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Ozone Disinfection of Vibrio vulnificus in Shrimp Pond Water

机译:虾池塘水中斑块裂纹的臭氧消毒

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One variety of shrimp, L. Vanamei, often uses brackish water during the operation in the shrimp pond. Chlorination and ultraviolet are usually used for disinfection of brackish water. However, it is ineffective and forms sediment in the water distribution. It can be a negative impact on the water quality cause a contamination on the shrimp, so the farmers might have loss of profit because Vibrio vulnificus causes infection and dead on the shrimp. It affects the safety of consumers and should be minimized. The purpose of this study is to reduce the number of V. vulnificus bacteria in the pond water. The water was put in the storage tanks then pumped to filter out the impurities of the water. Furthermore, the water set the flow rate in 1 LPM, 2 LPM, and 3 LPM. After that, the ozone was injected to the water flow to sterilize the V. vulnificus bacteria. Finally, the water was returned to the original tank. The water from the tank was taken through a valve and analyzed in 0, 3, 7, 12, 18, 24, 30 minutes. The sample was analyzed immediately using a Total Plate Count method to determine the number of V. vulnificus bacteria in the shrimp pond water. The flow rate shows that the longer time of ozone made a lower amount of Vibrio v. bacteria. In 2 LPM water, it shows the optimum results of V. vulnificus, bacteria reduction for 88.1% compared to the flow rate of 1 LPM and 3 LPM with the bacteria reduction of 68,8% and 70.6%. This study shows that the ozone with a flow rate of 2 LPM circulation is the most effective method to help reducing the number of V. vulnificus in brackish water distribution system in the shrimp environment and potentially as a disinfectant.
机译:一个品种的虾,L. Vanamei,往往在虾池操作过程中使用微咸水。氯化和紫外线通常用于微咸水消毒。但是,它是无效的,形式的配水的沉淀物。它可以对水质造成的虾污染造成负面影响,使农民可能有利润的损失,因为创伤弧菌引起的感染虾和死。它会影响消费者的安全,并应尽量减少。这项研究的目的是减少池塘水创伤弧菌的细菌数量。将水放入储存罐,然后抽到过滤掉水中的杂质。此外,水在1 LPM,2 LPM,和3 LPM设置流速。在此之后,臭氧注入水流消毒创伤弧菌的细菌。最后,水返回到原水箱。从罐中的水通过一个阀取出并在0,3,7,12,18,24,30分进行分析。立即用总平板计数法来确定创伤弧菌细菌在虾池塘水数目的样本进行分析。流量显示,臭氧的较长时间由弧菌V的较低量。细菌。在2 LPM水,它显示了创伤弧菌,细菌减少为88.1%,比1个LPM和3 LPM与细菌减少的68,8%和70.6%的流量的最佳结果。这项研究表明,与2 LPM循环的流量臭氧是最有效的方法来帮助减少创伤弧菌的数量,微咸水分布系统虾环境和潜在的消毒剂。

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