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首页> 外文期刊>Water Science and Technology >Biofilm control in water by advanced oxidation process (AOP) pre-treatment: Effect of natural organic matter (NOM)
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Biofilm control in water by advanced oxidation process (AOP) pre-treatment: Effect of natural organic matter (NOM)

机译:通过高级氧化工艺(AOP)预处理控制水中的生物膜:天然有机物(NOM)的作用

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摘要

The main goal of this study was to examine the influence of natural organic matter (NOM) on the efficiency of H_2O_2/UV advanced oxidation process (AOP) as a preventive treatment for biofilm control. Pseudomonas aeruginosa PAO1 biofilm-forming bacteria were suspended in water and exposed to various AOP conditions with different NOM concentrations, and compared to natural waters. H_2O_2/ UV prevented biofilm formation: (a) up to 24 h post treatment - when residual H_2O_2 was neutralized; (b) completely (days) - when residual H_2O_2 was maintained. At high NOM concentrations (i.e. 25 mg/L NOM or 12.5 mg/L DOC) an additive biofilm control effect was observed for the combined H2O2/UV system compared to UV irradiation alone, after short biofilm incubation times (<24 h). This effect was H_2O_2 concentration dependent and can be explained by the high organic content of these water samples, whereby an increase in NOM could enhance ~?OH production and promote the formation of additional reactive oxygen species. In addition, maintaining an appropriate ratio of bacterial surviving conc.: residual H_2O_2 conc. post-treatment could prevent bacterial regrowth and biofilm formation.
机译:这项研究的主要目的是研究天然有机物(NOM)对H_2O_2 / UV高级氧化过程(AOP)的效率的影响,作为生物膜控制的预防方法。将铜绿假单胞菌PAO1生物膜形成细菌悬浮在水中,并以不同的NOM浓度暴露于各种AOP条件下,并与天然水进行比较。 H_2O_2 / UV阻止了生物膜的形成:(a)处理后长达24小时-当残留的H_2O_2被中和时; (b)完全(天)-保持残留的H_2O_2。在高NOM浓度(即25 mg / L NOM或12.5 mg / L DOC)下,在短的生物膜温育时间(<24小时)后,与单独的UV辐射相比,观察到了H2O2 / UV组合系统对生物膜的附加控制作用。这种效应与H_2O_2的浓度有关,可以用这些水样品中的高有机物含量来解释,其中NOM的增加可以增强〜OH的产生并促进其他活性氧的形成。另外,保持细菌存活浓度:残留的H_2O_2浓度的适当比例。后处理可防止细菌再生和生物膜形成。

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