首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Carbon System Simulation in the Pearl River Estuary, China: Mass Fluxes and Transformations
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Carbon System Simulation in the Pearl River Estuary, China: Mass Fluxes and Transformations

机译:中国珠江河口碳系统仿真:大众助势与转型

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摘要

A carbon cycle model is built to describe the behavior of carbon materials in the Pearl River Estuary (PRE), China. The distributions and transformations of dissolved inorganic carbon (DIC), dissolved organic carbon (DOC), and particulate organic carbon (POC) are simulated in the water column and sediment for the year 2006. The terrestrial carbon input is the dominant factor that determines the seasonal variation of carbon, while physical and biochemical processes contribute to the spatial-temporal circulation of carbon. The simulation results reveal that the PRE acts as a net source for atmospheric CO_2 throughout the year, and it buffers the export of DIC from the river and sediment to the adjacent system via the DIC consumption by primary production. As a consequence of biochemical processes, the PRE exports more organic carbon to the sediment and adjacent marine ecosystems than the amount that it receives from upstream river reaches. POC burial in sediment and refractory DOC export to the adjacent marine ecosystems are the main carbon fixation pathways in the PRE. The total amount of carbon fixation in PRE is estimated 6.92 × 10~(10) mol C year~(-1). Carbon fixation analysis shows that (1) 20.4% of the POC deposited into sediment is fixed through burial, while the remaining continues to participate in the circulation of carbon materials, and (2) the combined effects of river discharge and monsoon dominate the amount and direction of refractory DOC exports.
机译:建立碳循环模型,以描述珠江口(Pre),中国的碳材料的行为。溶解无机碳(DIC),溶解有机碳(DOC)和颗粒状有机碳(POC)的分布和转化在2006年的水柱和沉积物中模拟。地面碳投入是决定的主要因素碳的季节变化,而物理和生化过程有助于碳的空间循环。仿真结果表明,全年预先充当大气CO_2的净来源,并通过初级生产通过DIC消耗缓冲了从河流和沉积物的DIC的出口。作为生化过程的结果,预先对沉积物和相邻海洋生态系统的碳,而不是从上游河到达的量出口。 PoC埋葬沉积物和耐火软化DOC导出到相邻的海洋生态系统是前的主要碳固定途径。预估计前碳固定的总量为6.92×10〜(10)mol C〜(-1)。碳固定分析表明,(1)将沉积物中的20.4%的POC通过埋葬固定,而剩余的仍在继续参与碳材料的循环,(2)河流排放和季风统治金额的综合影响耐火DOC出口的方向。

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