首 页 网络介绍 CERN新闻 规章制度 在研项目 论文与出版物 学术动态 生态知识 人员招聘 人员组成 English

    论文与出版物
   SCI论文目录
   SCI论文全文(PDF文件)
   核心期刊论文目录
   出版物目录
   研究报告目录

 核心期刊论文目录
Elevated co2 stimulates net accumulations of carbon and nitrogen in land ecosystems:A meta-analysis
------------------------------------------------------------------------------------------
出 版 社:Ecology  
发表时间:2006  
台  站: 鼎湖山森林生态系统定位研究站  
作  者:Luo Yiqi, Hui Dafeng,Zhang Deqing  
点 击 率:404517
------------------------------------------------------------------------------------------
关 键 字(英文):carbon sequestration; ecosystem development; global change; meta-analysis; nitrogen;stoichiometry.  
摘  要(英文):The capability of terrestrial ecosystems to sequester carbon (C) plays a critical role in regulating future climatic change yet depends on nitrogen (N) availability. To predict long-term ecosystem C storage, it is essential to examine whether soil N becomes progressively limiting as C and N are sequestered in long-lived plant biomass and soil organic matter. A critical parameter to indicate the long-term progressive N limitation (PNL)is net change in ecosystem N content in association with C accumulation in plant and soil pools under elevated CO2. We compiled data from 104 published papers that study C and N dynamics at ambient and elevated CO2. The compiled database contains C contents, N contents, and C:N ratio in various plant and soil pools, and root:shoot ratio. Averaged C and N pool sizes in plant and soil all significantly increase at elevated CO2 in comparison to those at ambient CO2, ranging from a 5% increase in shoot N content to a 32% increase in root C content. The C and N contents in litter pools are consistently higher in elevated than ambient CO2 among all the surveyed studies whereas C and N contents in the other pools increase in some studies and decrease in other studies. The high variability in CO2-induced changes in C and N pool sizes results from diverse responses of various C and N processes to elevated CO2. Averaged C:N ratios are higher by 3% in litter and soil pools and 11% in root and shoot pools at elevated relative to ambient CO2. Elevated CO2 slightly increases root:shoot ratio. The net N accumulation in plant and soil pools at least helps prevent complete down-regulation of, and likely supports, long-term CO2 stimulation of C sequestration. The concomitant C and N accumulations in response to rising atmospheric CO2 may reflect intrinsic nature of ecosystem development as revealed before by studies of succession over hundreds to millions of years.  
------------------------------------------------------------------------------------------
Elevated co2 stimulates net accumulations of carbon and nitrogen in land ecosystems:A meta-analysis.pdf
相关文章:
黄土旱塬冬小麦返青期断根对根冠比、水分利用及产量的影响
土壤水分对返青期断根冬小麦补偿效应的影响
根修剪对黄土旱塬冬小麦根系效率及水分利用效率的影响
黄土塬区麦田蒸散特征
黄土沟壑区小流域土地利用变化及驱动力分析
伤根对谷子水分利用效率的影响
降水要素在黄土塬区的适应性评估
基于3S技术的区域蒸散研究进展
植被类型对黄土丘陵区流域土壤有机碳氮的影响
半干旱区不同作物与苜蓿轮作对土壤水分恢复与肥力消耗的影响
相关文章分页:  共 201 页 2006 条记录 9 3[151][152][153][154][155][156][157][158][159][160]4 :

[关闭窗口]
中国生态系统研究网络 版权所有
| 网络介绍 | 联系方式 | 网站地图 |