• 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

Spatiotemporal change of aboveground biomass and its response to climate change in marshes of the Tibetan Plateau

来源:

来源:   |  发布时间:2021-10-11   |  【 大  中  小 】

论文题目:

Spatiotemporal change of aboveground biomass and its response to climate change in marshes of the Tibetan Plateau

英文论文题目:

Spatiotemporal change of aboveground biomass and its response to climate change in marshes of the Tibetan Plateau

第一作者:

王延吉

英文第一作者:

Y. J. Wang

联系作者:

神祥金

英文联系作者:

X. J. Shen

外单位作者单位:

 

英文外单位作者单位:

 

发表年度:

2021

卷:

102

期:

 

页码:

 

摘要:

 

英文摘要:

The Tibetan Plateau has a large area of marshes which play a crucial part in the global carbon cycle. The vegetation aboveground biomass (AGB) is a critical indicator of carbon storage of marsh ecosystems. Due to the limitations of field investigation, the spatiotemporal variation of AGB and its influencing factors of the Tibetan Plateau marshes remain unclear. By using the normalized difference vegetation index (NDVI), climate and measured AGB data, this study investigated the temporal and spatial variation of marsh AGB and its response to climate change in the Tibetan Plateau during 2000-2019. The results showed a good correlation between AGB and annual maximum NDVI (NDVImax), and the AGB can be accurately estimated from a power function equation between marshes biomass and NDVImax (Y = 343.08 x NDVImax0.7363). Based on the function equation, we found that AGB density increased significantly (4.10 gmiddotC/m(2)/decade) from 2000 to 2019 over the Tibetan Plateau, with an average value of 184.71 gmiddotC/m(2). In terms of climate effects, increased precipitation in July could significantly increase marsh AGB, while precipitation in other months has no significant effect on the marsh AGB in the Tibetan Plateau. This study first found an asymmetric impact of night and day temperature on AGB in the Tibetan Plateau marshes: warming day-time temperature has no-significant effect on marsh AGB, while night-time warming can significantly increase the AGB of marshes. Considering the background of global asymmetric warming in nighttime and daytime, more attention should be paid to the different impacts of day and night temperatures on marsh AGB in the Tibetan Plateau.

刊物名称:

International Journal of Applied Earth Observation and Geoinformation

英文刊物名称:

International Journal of Applied Earth Observation and Geoinformation

论文全文:

 

英文论文全文:

 

全文链接:

 

其它备注:

 

英文其它备注:

 

学科:

 

英文学科:

 

影响因子:

 

第一作者所在部门:

 

英文第一作者所在部门:

 

论文出处:

 

英文论文出处:

 

论文类别:

 

英文论文类别:

 

参与作者:

Y. J. Wang, X. J. Shen, M. Jiang, S. Z. Tong and X. G. Lu

英文参与作者:

Y. J. Wang, X. J. Shen, M. Jiang, S. Z. Tong and X. G. Lu


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