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Investigation on concentration characteristics of ozone micro-bubbles fixed in ice and ozone gas released from ice

机译:冰中固定的臭氧微气泡和冰中释放的臭氧气体的浓度特性研究

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摘要

Ice formed from water in which ozone gas is dissolved is promising for the cold storage of foods because of the ozone's sterilization and deodorization capabilities. However, effective dissolution of ozone gas in water and taking ozone gas into ice are not easy. Furthermore, the decomposition rate of the ozone itself is usually very fast, regardless of its phase. Thus, to effectively take ozone gas into ice, the authors have developed ice containing ozone micro-bubbles. In this paper, ice containing ozone micro-bubbles formed by adding surfactant was kept for a desired time at a desired constant temperature without melting of the ice. The concentration of ozone micro-bubbles fixed in ice and the ozone gas concentration released from ice by melting were measured to investigate the ozone decomposition rate due to fixation in ice and the characteristics of the released concentration. Furthermore, the influences of surfactant on both concentrations were examined. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:由溶解有臭氧气体的水形成的冰由于具有杀菌和除臭的能力而有望用于食品的冷藏。然而,将臭氧气体有效地溶解在水中并将臭氧气体带入冰中并不容易。此外,臭氧本身的分解速度通常非常快,而与相位无关。因此,为了有效地将臭氧气体带入冰中,作者开发了含有臭氧微气泡的冰。在本文中,通过添加表面活性剂形成的包含臭氧微气泡的冰在期望的恒定温度下保持期望的时间,而不会融化冰。测量固定在冰中的臭氧微气泡的浓度和通过融化从冰中释放出的臭氧气体浓度,以研究由于固定在冰中而产生的臭氧分解速率及其释放特性。此外,检查了表面活性剂对两种浓度的影响。 (C)2015 Elsevier Ltd和IIR。版权所有。

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