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太阳光辐照无催化剂过碘酸盐激活用于细菌消毒:性能和机制。

Catalyst-Free Periodate Activation by Solar Irradiation for Bacterial Disinfection: Performance and Mechanisms.

机构信息

The Key Laboratory of Water and Sediment Sciences, Ministry of Education, State Environmental Protection Key Laboratory of All Material Fluxes in River Ecosystems, College of Environmental Sciences and Engineering, Peking University, Beijing 100871, P. R. China.

出版信息

Environ Sci Technol. 2022 Apr 5;56(7):4413-4424. doi: 10.1021/acs.est.1c08268. Epub 2022 Mar 22.

Abstract

Periodate (PI)-based advanced oxidation process has recently attracted great attention in the water treatment processes. In this study, solar irradiation was used for PI activation to disinfect waterborne bacteria. The PI/solar irradiation system could inactivate below the limit of detection (LOD, 10 CFU mL) with initial concentrations of 1 × 10, 1 × 10, and 1 × 10 CFU mL within 20, 40, and 100 min, respectively. O and OH radicals contributed to the bacterial disinfection. These reactive radicals could attack and penetrate the cell membrane, thereby increasing the amount of intracellular reactive oxygen species and destroying the intracellular defense system. The damage of the cell membrane caused the leakage of intracellular K and DNA (that could be eventually degraded). Excellent bacterial disinfection performance in PI/solar irradiation systems was achieved in a wide range of solution pH (3-9), with coexisting humic acid (0.1-10 mg L) and broad solution ionic strengths (15-600 mM). The PI/solar irradiation system could also efficiently inactivate Gram-positive . Moreover, PI activated by natural sunlight irradiation could inactivate 1 × 10 CFU mL viable below the LOD in the river and sea waters with a working volume of 1 L in 40 and 50 min, respectively. Clearly, the PI/solar system could be potentially applied to disinfect bacteria in water.

摘要

过碘酸盐(PI)基高级氧化工艺最近在水处理过程中引起了极大关注。在这项研究中,利用太阳辐射激活 PI 以对水传播细菌进行消毒。PI/太阳辐射系统能够在初始浓度为 1×10、1×10 和 1×10 CFU mL 的情况下,分别在 20、40 和 100 min 内将 以下的浓度灭活至检测限以下(LOD,10 CFU mL)。O 和 OH 自由基有助于细菌消毒。这些活性自由基可以攻击并穿透细胞膜,从而增加细胞内活性氧物质的数量并破坏细胞内防御系统。细胞膜的损伤导致细胞内 K 和 DNA 的泄漏(最终可能被降解)。PI/太阳辐射系统在广泛的溶液 pH 值(3-9)范围内,以及共存的腐殖酸(0.1-10 mg L)和广泛的溶液离子强度(15-600 mM)下,都能实现优异的细菌消毒性能。PI/太阳辐射系统还能有效地灭活革兰氏阳性 。此外,PI 经自然阳光辐射激活后,在 1 L 工作体积的河水和海水中,可分别在 40 和 50 min 内将 1×10 CFU mL 的活 降至检测限以下。显然,PI/太阳系统有可能应用于水中的细菌消毒。

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