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基于等效单色波长近似的湖泊水间接光化学全球模拟:有色溶解有机物三重态的情况。

Global modeling of lake-water indirect photochemistry based on the equivalent monochromatic wavelength approximation: The case of the triplet states of chromophoric dissolved organic matter.

机构信息

Dipartimento di Chimica, Università di Torino, Via Pietro Giuria 5, 10125 Torino, Italy.

Department of Chemical and Environmental Technology, ESCET, Universidad Rey Juan Carlos, C/ Tulipán s/n, 28933 Móstoles, Madrid, Spain.

出版信息

Water Res. 2023 Aug 1;241:120153. doi: 10.1016/j.watres.2023.120153. Epub 2023 May 31.

Abstract

Chromophoric dissolved organic matter (CDOM) plays key role as photosensitizer in sunlit surface-water environments, and it is deeply involved in the photodegradation of contaminants. It has recently been shown that sunlight absorption by CDOM can be conveniently approximated based on its monochromatic absorption at 560 nm. Here we show that such an approximation allows for the assessment of CDOM photoreactions on a wide global scale and, particularly, in the latitude belt between 60°S and 60°N. Global lake databases are currently incomplete as far as water chemistry is concerned, but estimates of the content of organic matter are available. With such data it is possible to assess global steady-state concentrations of CDOM triplet states (CDOM*), which are predicted to reach particularly high values at Nordic latitudes during summer, due to a combination of high sunlight irradiance and elevated content of organic matter. For the first time to our knowledge, we are able to model an indirect photochemistry process in inland waters around the globe. Implications are discussed for the phototransformation of a contaminant that is mainly degraded by reaction with CDOM* (clofibric acid, lipid regulator metabolite), and for the formation of known products on a wide geographic scale.

摘要

发色溶解有机质(CDOM)作为光敏剂在阳光照射的地表水环境中起着关键作用,并且它深度参与了污染物的光降解。最近已经表明,CDOM 的日光吸收可以根据其在 560nm 处的单色吸收方便地进行近似。在这里,我们表明这种近似可以在广泛的全球范围内评估 CDOM 的光反应,特别是在 60°S 至 60°N 的纬度带内。全球湖泊数据库在水质方面目前并不完整,但有机物质含量的估计值是可用的。有了这些数据,就可以评估 CDOM 三重态(CDOM*)的全球稳态浓度,由于高阳光辐照度和有机物质含量升高的结合,在北欧夏季,CDOM预计会达到特别高的值。据我们所知,这是我们第一次能够在全球范围内模拟内陆水域中的间接光化学反应过程。讨论了对主要通过与 CDOM(氯菲酸,脂质调节剂代谢物)反应而降解的污染物的光转化以及在广泛地理范围内形成已知产物的影响。

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