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Estimation of submarine groundwater discharge and associated nutrient fluxes in eastern Laizhou Bay, China using Rn-222

机译:利用Rn-222估算中国莱州湾东部海底地下水排放量及相关养分通量

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摘要

There is increasing evidence that the inputs of nutrients to the Bohai Sea are closely related to submarine groundwater discharge (SGD). In this study, the naturally occurring isotope of radon (Rn-222) was used as a tracer to assess SGD in eastern Laizhou Bay. The Rn-222 concentration during a tidal period was measured continuously and a mass balance model that included atmospheric loss, tidal effects, mixing loss, diffusion from sediments, and SGD was established. The model budget indicated that Rn-222 flux attributed to SGD accounted for 58.3% of the total tracer input to the study area. The time-series of Rn-222 revealed that the SGD flux ranged from 6.64 to 7.21 cm d(-1), with an average of 6.93 cm d(-1), in September 2014. The estimated SGD flux is reasonable compared with those previously estimated in other studies by direct measurement methods, hydrogeological simulation and geochemical tracers. This result, as well as the current understanding of nutrients dissolved in groundwater, confirms the importance of SGD in delivering nutrients to Laizhou Bay and possible impact on marine ecological environment. (C) 2015 Elsevier B.V. All rights reserved.
机译:越来越多的证据表明,向渤海输入的养分与海底地下水排放(SGD)密切相关。在这项研究中,naturally的天然同位素(Rn-222)被用作示踪剂,以评估莱州湾东部的SGD。连续测量潮汐时期的Rn-222浓度,并建立包括大气损失,潮汐效应,混合损失,沉积物扩散和SGD在内的质量平衡模型。模型预算表明,归因于SGD的Rn-222流量占向研究区域输入的示踪剂总量的58.3%。 Rn-222的时间序列显示,2014年9月,SGD通量在6.64至7.21 cm d(-1)之间,平均为6.93 cm d(-1)。与之相比,估算的SGD通量是合理的以前在其他研究中通过直接测量方法,水文地质模拟和地球化学示踪剂估算得出。这一结果以及对目前溶解在地下水中的养分的最新认识,证实了SGD在向莱州湾输送养分以及对海洋生态环境可能产生影响方面的重要性。 (C)2015 Elsevier B.V.保留所有权利。

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