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首页> 外文期刊>Journal of food engineering >Ice fouling on a subcooled metal surface examined by thermo-response and electrical conductivity
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Ice fouling on a subcooled metal surface examined by thermo-response and electrical conductivity

机译:通过热响应和电导率检查过冷金属表面上的冰垢

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摘要

Freeze concentration is an excellent alternative to evaporation and reverse osmosis for pre-concentration of many liquid foods. However, the build-up of an ice layer on the cooler surface, which is known as ice fouling, is unavoidable even at a low degree of supercooling, e.g. around 0.2 ℃. This significantly reduces the heat-extraction rate and increases the cost of freeze concentration. In this study, we found that the onset time of ice fouling on the subcooled metal surface can be indicated by the step increase of the surface temperature due to the release of the latent heat of fusion. We also developed a method to indicate the ice fouling induction time on the cooler surface according to an increase of the AC impedance between the solution and the cooler surface. A mathematical model is presented which correlates the fouling induction time to the degree of supercooling. Factors influencing the ice fouling are studied and discussed in this paper.
机译:对于许多液体食品的预浓缩,冷冻浓缩是蒸发和反渗透的极佳替代方法。但是,即使在较低的过冷度,例如低过冷度下,也不可避免地在较冷的表面上结冰,这被称为结冰。 0.2℃左右。这显着降低了排热速率并增加了冷冻浓缩的成本。在这项研究中,我们发现过冷金属表面上结冰的开始时间可以通过释放熔化潜热引起的表面温度逐步升高来表明。我们还开发了一种方法,用于根据溶液和冷却器表面之间的交流阻抗的增加来指示冷却器表面上的冰垢诱导时间。提出了将结垢诱导时间与过冷度相关的数学模型。本文研究和讨论了影响冰结垢的因素。

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