sample consisted of 0.9percent NaCl solution and it was frozen in 0.26K/min cooling rate, simultaneously was exposed to alternating electric fields ranging from 50Hz to 5MHz. A system was built and utilized to measure the temperature of the test sample continually. It was founded that alternated electric fields strongly influenced the freezing property of the solution, included the undercooling point temperature of the solution and the latent heat produced by phrase transition during freezing process. The results were analyzed by using dielectric theory and ions moving phenomena, it indicated that the icons moving under alternated electric field is main factor influencing the property of 0.9percent NaCl solution during freezing process.
机译:细胞和组织通常可以余生擦去冷冻损伤,但在冷冻过程中导致死于冷冻保存。其中,最直接的原因是细胞外和细胞内冰形成。如何控制,减少或消除冰形成一直是基本冷冻生物学的重要研究课题。本研究的目的是测试一个假设,即交替的电场可以以相对缓慢的冷却速率显着影响0.9甲基NaCl冷冻性的溶液。试验样品由0.9甲基NaCl溶液组成,并以0.26K /最小的冷却速度冷冻,同时暴露于从50Hz至5MHz的交替电场。建立并利用系统,以不断测量测试样品的温度。结果成立,交替的电场强烈影响了溶液的冷冻性,包括溶液的过冷点温度和通过短语转变在冷冻过程中产生的潜热。通过使用介电理论和离子移动现象来分析结果,表明在交替的电场下移动的图标是影响冷冻过程中0.9甲基NaCl溶液的主要因素。

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