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首页> 外文期刊>Journal of Hydrology >CO2 partial pressure and CO2 degassing in the Daning River of the upper Yangtze River, China
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CO2 partial pressure and CO2 degassing in the Daning River of the upper Yangtze River, China

机译:中国上长江丹宁河的二氧化碳部分压力和二氧化碳脱气

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摘要

Rivers and streams are important agents for global and regional carbon cycle, which represent a nonnegligible carbon source to the atmosphere. However, carbon dioxide (CO2) degassing via water-air interface from inland waters currently has a large uncertainty in estimation. Here we examined the CO2 partial pressure (pCO(2)) and CO2 degassing in the Daning River, a main tributary of the Yangtze in the Three Gorges Reservoir (TGR) region. The riverine pCO(2 )showed obvious spatial and temporal variations on the main stem and its tributaries, ranging from 483,2 +/- 293.9 mu atm (May) to 2183.3 +/- 1309.2 mu atm (August) with an average of 1198.2 +/- 1122.9 mu atm. pCO(2) increased with the intensive agricultural practices and population on the lower reach of the tributary. The daytime average water-air CO2 flux was 329.8 +/- 470.2 mmol/m(2)/d, and yielded a total CO2 efflux approximately 0.12 Tg CO2/y. The results also indicated that carbon loss via atmospheric exchange accounted for 38.8% of riverine dissolved carbon fluxes. There were close relations between pCO(2) and environmental parameters such as total dissolved nitrogen (TDN), total dissolved phosphorus (TDP) and water temperature in the rainy season, but not in the dry season. Our results demonstrated the essential need to highlight the importance of anthropogenic activities on global and regional CO2 outgassing, and it is urgent to underscore the detailed biogeochemical processes in riverine pCO(2), as well as the couplings between pCO(2) and environmental parameters.
机译:河流和溪流是全球和区域碳循环的重要因素,它代表了对大气的非阻碳源。然而,通过来自内陆水域的水 - 空气界面脱气的二氧化碳(CO2)目前在估计中具有很大的不确定性。在这里,我们检查了丹宁河中的二氧化碳部分压力(PCO(2))和CO2脱气,这是三峡库区长江的主要支路(TGR)地区。河流PCO(2)在主干及其支流上表现出明显的空间和时间变化,从483,2 +/- 293.9 mu ATM(5月)到2183.3 +/- 1309.2 mu ATM(8月),平均为1198.2 +/- 1122.9 mu atm。 PCO(2)随着越来越多的支流的集约农业实践和人口增加。白天平均水上电量CO2通量为329.8 +/- 470.2mmol / m(2)/ d,得到总二氧化碳排出量约0.12 Tg CO 2 / Y.结果还表明,通过大气交易所的碳损失占河林溶解碳通量的38.8%。 PCO(2)和环境参数之间存在密切的关系,例如总溶解的氮气(TDN),总溶解的磷(TDP)和水温在雨季,但不在干燥季节。我们的结果表明,强调人类学活动对全球和区域二氧化碳的重要性的重要性,迫切需要强调河流PCO(2)中的详细生物地球化学过程,以及PCO(2)和环境参数之间的联轴器。

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