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Synergistic Effect of Atmospheric-pressure Plasma and TiO2 Photocatalysis on Inactivation of Escherichia coli Cells in Aqueous Media

机译:大气压等离子体和TiO2光催化对水性介质中大肠杆菌细胞失活的协同作用

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摘要

Atmospheric-pressure plasma and TiO2 photocatalysis have been widely investigated separately for the management and reduction of microorganisms in aqueous solutions. In this paper, the two methods were combined in order to achieve a more profound understanding of their interactions in disinfection of water contaminated by Escherichia coli. Under water discharges carried out by microplasma jet arrays can result in a rapid inactivation of E. coli cells. The inactivation efficiency is largely dependent on the feed gases used, the plasma treatment time, and the discharge power. Compared to atmospheric-pressure N2, He and air microplasma arrays, O2 microplasma had the highest activity against E. coli cells in aqueous solution, and showed >99.9% bacterial inactivation efficiency within 4 min. Addition of TiO2 photocatalytic film to the plasma discharge reactor significantly enhanced the inactivation efficiency of the O2 microplasma system, decreasing the time required to achieve 99.9% killing of E. coli cells to 1 min. This may be attributed to the enhancement of ROS generation due to high catalytic activity and stability of the TiO2 photocatalyst in the combined plasma-TiO2 systems. Present work demonstrated the synergistic effect of the two agents, which can be correlated in order to maximize treatment efficiency.
机译:为了管理和减少水溶液中的微生物,分别对大气压等离子体和TiO2光催化进行了广泛研究。在本文中,将这两种方法结合起来可以更深刻地了解它们在大肠杆菌污染水消毒中的相互作用。在水下,由微浆喷射阵列进行的排水会导致大肠杆菌细胞快速失活。失活效率在很大程度上取决于所用的进料气,等离子处理时间和放电功率。与大气压的N2,He和空气微浆阵列相比,O2微浆在水溶液中对大肠杆菌细胞的活性最高,并且在4min内显示> 99.9%的细菌灭活效率。向等离子体放电反应器中添加TiO2光催化膜可显着提高O2微等离子体系统的灭活效率,从而将杀死99.9%的大肠杆菌细胞所需的时间减少到1分钟。这可以归因于在组合的等离子体-TiO 2系统中由于高催化活性和TiO 2光催化剂的稳定性而提高了ROS的产生。目前的工作证明了两种药物的协同作用,可以将它们相互关联以最大化治疗效率。

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