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Characterizing the impact of Three Gorges Dam on the Changjiang (Yangtze River): A story of nitrogen biogeochemical cycling through the lens of nitrogen stable isotopes

机译:三峡大坝对长江(长江)的影响:通过氮稳定同位素晶状体的氮生物地球化学循环的故事

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摘要

The alterations of nitrogen sources and cycling within the Three Gorges Reservoir (TGR) and downstream the Changjiang were investigated to understand the impacts of the construction of the Three Gorges Dam (TGD) and anthropogenic inputs from the associated watershed. Water samples collected in October 2016 were analyzed for hydrologic parameters, nutrient concentrations, and stable isotopes of nitrate (NO_3~-), ammonium (NH_4~+) and particulate matter. Nitrate dual stable isotope values ranged from +5.8‰ to +7.1‰ and -1.9‰ to +0.4‰ for δ~(15)N and δ~(18)O, respectively. δ~(15)N values in particulate nitrogen (PN) ranged from +0.5‰ to +8.5‰, with slightly lower values before the dam. δ~(15)N-NH_4~+ values ranged between -10.5‰ and +19.4‰, likely reflecting the presence of ammonium assimilation throughout the TGR. The contribution of different nitrogen sources was calculated using a Bayesian mixing model. These sources, including soil organic nitrogen, ammonium fertilizer, and sewage effluent, contributed to elevated DIN concentrations within the TGR (83.2 μM-178.5 μM). The construction of the dam has also likely induced changes in the river environment such as ammonium assimilation in the surface waters and nitrification and/or remineralization within the deep waters of the TGR. Overall, during this investigation period, the TGR acted as a sink of PN (retaining 29%), yet negligibly influenced levels of TDN with ~96.5% of TDN exported to the downstream Changjiang and estuary. It is important to understand the long-term impacts of the TGD on the ecological environment of the Changjiang. This study highlights the influence that anthropogenic nitrogen sources have on the natural biogeochemical cycling within the TGR, showing the urgent need to reduce anthropogenic nitrogen pollution.
机译:调查了三峡库区(TGR)内氮源和骑自行车的改变,致力于彰江的下游,了解三峡坝(TGD)和人为投入从相关流域的建设的影响。分析了2016年10月收集的水样用于水文参数,营养浓度和硝酸盐(NO_3〜 - ),铵(NH_4〜+)和颗粒物质的稳定同位素。分别为δ〜(15)n和δ〜(18)o的硝酸双稳定同位素值范围为+ 5.8℃至+ + 7.1‰和-1.9‰至+0.4。 δ〜(15)颗粒氮(Pn)中的值范围为+ 0.5‰至+ 8.5‰,在坝前略低较低。 Δ〜(15)N-NH_4〜+值在-10.5‰和+ 19.4°之间,可能反映在整个TGR中存在铵同化。使用贝叶斯混合模型计算不同氮源的贡献。这些来源包括土壤有机氮,肥料和污水流出物,导致TGR内的升高浓度(83.2μm-178.5μm)。该坝的构建也可能诱导河流环境中的变化,例如地表水中的铵同化和TGR的深水中的硝化和/或再矿化。总体而言,在这一调查期间,TGR作为PN的水槽(保留29%),但疏忽影响的TDN水平〜96.5%的TDN出口到张江下游和河口。重要的是要了解TGD对长江生态环境的长期影响。本研究突出了人类学氮源对TGR内天然生物地球化学循环的影响,表明迫切需要减少人为氮污染。

著录项

  • 来源
    《Environmental research》 |2021年第4期|110759.1-110759.11|共11页
  • 作者单位

    Frontiers Science Center for Deep Ocean Multispheres and Earth System Key Laboratory of Marine Chemistry Theory and Technology Ministry of Education Ocean University of China Qingdao 266100 China Laboratory for Marine Ecology and Environmental Science Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 China MIT-WHOI Joint Program in Oceanography/Applied Ocean Science & Engineering Cambridge and Woods Hole MA USA;

    Frontiers Science Center for Deep Ocean Multispheres and Earth System Key Laboratory of Marine Chemistry Theory and Technology Ministry of Education Ocean University of China Qingdao 266100 China Laboratory for Marine Ecology and Environmental Science Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 China;

    Frontiers Science Center for Deep Ocean Multispheres and Earth System Key Laboratory of Marine Chemistry Theory and Technology Ministry of Education Ocean University of China Qingdao 266100 China Laboratory for Marine Ecology and Environmental Science Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 China;

    Frontiers Science Center for Deep Ocean Multispheres and Earth System Key Laboratory of Marine Chemistry Theory and Technology Ministry of Education Ocean University of China Qingdao 266100 China Laboratory for Marine Ecology and Environmental Science Qingdao National Laboratory for Marine Science and Technology Qingdao 266237 China;

    Bureau of Hydrology Changjiang Water Resources Commission Wuhan 430010 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nitrogen; Stable isotope; Biogeochemistry; Three Gorges Dam; Changjiang;

    机译:氮;稳定同位素;生物地球化学;三峡大坝;长江;
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