GSTDTAP  > 资源环境科学
DOI10.1029/2019WR026100
Modeling the Fate of Pharmaceuticals in a Fourth-Order River Under Competing Assumptions of Transient Storage
Liu, Y.1; Zarfl, C.2; Basu, N. B.3; Cirpka, O. A.2
2020-03-01
发表期刊WATER RESOURCES RESEARCH
ISSN0043-1397
EISSN1944-7973
出版年2020
卷号56期号:3
文章类型Article
语种英语
国家Germany; Canada
英文摘要

Quantifying the degradation of micropollutants in streams is important for river-water quality management. While biodegradation is believed to be enhanced in transient-storage zones of rivers, it can also occur in the main channel. Photodegradation is restricted to the main channel and surface transient-storage zones. In this study, we propose a transient-storage model framework to address the transport and fate of micropollutants in different domains of a river. We fitted the model to nighttime and daytime measurements of a tracer and four pharmaceuticals in River Steinlach, Germany. We could separate the surface and subsurface fractions of the total transient-storage zone by fitting fluorescein photodegradation at daytime versus conservative nighttime transport. In reactive transport, we tested two model variants, allowing biodegradation in the main channel or restricting it to the transient-storage zones, obtaining similar model performances but different degradation rate coefficients. Carbamazepine is relatively conservative; photodegradation of metoprolol and venlafaxine can be quantitatively attributed to the main channel and surface transient-storage zone; metoprolol, venlafaxine, and sulfamethoxazole undergo biodegradation. We projected a decrease of overall pollutant removal under higher flow conditions, regardless of attributing biodegradation to specific river compartments. Our study indicates that model-based analysis of daytime and nighttime field experiments allows (1) distinguishing photodegradation and biodegradation, (2) reducing equifinality of surface and subsurface transient-storage, and (3) estimating biodegradation in different domains under different assumptions. However, entirely reducing the equifinality of attributing biodegradation to different compartments is hardly possible in lowland rivers with only limited transient storage.


领域资源环境
收录类别SCI-E
WOS记录号WOS:000538000800020
WOS关键词COMBINED SEWER OVERFLOWS ; MONTE-CARLO-SIMULATION ; TRANSFORMATION PRODUCTS ; ORGANIC MICROPOLLUTANTS ; ATTENUATION ; CONTAMINANTS ; TRANSPORT ; EFFLUENT ; SYSTEM ; BIOTRANSFORMATION
WOS类目Environmental Sciences ; Limnology ; Water Resources
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Water Resources
引用统计
被引频次:10[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/280600
专题资源环境科学
作者单位1.Univ Freiburg, Inst Earth & Environm Sci, Freiburg, Germany;
2.Univ Tubingen, Ctr Appl Geosci, Tubingen, Germany;
3.Univ Waterloo, Dept Civil & Environm Engn, Waterloo, ON, Canada
推荐引用方式
GB/T 7714
Liu, Y.,Zarfl, C.,Basu, N. B.,et al. Modeling the Fate of Pharmaceuticals in a Fourth-Order River Under Competing Assumptions of Transient Storage[J]. WATER RESOURCES RESEARCH,2020,56(3).
APA Liu, Y.,Zarfl, C.,Basu, N. B.,&Cirpka, O. A..(2020).Modeling the Fate of Pharmaceuticals in a Fourth-Order River Under Competing Assumptions of Transient Storage.WATER RESOURCES RESEARCH,56(3).
MLA Liu, Y.,et al."Modeling the Fate of Pharmaceuticals in a Fourth-Order River Under Competing Assumptions of Transient Storage".WATER RESOURCES RESEARCH 56.3(2020).
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