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首页> 外文期刊>Fresenius Environmental Bulletin >EFFECT OF HYDROGEN PEROXIDE ON BACILLUS SUBTILIS SPORE REMOVAL IN AN ELECTROPHOTOCATALYTIC SYSTEM
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EFFECT OF HYDROGEN PEROXIDE ON BACILLUS SUBTILIS SPORE REMOVAL IN AN ELECTROPHOTOCATALYTIC SYSTEM

机译:过氧化氢对光催化体系中芽胞杆菌芽孢去除的影响

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Bacillus subtilis spores have been widely used in UV reactor validation as a possible surrogate for protozoa studies. UV light has become one of the most important methods of water disinfection. Hydrogen peroxide has been used as a strong oxidizing agent. The rate of disinfection of hydrogen peroxide is enhanced by UV and ozone. Bacillus subtilis spores are not sensitive to H_2O_2; thus, they have been the most important targets of peroxide sterilization. The goal of this study was to evaluate the potential of an electrophotocatalytic/hydrogen peroxide reactor for spore inactivation by studying this method with Bacillus subtilis spores. Contaminated water in an electrophotocatalytic reactor was prepared by adding 10~2-10~3 spores of B. subtilis to the water. The batch electrophotocatalytic reactor was a 360-ml glass vessel. The characteristics of the electrodes were as follows: An electrode of ZnO nanoparticles immobilized on zinc and a copper electrode. The studied variables were pH (6-8), the number of spore suspensions (10 -103 spores / ml), the light emitting diodes (LED) UV-A lamps (2-4 W), time (5-40 min), layers of zinc oxide nanoparticles (1-3), the concentration of hydrogen peroxide (0.1-1000 mM), and voltage (10-20 V). The findings show that using H_2O_2 in the presence of UV-A irradiation (UV/H_2O_2) leads to an increase in spore removal efficiency. Optimal removal was obtained at pH 7, with a time of electrolysis of 5 minutes, 2 layers of nano ZnO, and a voltage of 10 V. This result suggests that this method is efficient for the enhanced disinfection of water.
机译:枯草芽孢杆菌孢子已广泛用于紫外线反应器验证中,作为原生动物研究的可能替代品。紫外线已成为水消毒的最重要方法之一。过氧化氢已被用作强氧化剂。紫外线和臭氧可提高过氧化氢的消毒速度。枯草芽孢杆菌的孢子对H_2O_2不敏感。因此,它们已成为过氧化物杀菌的最重要目标。这项研究的目的是通过研究枯草芽孢杆菌孢子的方法来评估电光催化/过氧化氢反应器灭活孢子的潜力。通过将枯草芽孢杆菌的10〜2-10〜3个孢子添加到水中来制备电光催化反应器中的污水。间歇式电光催化反应器是360ml玻璃容器。电极的特征如下:固定在锌上的ZnO纳米颗粒电极和铜电极。研究的变量是pH(6-8),孢子悬浮液数(10 -103孢子/ ml),发光二极管(LED)UV-A灯(2-4 W),时间(5-40分钟) ,氧化锌纳米粒子(1-3)层,过氧化氢浓度(0.1-1000 mM)和电压(10-20 V)。研究结果表明,在存在UV-A辐射(UV / H_2O_2)的情况下使用H_2O_2可以提高孢子去除效率。在pH为7的条件下,电解时间为5分钟,两层纳米ZnO,电压为10 V时,可获得最佳去除效果。该结果表明该方法可有效提高水的消毒效率。

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