Hsu Guoo-Shyng Wang, Hsia Chih-Wei, Hsu Shun-Yao
Department of Nutritional Science, Fu Jen Catholic University, Hsinchuang, New Taipei City, Taiwan.
Graduate Institute of Food Science and Technology, National Taiwan University, Taipei, Taiwan.
J Food Drug Anal. 2015 Dec;23(4):735-741. doi: 10.1016/j.jfda.2015.05.002. Epub 2015 Aug 6.
Electrolyzed water is a sustainable disinfectant, which can comply with food safety regulations and is environmentally friendly. We investigated the effects of platinum plating of electrode, electrode size, cell potential, and additional stirring on electrolysis properties of deep ocean water (DOW) and DOW concentration products. We also studied the relationships between quality properties of electrolyzed DOW and their storage stability. Results indicated that concentrating DOW to 1.7 times increased chlorine level in the electrolyzed DOW without affecting electric and current efficiencies of the electrolysis process. Increasing magnesium and potassium levels in DOW decreased chlorine level in the electrolyzed DOW as well as electric and current efficiencies of the electrolysis process. Additional stirring could not increase electrolysis efficiency of small electrolyzer. Large electrode, high electric potential and/or small electrolyzing cell increased chlorine production rate but decreased electric and current efficiencies. High electrolysis intensity decreased storage stability of the electrolyzed seawater and the effects of electrolysis on DOW gradually subsided in storage. DOW has similar electrolysis properties to surface seawater, but its purity and stability are better. Therefore, electrolyzed DOW should have better potential for applications on postharvest cleaning and disinfection of ready-to-eat fresh produce.
电解水是一种可持续的消毒剂,符合食品安全法规且环保。我们研究了电极镀铂、电极尺寸、电池电位以及额外搅拌对深海水(DOW)及其浓缩产物电解性质的影响。我们还研究了电解后的DOW质量特性与其储存稳定性之间的关系。结果表明,将DOW浓缩至1.7倍会增加电解后DOW中的氯含量,而不影响电解过程的电效率和电流效率。DOW中镁和钾含量的增加会降低电解后DOW中的氯含量以及电解过程的电效率和电流效率。额外搅拌无法提高小型电解槽的电解效率。大电极、高电位和/或小电解槽会提高氯的产生速率,但会降低电效率和电流效率。高电解强度会降低电解海水的储存稳定性,且电解对DOW的影响在储存过程中会逐渐减弱。DOW具有与表层海水相似的电解性质,但其纯度和稳定性更好。因此,电解后的DOW在即食新鲜农产品采后清洗和消毒方面应具有更好的应用潜力。