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
     机构介绍
     新闻栏目
     人员组成
     人员招聘
     在研项目
     论文与出版物


  论文与出版物
Seasonal responses of soil respiration to elevated CO2and N additionin young subtropical forest ecosystems in southern China
------------------------------------------------------------------------------------------
出 版 社:Ecological Engineering  
发表时间:2013  
台  站:鼎湖山森林生态系统定位研究站  
作  者:邓琦,周国逸等  
点 击 率:583523
------------------------------------------------------------------------------------------
关 键 字(英文):Elevated CO2,Nitrogen deposition,Soil water feedback,Soil respiration,Soil carbon sequestration,Subtropical forest  
摘  要(英文):tAtmospheric carbon dioxide (CO2) concentration and nitrogen (N) deposition may interactively impactsoil respiration in terrestrial ecosystems. However, the effects of elevated CO2and N deposition on soilrespiration are not fully understood especially in subtropical forest ecosystems in southern China whereambient N deposition is high. In this study, we investigated the seasonal responses of soil respiration toelevated CO2and N addition in young subtropical forest ecosystems in southern China using open-topchambers. Two CO2treatment levels (i.e., ambient CO2and 700 mol mol−1) and two N levels (i.e., ambientand 100 kg N ha−1yr−1) were considered. Forty-eight 1–2 years old seedlings (eight seedlings per each of6 species) were planted in each chamber. In the wet season, soil respiration significantly enhanced underelevated CO2and N addition with no interactive effect. There was not significant relationship betweentreatment-enhanced soil respiration and soil moisture in the wet season, suggesting that increases in soilrespiration resulted in large part from treatment-induced increases in tree growth and C inputs. In the dryseason, soil respiration significantly enhanced under elevated CO2, but did not significantly change underN addition. The N-induced change in soil respiration negatively corrected with soil moisture in the dryseason, indicating that decrease in soil moisture under N addition, together with increase in tree growthinteractively resulted in negligible net change in soil respiration. Our results highlighted the seasonalimportance of environmental controls under elevated CO2and N deposition in the assessment of soil Csequestration potential in subtropical forest ecosystems in southern China.  
------------------------------------------------------------------------------------------
邓琦-2013-Ecological Engineering-Seasonal responses of soil respiration to elevated CO2and N addition in young subtropical forest ecosystems in southern China.pdf
相关文章:
Isolation and characterization of microsatellite markers for Primulina tabacum, a critically endangered perennial herb
Trends and challenges in soil research 2009: linking global climate change to local long-term forest productivity
13C abundance, water-soluble and microbial biomass carbon as potential indicators of soil organic carbon dynamics in subtropical forests at different successional stages and subject to different nitrogen loads
A comparison of CO2 fluxes via eddy covariance measurements with model predictions in a dominant subtropical forest ecosystem
Soil respiration associated with forest succession in subtropical forests in Dinghushan Biosphere Reserve
Responses of soil respiration to elevated carbon dioxide and nitrogen addition in young subtropical forest ecosystems in China
Responses of soil respiration to elevated carbon dioxide and nitrogen addition in subtropical forest ecosystems in China
Homogeneity of d15N in needles of Masson pine (Pinus massoniana L.) was altered by air pollution
Carbon dynamics in subtropical forest soil: effects of atmospheric carbon dioxide enrichment and nitrogen addition
Effects of vegetation restoration and slope positions on soil aggregation and soil carbon accumulation on heavily eroded tropical land of Southern China
相关文章分页:  共 70 页 696 条记录 9 3[61][62][63][64][65][66][67][68][69][70]4 :
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 |