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城市雨水渗透系统并非生物杀灭剂的可靠汇:柱实验证据。

Urban storm water infiltration systems are not reliable sinks for biocides: evidence from column experiments.

机构信息

Hydrology, Faculty of Environment and Natural Resources, University of Freiburg, 79098, Freiburg, Germany.

Soil Ecology, Faculty of Environment and Natural Resources, University of Freiburg, 79098, Freiburg, Germany.

出版信息

Sci Rep. 2021 Mar 31;11(1):7242. doi: 10.1038/s41598-021-86387-9.

Abstract

Groundwater quality in urban catchments is endangered by the input of biocides, such as those used in facade paints to suppress algae and fungal growth and washed off by heavy rainfall. Their retention in storm water infiltration systems (SIS) depends, in addition to their molecular properties, on chemical properties and structure of the integrated soil layer. These soil properties change over time and thus possibly also the relevance of preferential flow paths, e.g. due to ongoing biological activity. To investigate the mobility of biocides in SIS, we analyzed the breakthrough of differently adsorbing tracers (bromide, uranine, sulforhodamine B) and commonly used biocides (diuron, terbutryn, octhilinone) in laboratory column experiments of undisturbed soil cores of SIS, covering ages from 3 to 18 years. Despite similar soil texture and chemical soil properties, retention of tracers and biocides differed distinctly between SIS. Tracer and biocide breakthrough ranged from 54% and 5%, to 96% and 54%, respectively. We related the reduced solute retention to preferential transport in macropores as could be confirmed by brilliant blue staining. Our results suggest an increasing risk of groundwater pollution with increasing number of macropores related to biological activity and the age of SIS.

摘要

城市集水区中的地下水质量受到生物杀灭剂输入的威胁,例如用于抑制藻类和真菌生长的外墙涂料中的那些生物杀灭剂,它们会被强降雨冲刷掉。除了它们的分子特性外,它们在雨水渗透系统 (SIS) 中的保留还取决于化学性质和综合土壤层的结构。这些土壤特性随时间而变化,因此可能优先流动路径的相关性也会发生变化,例如由于持续的生物活性。为了研究生物杀灭剂在 SIS 中的迁移性,我们分析了不同吸附示踪剂(溴化物、尿嘧啶、磺基罗丹明 B)和常用生物杀灭剂(敌草隆、特丁津、辛基异噻唑啉酮)在未扰动的 SIS 土壤芯实验室柱实验中的突破情况,涵盖了 3 至 18 年的时间。尽管土壤质地和化学土壤特性相似,但示踪剂和生物杀灭剂在 SIS 之间的保留明显不同。示踪剂和生物杀灭剂的突破范围分别为 54%和 5%至 96%和 54%。我们将溶质保留率的降低与大孔中的优先运输联系起来,这可以通过亮蓝染色来证实。我们的结果表明,随着与生物活性和 SIS 年龄相关的大孔数量的增加,地下水污染的风险也在增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1527/8012575/7b36d2c37962/41598_2021_86387_Fig1_HTML.jpg

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