• 首 页
  • 实验室简介
  • 科学研究
    • 实验室定位
    • 研究目标
    • 研究方向
    • 研究项目
    • 研究工作进展
  • 科研队伍
    • 队伍建设
    • 学科组
  • 研究生教育
    • 简介
    • 学科与学位点
    • 研究生导师
    • 在读研究生
    • 毕业研究生
  • 科研成果
    • 获奖
    • 专著
    • 学术论文
    • 专利
  • 联系我们
  • 首页
  • 实验室简介
  • 科学研究
    • 实验室定位
    • 研究目标
    • 研究方向
    • 研究项目
    • 研究工作进展
  • 科研队伍
    • 队伍建设
    • 学科组
  • 研究生教育
    • 简介
    • 学科与学位点
    • 研究生导师
    • 在读研究生
    • 毕业研究生
  • 科研成果
    • 获奖
    • 专著
    • 学术论文
    • 专利
  • 联系我们
  1. 当前位置:首页    新闻动态    最新成果
最新成果

Ecosystem-atmosphere exchange of CO2 in a temperate herbaceous peatland in the Sanjiang Plain of northeast China

来源:

来源:   |  发布时间:2016-06-22   |  【 大  中  小 】

论文题目:

Ecosystem-atmosphere exchange of CO2 in a temperate herbaceous peatland in the Sanjiang Plain of northeast China

英文论文题目:

Ecosystem-atmosphere exchange of CO2 in a temperate herbaceous peatland in the Sanjiang Plain of northeast China 

第一作者:

朱晓艳

英文第一作者:

Zhu, X. Y. 

联系作者:

宋长春

英文联系作者:

Song, C. C.

发表年度:

2015

卷:

75

页码:

16-23

摘要:

Northern peatlands contain a considerable share of the terrestrial carbon pool, which will be affected by future climatic variability. Using the static chamber technique, we investigated ecosystem respiration and soil respiration over two growing seasons (2012 and 2013) in a Carex lasiocarpa-dominated peatland in the Sanjiang Plain in China. We synchronously monitored the environmental factors controlling CO2 fluxes. Ecosystem respiration during these two growing seasons ranged from 33.3 to 506.7mg CO2-Cm (2) h (1). Through step-wise regression, variations in soil temperature at 10 cm depth alone explained 73.7% of the observed variance in log(10)(ER). The mean Q(10) values ranged from 2.1 to 2.9 depending on the choice of depth where soil temperature was measured. The Q(10) value at the 10cm depth (2.9) appears to be a good representation for herbaceous peatland in the Sanjiang Plain when applying field-estimation based Q(10) values to current terrestrial ecosystem models due to the most optimized regression coefficient (63.2%). Soil respiration amounted to 57% of ecosystem respiration and played a major role in peatland carbon balance in our study. Emphasis on ecosystem respiration from temperate peatlands in the Sanjiang Plain will improve our basic understanding of carbon exchange between peatland ecosystem and the atmosphere.

英文摘要:

Northern peatlands contain a considerable share of the terrestrial carbon pool, which will be affected by future climatic variability. Using the static chamber technique, we investigated ecosystem respiration and soil respiration over two growing seasons (2012 and 2013) in a Carex lasiocarpa-dominated peatland in the Sanjiang Plain in China. We synchronously monitored the environmental factors controlling CO2 fluxes. Ecosystem respiration during these two growing seasons ranged from 33.3 to 506.7mg CO2-Cm (2) h (1). Through step-wise regression, variations in soil temperature at 10 cm depth alone explained 73.7% of the observed variance in log(10)(ER). The mean Q(10) values ranged from 2.1 to 2.9 depending on the choice of depth where soil temperature was measured. The Q(10) value at the 10cm depth (2.9) appears to be a good representation for herbaceous peatland in the Sanjiang Plain when applying field-estimation based Q(10) values to current terrestrial ecosystem models due to the most optimized regression coefficient (63.2%). Soil respiration amounted to 57% of ecosystem respiration and played a major role in peatland carbon balance in our study. Emphasis on ecosystem respiration from temperate peatlands in the Sanjiang Plain will improve our basic understanding of carbon exchange between peatland ecosystem and the atmosphere.

刊物名称:

Ecological Engineering

英文刊物名称:

Ecological Engineering


附件下载:

版权所有 © 中国科学院长春净月潭遥感实验站 吉ICP备05002032号-1 吉公网安备22017302000214号
地址:吉林省长春市高新北区盛北大街4888号 邮编:130102
电话:+86 431 85542227  Email:jyrs@iga.ac.cn