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国外湿地生态系统碳循环研究进展     被引量:40

Foreign Research Progress on Carbon Cycle in Wetland Ecosystems

文献类型:期刊文献

中文题名:国外湿地生态系统碳循环研究进展

英文题名:Foreign Research Progress on Carbon Cycle in Wetland Ecosystems

作者:栾军伟[1] 崔丽娟[1] 宋洪涛[1] 王义飞[1]

第一作者:栾军伟

机构:[1]中国林业科学研究院湿地研究所

年份:2012

卷号:10

期号:2

起止页码:235-242

中文期刊名:湿地科学

外文期刊名:Wetland Science

收录:CSTPCD;;Scopus;北大核心:【北大核心2011】;CSCD:【CSCD2011_2012】;

基金:林业公益性行业科研专项项目(200904001和201204201);中央级公益性科研院所基本科研业务费专项资金项目(CAFINT2011C09;CAFINT2011K07)资助

语种:中文

中文关键词:湿地;碳源;碳汇;甲烷;气候变化;人类活动

外文关键词:wetland; carbon source; carbon sink; CH4; climate change; human activities

分类号:Q14;X171.1

摘要:在全球变化背景下,面对湿地生态系统是否能维持其碳汇功能等问题,在以下几方面进行了讨论:当前湿地生态系统碳源与碳汇评估中存在的问题;湿地碳源与碳汇功能时空格局变异最新研究进展;影响湿地甲烷排放的因素;湿地碳循环过程对全球变暖的响应模式;湿地生态系统碳循环模拟。认为当前对湿地生态系统碳循环认识的局限性,是导致碳循环成为全球变暖互馈机制中不确定性的主要原因之一。针对中国当前湿地生态系统碳循环研究的特点,提出了中国未来湿地生态系统碳循环研究的焦点问题,即如何在气候变化及人类活动双重影响下,维持中国湿地生态系统现有碳储存库的功能,以及如何提高已退化湿地的固碳功能及潜力。
On the background of hydrology condition was altered by the global warming and human distur- bance, organic carbon which was stored in wetland ecosystems at the history period would be released to the atmosphere extraordinary. Therefore, whether wetland ecosystem could still be a carbon sink received tremen- dous attentions. In this paper, we briefly reviewed on the issues about evaluating the carbon sink/source func- tion of wetland ecosystem; Recent research advances in spatial and temporal variations of carbon sink/source function for wetland ecosystem; Impact factors on CH4 emissions in wetland ecosystems; Response mecha- nism of carbon process to global warming; as well as the modeling on carbon cycles in wetland ecosystems. We consider that the carbon cycles in wetland ecosystems is an important uncertainty source of global warm- ing feedback mechanism, since that the above deficient researches. Considering the research status of carbon cycle in wetland ecosystem in China, we further proposed the key and priority scientific questions which should be focused. It is how to maintain the present carbon stocks of wetland ecosystem and enhance the func- tion and potential of carbon sequestration capacity of degraded wetlands.

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