[用双氧水对城市污水处理厂出水进行消毒(作者译)]。

R Poffé, R Vanbrabant, J Houtmeyers, H Verachtert
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摘要

使用浓度在500至50,000 ppm之间的过氧化氢对来自不同污水处理厂的废水进行消毒。当H2O2浓度为5500 ppm,接触时间为2 h时,99%以上的细菌被杀死,包括肠杆菌、总大肠菌群和粪便大肠菌群(图1a, B,C和D)和粪链球菌(图2 B),葡萄球菌和micrococci不敏感,接触的时候2 h不足以杀死99%的这组(图2),高度耐药细菌内孢子(图2 C)。用5%过氧化氢浓度50%的孢子接触时间为2 h后仍存活的影响(图2 D)。5500 ppm过氧化氢2 h的曝光时间就与其他废水进行了研究。结果表明,总计数也减少了90%,有些组减少了99%以上(表1)。过氧化氢酶阳性和阴性微生物之间的减少量没有差异。这表明细菌的过氧化氢酶活性在使用的浓度下对过氧化氢没有特殊的抗性(表2)。尽管一些研究人员的观察表明,由于羟基自由基的形成,金属离子可以增强H2O2的杀菌效果,但添加亚铁离子(5、25和50 ppm)并没有提高H2O2的杀灭活性(表3)。
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[Disinfection of effluents from municipal sewage treatment plants with hydrogen peroxide (author's transl)].

Effluents from different sewage treatment plants were disinfected, using hydrogen peroxide in concentrations varying between 500 and 50,000 ppm. With a concentration of 5,500 ppm H2O2 and a contact time of 2 h more than 99% of bacteria were killed, including enterobacteria, total and fecal coliforms (Fig. 1 A, B, C and D) and fecal streptococci (Fig. 2 B). Staphylococci and micrococci were less sensitive and contact times of 2 h were not sufficient to kill 99% of this group (Fig. 2 A). Highly resistant were bacterial endospores (Fig. 2 C). With a concentration of 5% H2O2 50% of the spores still survived after a contact time of 2 h (Fig. 2 D). The effect of 5,500 ppm H2O2 by an exposure time of 2 h was then studied with other effluents. The results show that total counts were also reduced for 90% and some groups for more than 99% (table 1). There was no difference in reduction between catalase positive and catalase negative micro-organisms, indicating that the catalase activity of the bacteria offered no special resistance towards hydrogen peroxide in the concentrations used (table 2). Although the observations of some investigators have shown that metal ions act to increase the bactericidal effect of H2O2 as a result of formation of hydroxyl radicals, the additions of ferrous ions (5,25 and 50 ppm) did not improve the killing activity of H2O2 (table 3).

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