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首页> 外文期刊>Marine Chemistry >Carbonate system and CO_2 degassing fluxes in the inner estuary of Changjiang (Yangtze) River, China
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Carbonate system and CO_2 degassing fluxes in the inner estuary of Changjiang (Yangtze) River, China

机译:长江内河口碳酸盐岩系和CO_2脱气通量

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摘要

We examined the carbonate system, mainly the partial pressure of CO_2 (pCO_2), dissolved inorganic carbon (DIC) and total alkalinity (TAlk) in the Changjiang (Yangtze) River Estuary based on four field surveys conducted in Sep.-Oct. 2005, Dec. 2005, Jan. 2006 and Apr. 2006. Together with our reported pCO_2 data collected in Aug.-Sep. 2003, this study provides, for the first time, a full seasonal coverage with regards to CO_2 outgassing fluxes in this world major river-estuarine system. Surface pCO_2 ranged 650-1440 μatm in the upper reach of the Changjiang River Estuary, 1000-4600 μatm in the Huangpujiang River, an urbanized and major tributary of the Changjiang downstream which was characterized by a very high respiration rate, and 200-1000 μatm in the estuarine mixing zone. Both DIC and TAlk overall behaved conservatively during the estuarine mixing, and the seasonal coverage of these carbonate parameters allowed us to estimate the annual DIC export flux from the Changjiang River as ~ 1.54×10~(12) mol. The highly polluted Huangpujiang River appeared to have a significant impact on DIC, TAlk and pCO_2 in the lower reaches of the inner estuary. CO_2 emission flux from the main stream of the Changjiang Estuary was at a low level of 15.5-34.2 mol m~(-2)yr~(-1). Including the Huangpujiang River and the adjacent Shanghai inland waters, CO_2 degassing flux from the Changjiang Estuary may have represented only 2.0%-4.6% of the DIC exported from the Changjiang River into the East China Sea.
机译:根据9月至10月进行的四次现场调查,我们研究了碳酸盐体系,主要是长江(长江)河口的CO_2分压(pCO_2),溶解性无机碳(DIC)和总碱度(TAlk)。 2005年,2005年12月,2006年1月和2006年4月。以及我们在8月至9月收集的报告的pCO_2数据。 2003年,这项研究首次提供了有关这个世界主要河口系统中的CO_2脱气通量的完整季节覆盖。长江口上游的表面pCO_2范围为650-1440μatm,黄浦江为1000-4600μatm,这是长江下游城市化的主要支流,其呼吸速率非常高,200-1000μatm在河口混合区。在河口混合过程中,DIC和TAlk总体上表现较为保守,这些碳酸盐参数的季节性覆盖使我们能够估算出长江中DIC的年出口通量约为1.54×10〜(12)mol。污染严重的黄浦江似乎对内河下游的DIC,TAlk和pCO_2产生了重大影响。长江口干流的CO_2排放通量较低,为15.5-34.2 mol m〜(-2)yr〜(-1)。包括黄浦江和邻近的上海内陆水域在内,长江口的CO_2脱气通量可能仅占长江向东海出口的DIC的2.0%-4.6%。

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