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水生环境中氧化锌纳米颗粒(ZnO NPs)诱导的亚磷酸盐光转化

Phototransformation of phosphite induced by zinc oxide nanoparticles (ZnO NPs) in aquatic environments.

作者信息

Liu Qiang, Niu Xiaojun, Zhang Dongqing, Ye Xingyao, Tan Peibing, Shu Ting, Lin Zhang

机构信息

School of Environment and Energy, South China University of Technology, Guangzhou, 510006, PR China; School of Environmental Science and Engineering, Guangdong University of Petrochemical Technology, Maoming, 525000, PR China.

School of Environment and Energy, South China University of Technology, Guangzhou, 510006, PR China; School of Environmental Science and Engineering, Guangdong University of Petrochemical Technology, Maoming, 525000, PR China; The Key Lab of Pollution Control and Ecosystem Restoration in Industry Clusters, Ministry of Education, South China University of Technology, Guangzhou Higher Education Mega Centre, Guangzhou, 510006, PR China.

出版信息

Water Res. 2023 Oct 15;245:120571. doi: 10.1016/j.watres.2023.120571. Epub 2023 Sep 1.

Abstract

Phosphite, an essential component in the biogeochemical phosphorus cycle, may make significant contributions to the bioavailable phosphorus pool as well as water eutrophication. However, to date, the potential impacts of coexisting photochemically active substances on the environmental fate and transformation of phosphite in aquatic environments have been sparsely elucidated. In the present study, the effect of zinc oxide nanoparticles (ZnO NPs), a widely distributed photocatalyst in aquatic environments, on phosphite phototransformation under simulated solar irradiation was systematically investigated. The physicochemical characteristics of the pristine and reacted ZnO NPs were thoroughly characterized. The results showed that the presence of ZnO NPs induced the indirect phototransformation of phosphite to phosphate, and the reaction rate increased with increasing ZnO NPs concentration. Through experiments with quenching and trapping free radicals, it was proved that photogenerated reactive oxygen species (ROS), such as hydroxyl radical (•OH), superoxide anion (O), and singlet oxygen (O), made substantial contributions to phosphite phototransformation. In addition, the influencing factors such as initial phosphite concentration, pH, water matrixes (Cl, F, Br, SO, NO, NO, HCO, humic acid (HA) and citric acid (CA)) were investigated. The component of generated precipitates after the phosphite phototransformation induced by ZnO NPs was still dominated by ZnO NPs, while the presence of amorphous Zn(PO) was identified. This work explored ZnO NPs-mediated phosphite phototransformation processes, indicating that nanophotocatalysts released into aquatic environments such as ZnO NPs may function as photosensitizers to play a beneficial role in the transformation of phosphite to phosphate, thereby potentially mitigating the toxicity of phosphite to aquatic organisms while exacerbating eutrophication. The findings of this study provide a novel insight into the comprehensive assessment of the environmental fate, potential ecological risk, and biogeochemical behaviors of phosphite in natural aquatic environments under the condition of combined pollution.

摘要

亚磷酸盐是生物地球化学磷循环的重要组成部分,可能对生物可利用磷库以及水体富营养化有重大贡献。然而,迄今为止,共存的光化学活性物质对亚磷酸盐在水生环境中的环境归宿和转化的潜在影响尚未得到充分阐明。在本研究中,系统地研究了在模拟太阳辐射下,氧化锌纳米颗粒(ZnO NPs)(一种在水生环境中广泛分布的光催化剂)对亚磷酸盐光转化的影响。对原始和反应后的ZnO NPs的物理化学特性进行了全面表征。结果表明,ZnO NPs的存在诱导了亚磷酸盐间接光转化为磷酸盐,且反应速率随ZnO NPs浓度的增加而增加。通过自由基猝灭和捕获实验,证明了光生活性氧(ROS),如羟基自由基(•OH)、超氧阴离子(O)和单线态氧(O),对亚磷酸盐光转化有重要贡献。此外,还研究了初始亚磷酸盐浓度、pH值、水体基质(Cl、F、Br、SO、NO、NO、HCO、腐殖酸(HA)和柠檬酸(CA))等影响因素。ZnO NPs诱导亚磷酸盐光转化后生成沉淀的成分仍以ZnO NPs为主,同时鉴定出无定形的Zn(PO)。这项工作探索了ZnO NPs介导的亚磷酸盐光转化过程,表明释放到水生环境中的纳米光催化剂如ZnO NPs可能作为光敏剂在亚磷酸盐向磷酸盐的转化中发挥有益作用,从而有可能减轻亚磷酸盐对水生生物的毒性,同时加剧富营养化。本研究结果为综合评估复合污染条件下天然水生环境中亚磷酸盐的环境归宿、潜在生态风险和生物地球化学行为提供了新的见解。

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