化学
水处理
细菌
光热治疗
饮用水净化
微生物学
生物物理学
化学工程
环境工程
纳米技术
材料科学
生物
环境科学
有机化学
遗传学
工程类
作者
Dehua Xia,Qi Chen,Yimu Jiao,Qiyu Lian,Mingzhe Sun,Chun He,Jin Shang,Tianqi Wang
出处
期刊:Water Research
[Elsevier]
日期:2022-04-06
卷期号:217: 118423-118423
被引量:24
标识
DOI:10.1016/j.watres.2022.118423
摘要
Solar disinfection (SODIS) is regarded as an affordable and effective point-of-use (POU) water disinfection treatment urgently needed in rural developing world. This work developed an enhanced SODIS scheme that utilized a novel flower pollen-based catalyst (Te-TRP). The bench-scale experiments demonstrated 100% photothermocatalytic inactivation of approximately 7-log E. coli K-12, Spingopyxis sp. BM1-1, or S. aureus bacterium by Te-TRP within 40-60 min. Moving toward practical device design, we constructed a flow-through reactor and demonstrated the outstanding water disinfection performance of Te-TRP. The in-depth mechanistic study revealed the synergetic effect between photocatalysis and photothermal conversion and identified the bacterial inactivation pathway. 1O2 and ·O2¯ were verified to be the dominant reactive oxygen species involved in the bacterial inactivation. The damage to bacterial cells caused by photothermocatalytic reactions was systematically investigated, demonstrating the cell membrane destruction, the loss of enzyme activity, the increased cell membrane permeability, and the complete inactivation of bacteria without the viable but nonculturable state cells. This work not only affords a facile approach to preparing biomaterial-based catalysts capable of efficient photothermocatalytic bacterial inactivation, but also proposes a prototype of POU water treatment, opening up an avenue for sustainable environmental remediation.
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