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Photocatalytic removal of Escherichia coli from aquatic solutions using synthesized ZnO nanoparticles: A kinetic study

机译:使用合成的ZnO纳米粒子从水溶液中光催化去除大肠杆菌的动力学研究

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Development of effective and low-cost disinfection technology is needed to address the problems caused by an outbreak of harmful microorganisms. In this work, an effective photocatalytic removal of Gram-negative bacteria Escherichia coli from aqueous solution was reported by using ZnO nanoparticles under UV light irradiation. The effect of various parameters such as solution pH, ZnO dosage, contact time and initial E. coli concentration were investigated. Maximum photocatalytic disinfection was observed at neutral pH because of the reduced photocatalytic activity of ZnO at low and high pH values originated from either acidic/photochemical corrosion of the catalyst and/or surface passivation with Zn(OH)_2. As the ZnO dosage increased, the photocatalytic disappearance of E. coli was continuously enhanced, but was gradually decreased above 2 g/L of ZnO due to the increased blockage of the incident UV light used. The optimum ZnO dosage was determined as 1 g/L. Photocatalytic removal of E. coli decreased as initial E. coli concentration increased. Three kinetic models (zero-, first- and second-order equations) were used to correlate the experimental data and to determine the kinetic parameters.
机译:需要开发有效且低成本的消毒技术来解决由有害微生物爆发引起的问题。在这项工作中,据报道,通过在紫外线照射下使用ZnO纳米颗粒,可以从水溶液中有效地光催化去除革兰氏阴性细菌大肠杆菌。研究了各种参数的影响,例如溶液的pH,ZnO用量,接触时间和大肠杆菌初始浓度。在中性pH下观察到最大的光催化消毒作用,这是因为ZnO在低和高pH值下的光催化活性降低,这是由于催化剂的酸性/光化学腐蚀和/或Zn(OH)_2表面钝化引起的。随着ZnO剂量的增加,大肠杆菌的光催化消失不断增强,但由于所用入射紫外线的阻挡增加,在ZnO超过2 g / L时逐渐减少。最佳ZnO剂量确定为1 g / L。大肠杆菌的光催化去除随着初始大肠杆菌浓度的增加而降低。使用三个动力学模型(零阶,一阶和二阶方程)来关联实验数据并确定动力学参数。

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