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模拟太阳光下 36 种有机微量污染物的直接光降解:与自由水表面构建湿地的比较及化学结构的影响。

Direct photodegradation of 36 organic micropollutants under simulated solar radiation: Comparison with free-water surface constructed wetland and influence of chemical structure.

机构信息

INRAE, UR REVERSAAL, 5 rue de la Doua, CS 20244, F-69625 Villeurbanne, France; INRAE, UR RiverLy, F-69625 Villeurbanne, France.

INRAE, UR RiverLy, F-69625 Villeurbanne, France.

出版信息

J Hazard Mater. 2021 Apr 5;407:124801. doi: 10.1016/j.jhazmat.2020.124801. Epub 2020 Dec 9.

Abstract

Micropollutants such as pharmaceuticals and pesticides are still found in treated municipal effluent and are discharged into the natural environment. Natural direct photodegradation may be one pathway for removing these micropollutants in treatment processes such as free-water surface constructed wetlands (CW). This work was set out to evaluate the half-life (t) of direct photodegradation of 36 micropollutants under controlled conditions of light exposure close to solar radiation. The results allowed to classify the micropollutants into three groups (fast, medium and slow). Seven micropollutants were classified in the fast group with t between 0.05 h and 0.79 h, 24 in the medium group with t between 5.3 h and 49.7 h, and five in the slow group with t between 56 h and 118 h. The t values obtained in laboratory were compared with those from a CW receiving treated wastewater. Correction factors were calculated to adjust the in situ data for the light intensity in laboratory and improved the correspondence especially for the micropollutants of the fast and medium groups. Finally, an innovative method based on statistical tests highlighted the chemical functions characteristic of micropollutants sensitive to photodegradation (OH-C˭O, C˭N-O-, =N-OH, -CH=N, -O-P˭O, -C˭C-) and with low sensitivity (-O-R, -Cl).

摘要

尽管经过处理的城市污水中仍会存在药物和农药等微量污染物,但它们还是会被排放到自然环境中。自然直接光降解可能是处理过程中去除这些微量污染物的一种途径,例如自由水表面人工湿地 (CW)。这项工作旨在评估 36 种微量污染物在接近太阳辐射的受控光照条件下直接光降解的半衰期 (t)。结果将微量污染物分为三组(快速、中速和慢速)。七种微量污染物被归类为快速组,t 值在 0.05 h 至 0.79 h 之间;24 种属于中速组,t 值在 5.3 h 至 49.7 h 之间;五种属于慢速组,t 值在 56 h 至 118 h 之间。实验室获得的 t 值与接收处理废水的 CW 的 t 值进行了比较。计算了校正因子以调整实验室中光强的原位数据,这尤其提高了快速和中速组微量污染物数据的吻合度。最后,基于统计检验的创新方法突出了对光降解敏感的微量污染物的化学功能特征(OH-C˭O、C˭N-O-、=N-OH、-CH=N、-O-P˭O、-C˭C-)和低灵敏度特征(-O-R、-Cl)。

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