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首页> 外文期刊>Water Research >Synergistic effect of sulfidated nano zerovalent iron and persulfate on inactivating antibiotic resistant bacteria and antibiotic resistance genes
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Synergistic effect of sulfidated nano zerovalent iron and persulfate on inactivating antibiotic resistant bacteria and antibiotic resistance genes

机译:硫化纳米零铁和过硫酸盐对灭活抗生素抗性细菌和抗生素抗性基因的协同作用

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Antimicrobial resistance continues to be a rising global threat to public health. It is well recognized that wastewater treatment plants are reservoirs of antibiotic resistant bacteria (ARB) and antibiotic resistance genes (ARGs). However, traditional disinfection techniques are not effective to simultaneously remove ARB and ARGs, and the dynamic analysis of ARB inactivation have also been deficient. In this study, sulfidated nano zerovalent iron (S-nZVI) coupled with persulfate (PS) was applied to simultaneously remove both ARB (E. coli K-12 with RP4 plasmid) and ARGs (extra- and intracellular ARGs). S-nZVI/PS completely inactivated ARB (similar to 7.8-log reduction) within 10 min and degraded all extracellular ARGs (similar to 8.0-log reduction) within 5 min. These efficiencies were significantly higher (decay rate constant, k = 0.138 min(-1)) than those achieved individually (S-nZVI: k = 0.076 min(-1); PS: k = 0.008 min(-1)), implying a synergistic effect between S-nZVI and PS against ARB and ARGs. The efficient removal rate of ARB was also supported by confocal microscopy and microfluidics at a single-cell level. The complete inactivation of ARB by S-nZVI/PS was also demonstrated in real drinking water and real wastewater effluent that contained natural organic matter and suspended solids. Regrowth assays showed that the treated ARB was not observed after 72 h or longer incubation, suggesting that ARB was permanently inactivated by radicals such as SO4 center dot- and center dot OH. The destruction of bacterial cells compromised the removal efficiency of the intracellular ARGs, with only similar to 4.0-log reduction after 60 min treatment by S-nZVI/PS. Collectively, our results suggest the feasibility of S-nZVI coupled with PS for simultaneous ARB and ARGs removal in real water matrices. (C) 2021 Elsevier Ltd. All rights reserved.
机译:抗微生物抵抗力持续是对公共卫生的全球威胁的上升。众所周知,废水处理厂是抗生素抗性细菌(arb)和抗生素抗性基因(Args)的储层。然而,传统的消毒技术同时除去arb和args无效,Arb灭活的动态分析也存在缺陷。在该研究中,施加硫化纳米零铁(S-NZVI)与过硫酸盐(PS)偶联,同时除去两种arb(用RP4质粒)和args(超细胞和细胞内args)。 S-NZVI / PS在10分钟内完全灭活arb(类似于7.8-对数减少),并在5分钟内降解所有细胞外arg(类似于8.0-降低)。这些效率显着更高(衰减率常数,k = 0.138 min(-1)),而不是单独达到的那些(s-nzvi:k = 0.076 min(-1); ps:k = 0.008 min(-1)),意味着S-NZVI与PS对ARB和Args之间的协同效应。在单细胞水平下,共聚焦显微镜和微流体也支持arb的有效去除率。在真正的饮用水和真正的废水污水中也证明了ARB的完全失活,含有天然有机物质和悬浮固体。再生测定表明,在孵育72小时或更长的孵育后未观察到处理的arb,表明arb是由SO4中心点和中心点和中心点的基团永久性灭活。细菌细胞的破坏受到细胞内args的去除效率,仅在通过S-NZVI / PS处理60分钟后的4.0-对数减少。统称,我们的结果表明S-NZVI与PS同时结合的可行性,用于同时arb并在真正的水矩阵中移除。 (c)2021 elestvier有限公司保留所有权利。

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