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Total organic carbon fluxes of the Red River system (Vietnam)

机译:红河系统总有机碳通量(越南)

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Riverine transport of organic carbon from terrestrial ecosystems to the oceans plays an important role in the global carbon cycle. The Red River is located in Southeast Asia where river discharge, sediment loads and fluxes of elements (carbon, nitrogen and phosphorus) associated with suspended solids have been dramatically altered over past decades as a result of reservoir impoundment and land use, population, and climate change. Dissolved organic carbon (DOC) and particulate organic carbon (POC) concentrations were measured monthly at four stations of the Red River system from January 2008 to December 2010. The results reveal that POC changed synchronically with total suspended solids (TSS) concentration and with the river discharge, whereas no clear trend was observed for DOC concentration. The mean value of total organic carbon (TOC = DOC + POC) flux in the delta of the Red River was 31.5 x 10(13) +/- 4.0 x 10(13) MgC.yr (1) (range 27.9-35.8 x 10(13) MgC.yr (1) which leads to a specific TOC flux of 2012 +/- 255 kgC.km(-2).yr(-1) during this 2008-2010 period. About 80% of the TOC flux was transferred to the estuary during the rainy season as a consequence of the higher river water discharge. The high mean value of the POC:Chl-a ratio (1585 +/- 870 mgC.mgChl-a(-1)) and the moderate C:N ratio (7.3 +/- 0.1) in the water column system suggest that organic carbon in the Red River system is mainly derived from erosion and soil leaching in the basin. The effect of two new dam impoundments in the Red River was also observable with lower TOC fluxes in 2010 compared with 2008. Copyright (C) 2017 John Wiley & Sons, Ltd.
机译:河流运输来自陆地生态系统到海洋的有机碳在全球碳循环中发挥着重要作用。红河位于东南亚,河流放电,沉积物负荷和元素(碳,氮和磷的势态,所述元素(碳,氮气和磷)由于水库蓄水和土地利用,人口和气候而导致过去数十年来大大改变了过去数十年改变。在2008年1月至2010年12月,在红河系统的四个站点测量溶解的有机碳(DOC)和颗粒状有机碳(POC)浓度。结果表明,POC与总悬浮固体(TSS)浓度同步地变化,河流出院,而DOC集中则没有观察到明确的趋势。红河三角洲总有机碳(TOC = DOC + POC)通量的平均值为31.5×10(13)+/- 4.0×10(13)MgC.YR(1)(范围27.9-35.8 x 10(13)MgC.yr(1),其在2008 - 2010年期间导致2012 +/- 255 kgc.km(-2)。由于河流水排放较高的后果,在雨季转移到河口。POC的高平均值:CHL-A比率(1585 +/- 870 mgc.mgchl-a(-1))和中等C:n比例(7.3 +/- 0.1)水柱系统表明红河系统中的有机碳主要来自盆地中的侵蚀和土壤浸出。两个新大坝蓄水在红河中也是与2008年相比,2010年较低的TOC助焊剂可观察到。版权所有(c)2017年John Wiley&Sons,Ltd。

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