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[河流一氧化碳和甲烷排放综述]

[Review of CO and CH Emissions from Rivers].

作者信息

Wang Xiao-Feng, Yuan Xing-Zhong, Chen Huai, He Yi-Xin, Luo Zhen, Liu Lian, He Zong-Yi

机构信息

College of Geography and Tourism, Chongqing Normal University, Chongqing 401331, China.

Wetland Science Research Center of the Upper Reaches of the Yangtze River, Chongqing Normal University, Chongqing 401331, China.

出版信息

Huan Jing Ke Xue. 2017 Dec 8;38(12):5352-5366. doi: 10.13227/j.hjkx.201701049.

Abstract

Streams and rivers play a major biogeochemical role in the global carbon cycle and act as hot spots for carbon dioxide (CO) and methane (CH) emissions to the atmosphere, excepting their roles of transporting the water and carbon from the terrestrial environment to the ocean. While carbon gases have been of great global concern, systematic reviews are still scarce. Given recent recognition of the pervasiveness of CO and CH in streams and rivers, this study synthesized existing research and discoveries to identify patterns and controls for riverine CO and CH, knowledge gaps, and research opportunities. This study presented a conceptual framework for sources and the fates of CO/CH from streams and rivers and used this framework to understand the dynamic processes of fluvial carbon evasion and potential anthropogenic disturbances. Multiple environmental influences combined with different contributions of endogenous metabolism and terrigenous input, and the CO and CH in streams and rivers showed significant spatial and temporal variability on a global scale, regional scale, and watershed scale, which indicates a substantial challenge for understanding the larger-scale dynamics. For a clearer recognition of how the changing environment and human activities may modify fluvial CO and CH dynamics, this study constructed a system framework of controls on CO and CH production and persistence in streams and rivers. The framework of controls can be viewed in terms of endogenous environmental controls that influence river metabolism (organic matter, temperature, nutrients, pH, and alternative electron acceptors) and external factors, including geomorphic and hydrologic drivers and human activities (agriculture, damming, and urbanization). We point out that the carbon emissions from rivers should be integrated into the terrestrial carbon budget, and in the future, more attention should be given to research on the sources of CO and CH in rivers, the generation and diffusion of CO and CH at different interfaces, the spatiotemporal variability of riverine carbon emissions, and the response of riverine CO and CH dynamics to the changing environment and human activities.

摘要

溪流和河流在全球碳循环中发挥着重要的生物地球化学作用,并且是向大气排放二氧化碳(CO)和甲烷(CH)的热点地区,它们还承担着将陆地环境中的水和碳输送到海洋的作用。尽管碳气体一直是全球关注的焦点,但系统性综述仍然匮乏。鉴于最近人们认识到溪流和河流中普遍存在CO和CH,本研究综合了现有研究和发现,以确定河流CO和CH的模式及控制因素、知识空白和研究机会。本研究提出了一个关于溪流和河流中CO/CH来源与归宿的概念框架,并利用该框架来理解河流碳逃逸的动态过程以及潜在的人为干扰。多种环境影响因素,加上内源性代谢和陆源输入的不同贡献,使得溪流和河流中的CO和CH在全球尺度、区域尺度和流域尺度上呈现出显著的时空变异性,这表明在理解更大尺度的动态变化方面存在重大挑战。为了更清楚地认识不断变化的环境和人类活动如何改变河流CO和CH动态,本研究构建了一个控制河流中CO和CH产生及持续存在的系统框架。该控制框架可以从影响河流代谢的内源性环境控制因素(有机质、温度、养分、pH值和替代电子受体)以及外部因素来考虑,外部因素包括地貌和水文驱动因素以及人类活动(农业、筑坝和城市化)。我们指出,河流的碳排放应纳入陆地碳预算,并且未来应更加关注河流中CO和CH的来源、不同界面处CO和CH的产生与扩散、河流碳排放的时空变异性以及河流CO和CH动态对不断变化的环境和人类活动的响应等方面的研究。

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