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:403816
------------------------------------------------------------------------------------------
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:
The combination of localized phosphorus and water supply indicates a high potential for savings of irrigation water and phosphorus fertilizer.
Ecological Footprint Analysis Applied to a Coal-Consumption County in China
Higher species diversity occurs in more fertile habitats without fertilizer disturbance in an alpine natural grassland community.
Soil-hydrological properties response to grazing exclusion in a steppe grassland of the Loess Plateau.
Effects of time-since-fire on vegetation composition and structures in semi-arid perennial grassland on the Loess Plateau, China.
A new framework for multi-site weather generator: a two-stage model combining a parametric method with a distribution-free shuffle procedure.
Brissette F, Chen J. Assessing the applicability of six precipitation probability distribution models on the Loess Plateau of China.
Aggregate-Associated Carbon and Nitrogen Affected by Residue Placement, Crop Species, and Nitrogen Fertilization
Soil Carbon and Nitrogen Fractions and Crop Yields Affected by Residue Placement and Crop Types
Net Global Warming Potential and Greenhouse Gas Intensity Influenced by Irrigation, Tillage, Crop Rotation, and Nitrogen Fertilization
相关文章分页:  共 201 页 2006 条记录 9 3[191][192][193][194][195][196][197][198][199][200]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 |