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首页> 外文期刊>Environmental Science & Technology >Role of Photodegradation in the Fate of Fluorescent Whitening Agents (FWAs) in Lacustrine Environments
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Role of Photodegradation in the Fate of Fluorescent Whitening Agents (FWAs) in Lacustrine Environments

机译:光降解在湖泊环境中荧光增白剂(FWA)的命运中的作用

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To understand the behavior of fluorescent whitening agents (FWAs) in a lake environment, we measured the quantities of two FWAs, DSBP, and DAS1, in water samples collected monthly from six depths of the water column, in sediment trap sample, and a sediment core sample from Lake Biwa, the largest lake in Japan, and in sewage, effluent, and river water in the lake's catchment We conducted a sunlight exposure experiment and developed a method to estimate the degree of photodegradation by using DSBP/DAS1 ratio in environmental samples. The observed seasonal pattern of the vertical distributions of the FWAs in the water column can be explained by stratification of the water, photodegradation in the euphotic zone, the subsurface loading of river water, and their seasonal changes. The DSBP/DAS1 ratio was much lower in the lake water (0.12-0.52) than in sewage (6.4 ±1.1), indicating intensive photodegradation in rivers and the lake. A mass balance calculation and DSBP/DAS1 ratio demonstrated that ~95% of DSBP and ~55% of DAS1 supplied in sewage were photodegraded in inflowing rivers and the lake, and that sedimentation to the lake bottom is insignificant for DSBP and ~35% for DAS1. More intensive photodegradation of FWAs, especially more photodegradable DSBP, in Lake Biwa than in Greifensee, a lake in Switzerland, was suggested, attributable to the longer residence time of water in and the larger size of Lake Biwa. These results demonstrate that photodegradation is important to the fate of FWAs in lacustrine environments, and that FWAs and the DSBP/DAS1 ratio are useful markers for understanding the role of direct photodegradation in the behavior of water-soluble chemicals in aquatic environments.
机译:为了了解荧光增白剂(FWA)在湖泊环境中的行为,我们测量了从六个水柱深度每月采集的水样,沉积物捕集器样品和沉积物中两个FWA,DSBP和DAS1的量。日本最大湖泊琵琶湖的核心样品以及该湖流域污水,废水和河水中的核心样品我们进行了日光照射实验,并开发了一种方法,该方法通过使用环境样品中的DSBP / DAS1比值来估算光降解程度。观察到的水柱中FWA垂直分布的季节性模式可以通过水分层,富营养区的光降解,河水的地下负荷及其季节变化来解释。湖水中的DSBP / DAS1比值(0.12-0.52)比污水中的DSBP / DAS1比值低得多(6.4±1.1),表明河流和湖泊中的光降解剧烈。质量平衡计算和DSBP / DAS1比值表明,流入的河流和湖泊中,污水中提供的DSBP的〜95%和DAS1的〜55%发生了光降解,DSBP到湖底的沉积微​​不足道,而DSBP / DAS1则为〜35%。 DAS1。建议比瓦湖中的FWA进行更强烈的光降解,尤其是可降解性更高的DSBP,这比瑞士的格赖芬森湖要高,这是由于水在比瓦湖中停留的时间更长,并且比瓦湖的面积更大。这些结果表明,光降解对湖泊环境中的FWA的命运很重要,并且FWA和DSBP / DAS1的比率是了解直接光降解在水生环境中水溶性化学物质行为中的作用的有用标记。

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  • 来源
    《Environmental Science & Technology 》 |2010年第20期| p.7796-7801| 共6页
  • 作者单位

    Laboratory of Organic Geochemistry, Faculty of Agriculture,Tokyo University of Agriculture and Technology, Fuchu,Tokyo 183-8509, Japan;

    rnLake Biwa Environmental Research Institute, Otsu, Shlga 520-0022, Japan;

    rnLaboratory of Organic Geochemistry, Faculty of Agriculture,Tokyo University of Agriculture and Technology, Fuchu,Tokyo 183-8509, Japan;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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