Abstract Impacts of the Changjiang diluted water on sinking processes of particulate organic matters in the East China Sea
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Impacts of the Changjiang diluted water on sinking processes of particulate organic matters in the East China Sea

机译:长江稀释水对东海微粒有机物沉降过程的影响

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AbstractIntensive surveys with repeated CTD and microstructure turbulent observations, water and sediments sampling as well as onboard incubation and sediment trap experiments were conducted to reveal the nitrogen budget in the center of the East China Sea (ECS) during July 2010 and 2011. Low salinity water (Changjiang Diluted Water, CDW) covered the study area in 2010, but not in 2011. Higher chlorophylla(chl.a) concentration, primary productivity, and downward particle flux in the upper layer were observed in 2010 than those in 2011. Existence of the CDW resulted in a steep pycnocline and an associated subsurface chl.amaximum (SCM) layer directly beneath the CDW. From chemical analyses of particulate carbon and nitrogen contents and isotope ratios, it became apparent that the particles sunk out the euphotic zone in 2010 was primarily originated in the CDW layer and secondly in the SCM layer. Whereas, in 2011, sinking particles were originated in the surface layer but a part of them were decomposed in the bottom of pycnocline. Our findings indicate that the CDW would supply particles into the deep layer and contribute to the downward transport of materials and the efficiency of biological pump in the ECS.]]>
机译:<![cdata [ 抽象 使用重复的CTD和微观结构湍流观测,水和沉积物采样以及沉积物孵化和沉积物陷阱实验进行了强化调查,以揭示氮预算在2010年7月和2011年7月的东海(ECS)中央:斜体>(CHL。 A )浓度,初级生产率和下层中的下层的粒子通量在2010年比2011年观察到。CDW的存在导致陡峭的脓毒线和相关的地下CHL。 a 最大(scm)图层直接在CDW下面。从颗粒碳和氮含量的化学分析和同位素比中,显而易见的是,颗粒沉入2010年的Euphotic区主要是在CDW层中起源,其次在SCM层中。然而,在2011年,沉没颗粒源于表面层,但其中一部分分解在Pycnocline的底部。我们的研究结果表明,CDW将粒子供应到深层并有助于对ECS的向下传输和生物泵的效率。 ]]>

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