首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Highly-efficient photocatalytic disinfection of Escherichia coli under visible light using carbon supported Vanadium Tetrasulfide nanocomposites
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Highly-efficient photocatalytic disinfection of Escherichia coli under visible light using carbon supported Vanadium Tetrasulfide nanocomposites

机译:使用碳负载钒硫化物纳米复合材料在可见光下高效的光催化消毒大肠杆菌

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摘要

Reliable and effective water disinfectants are of paramount importance to address mounting health concerns in drinking water. Herein, Vanadium Tetrasulfide (VS4) nanocomposites supported by different carbon materials, including VS4/CP (carbon powder), VS4/rGO (reduced graphene oxides), VS4/CF (carbon fiber), and VS4/CNT (carbon nanotube), were synthesized, comprehensively characterized, and investigated as photocatalytic disinfectants. Among them, the cost-effective and lattice-structure VS4/CP exhibited the best disinfection performance for removing E. coil (Gram-negative) under both simulated visible light and sunlight, with a maximum inactivation rate of 9.7 log at 0.1 g L-1 in 30 min. However, it was not very effective to eliminate S. aureus (Gram-positive bacteria) with a disinfection rate of 1.7 log inactivation in 30 min. Consistent disinfection performance was confirmed with four successive stability tests and over a wide range of E. coil density (6 log to 9 log CFU ml(-1)). The potential disinfection mechanism was studied on a subcellular level, indicating that membrane damage (via mineralization, lipid peroxidation and collapsed membrane potential) and penetration-induced intracellular damage including DNA degradation and decreased ATP level could be the main inactivation principles. Further photochemical investigation suggested that center dot O-2(-), h(+) and e(-) were crucial active species, and an acidic/neutral environment would favor the photocatalytic disinfection. These results have demonstrated effectiveness and potential applications of the developed VS4/CP nanocomposites in water disinfection.
机译:可靠且有效的水消毒剂对解决饮用水中的安装健康问题至关重要。在此,由不同碳材料支撑的钒硫化物(VS4)纳米复合材料,包括VS4 / CP(碳粉),VS4 / RGO(氧化石墨烯),VS4 / CF(碳纤维)和VS4 / CNT(碳纳米管)。合成,综合征,并被研究为光催化消毒剂。其中,经济效益和晶格结构VS4 / CP在模拟可见光和阳光下展示了最佳消毒性能,以便在模拟的可见光和阳光下去除E.线圈(革兰阴性),最大灭活速率为9.7 log 1在30分钟内。然而,在30分钟内消除含有1.7对数灭活的消毒速率并不是很有效的。用四个连续的稳定性测试和众所周度的E.线圈密度(6 log到9 log cfu ml(-1))确认一致的消毒性能。研究了亚细胞水平的潜在消毒机制,表明膜损伤(通过矿化,脂质过氧化和塌陷的膜电位)和渗透诱导的细胞内损伤,包括DNA降解和降低的ATP水平可能是主要的灭活原理。进一步的光化学研究表明,中心点O-2( - ),H(+)和e( - )是至关重要的活性物种,酸性/中性环境将有利于光催化消毒。这些结果证明了发育的VS4 / CP纳米复合材料在水消毒中的有效性和潜在应用。

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