首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >The spatiotemporal distribution of dissolved inorganic and organic carbon in the main stem of the Changjiang (Yangtze) River and the effect of the Three Gorges Reservoir
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The spatiotemporal distribution of dissolved inorganic and organic carbon in the main stem of the Changjiang (Yangtze) River and the effect of the Three Gorges Reservoir

机译:长江干流中溶解性无机碳和有机碳的时空分布及三峡水库的影响

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摘要

The Changjiang River supplies huge amounts of fresh water and dissolved and particulate substances to the East China Sea, thereby exerting a great influence on the coastal ecosystem. Meanwhile, the construction of the Three Gorges Reservoir (TGR) has reallocated the annual discharge, likely affecting the transportation of carbon in its various forms. The transport and transformation of carbon in Changjiang River and the effect of the TGR were discussed based on three field campaigns, a 1 year time series investigation, and historical data. Our results indicated the following: (1) Dissolved inorganic carbon (DIC) was derived from the upper stream and was significantly diluted downstream by the low-DIC waters from two large lakes. Dissolved organic carbon (DOC) was a product of anthropogenic input and showed no clear relationship with discharge. particulate organic carbon (POC) within total suspended matter (POC%) was below the global average. (2) The TGR has not measurably affected the transport of DOC downstream of the reservoir dam. However, downstream grain size has decreased and autochthonous processes have increased, resulting in a sharp increase in POC% since reservoir construction. (3) For the period 1997-2010, estimated annual DIC flux was 16.9 Tg yr~(-1). The regulation of river flow by the TGR has decreased the river DIC flux to the East China Sea in the autumn and increased it in the spring. Furthermore, the South-North Water Diversion will reduce the high-DIC water from the upper reach, thus affecting the biogeochemistry of the Changjiang estuary and the ecosystem of the nearby coastal ocean.
机译:长江向东中国海供应大量淡水以及溶解性和颗粒性物质,从而对沿海生态系统产生了巨大影响。同时,三峡水库(TGR)的建设重新分配了年排放量,可能影响各种形式的碳的运输。基于三个野外考察,1年时间序列调查和历史数据,讨论了长江中碳的运输和转化以及TGR的影响。我们的结果表明:(1)溶解的无机碳(DIC)来自上游,并被来自两个大湖的低DIC水在下游显着稀释。溶解有机碳(DOC)是人为输入的产物,与排放没有明显关系。总悬浮物(POC%)中的颗粒有机碳(POC)低于全球平均水平。 (2)TGR并未对水库大坝下游DOC的运输产生可观的影响。然而,自储层建设以来,下游晶粒尺寸减小,自生过程增加,导致POC%急剧增加。 (3)1997年至2010年期间,估计的DIC年通量为16.9 Tg yr〜(-1)。 TGR对河流流量的调节在秋季减少了流入东海的DIC流量,在春季增加了DIC流量。此外,南水北调将减少上游的高DIC水,从而影响长江口的生物地球化学和附近沿海海洋的生态系统。

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