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Ozonation by-products issued from the destruction of microorganisms present in wastewaters treated for reuse

机译:从处理过重用的废水中销毁微生物破坏的臭氧化副产品

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This work demonstrates the reaction of ozone on the amino acids comprising the covering layer of resistant micro-organisms. A secondary aim was to check the byproducts generated when ozone was applied to synthetic samples (such as Vibrio choleras NO 01 WFCC-449, Salmonella typhi ATTC-6539, faecal coliforms and Ascaris suum). The ozone was applied at a concentration of 18.4 mgO_3/min at pH 3, for different lengths of time. In the case of bacteria, results showed that, at 8 minutes, the number was reduced to the level of the Official Mexican Standards set for treated water destined for irrigation purposes (1,000 MPN/100 mL). Excellent correlation coefficients (0.95 to 0.99) were obtained for microbial concentrations versus ozone contact time. Destruction times required for 100% removal of the initial bacteria population varied between 2 and 14 minutes, while Ascaris suum required 1 hour. When Gram-negative bacteria die due to the effects of ozone, cellular lysis and the liberation of endotoxins (biodegradable) were observed. The ozonation of amino acids in the shell of Ascaris suum eggs, leads to the formation of aldehydes, such as formaldehyde and acetaldehyde, in low concentrations (0.0003 and 0.0005 μg/mL respectively). These levels are not hazardous to human health.
机译:该工作证明了臭氧对包含抗性微生物覆盖层的氨基酸的反应。二次目的是检查将臭氧应用于合成样品时产生的副产物(例如弧菌Choleras No 01 WFCC-449,Salmonella Typhi Attc-6539,粪鳞类和蛔虫Sum)。在pH3的浓度下施用臭氧,在pH3的浓度下,用于不同的时间长度。在细菌的情况下,结果表明,在8分钟,该数量减少到官方墨西哥标准的水平,用于处理灌溉目的的处理过的水(1,000mPn / 100ml)。获得优异的相关系数(0.95至0.99),用于微生物浓度与臭氧接触时间。 100%去除初始细菌群所需的破坏时间在2至14分钟之间变化,而蛔虫索姆需要1小时。当观察到由于臭氧,细胞裂解和内毒素的释放(可生物降解)的影响而导致的革兰阴性细菌死亡。蛔虫在蛔虫蛋壳中的氨基酸臭氧导致醛形成醛,例如甲醛和乙醛,低浓度(分别为0.0003和0.0005μg/ mL)。这些水平对人类健康没有危害。

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