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首页> 外文期刊>The Science of the Total Environment >Combining hydrological investigations and radium isotopes to understand the environmental effect of groundwater discharge to a typical urbanized estuary in China
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Combining hydrological investigations and radium isotopes to understand the environmental effect of groundwater discharge to a typical urbanized estuary in China

机译:结合水文调查和镭同位素了解中国典型城市化河口地下水排放的环境影响

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Pollution of urbanized rivers with excess nutrients due to groundwater discharge is an increasing environmental concern worldwide. Dan'ao river, a typical urbanized river in the Guangdong-Hong Kong-Macao Greater Bay Area, is experiencing heavy water pollution. However, the groundwater-derived nutrient loads had not yet been thoroughly quantified. In order to quantify the contribution of groundwater-derived nutrient inputs, we combined the methods of hydrological investigations and radium isotopes. Groundwater and river water samples were collected from the river upstream to the estuary for the analyses of radium quartets and nutrients including DIN, DIP and DSi. The results showed that the radium activities in both surface water and groundwater decreased from the estuary to the upstream. The groundwater discharge rate was estimated by the radium mass balance model using short-lived radium isotopes (Ra-223 and Ra-224). The estimated groundwater discharge rate ranged from 1.99 x 10(5) to 6.67 x 10(5) m(3) d(-1), comparable to the upstream river discharge rate of 4.23 x 10(5) m(3) d(-1). The groundwater-derived nutrient fluxes were 165.66-554.98 mmol m(-2) d(-1) for DIN, 2.47-8.26 mmol m(-2) d(-1) for DIP and 63.73-213.49 mmol m(-2) d(-1) for DSi, respectively. They contributed 19% similar to 44% DIN, 16%similar to 39% DIP, and 31%similar to 60% DSi of all the nutrient inputs into the Dan'ao River, respectively. In addition, the nutrient inputs by groundwater discharge has an average DIN:DIP ratio of as high as 190, which is able to potentially affect the riverine and marine nutrient structures. These findings may provide useful information for designing control strategies for reducing massive nutrient inputs to Dan'ao River in the future. (c) 2019 Elsevier B.V. All rights reserved.
机译:由于地下水的排放,营养过剩的城市化河流受到了越来越多的环境关注。丹澳河是粤港澳大湾区典型的城市化河流,水质受到严重污染。但是,地下水来源的养分含量尚未完全量化。为了量化地下水来源的养分投入的贡献,我们结合了水文调查和镭同位素的方法。从上游河口到河口收集了地下水和河水样品,用于分析镭四重奏和包括DIN,DIP和DSi在内的养分。结果表明,从河口到上游,地表水和地下水中的镭活性均下降。地下水排放速率是通过使用短寿命镭同位素(Ra-223和Ra-224)的镭质量平衡模型估算的。估计的地下水排放量为1.99 x 10(5)至6.67 x 10(5)m(3)d(-1),与上游河流的排放量4.23 x 10(5)m(3)d( -1)。地下水的养分通量对于DIN是165.66-554.98 mmol m(-2)d(-1),对于DIP是2.47-8.26 mmol m(-2)d(-1)和63.73-213.49 mmol m(-2) DSi分别为d(-1)。在贡献给丹all河的所有养分中,它们分别贡献了19%接近44%DIN,16%接近39%DIP和31%接近60%DSi。此外,地下水排放的养分输入平均DIN:DIP比高达190,这有可能影响河流和海洋养分结构。这些发现可能为设计控制策略以减少将来向丹ao河的大量养分投入提供有用的信息。 (c)2019 Elsevier B.V.保留所有权利。

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