DocumentCode
144637
Title
Forest nitrogen deposition of through fall in Linzhi of Tibet, China
Author
Ge Wang ; Lin Han
Author_Institution
Inst. of Plateau Meteorol., China Meteorol. Adm., Chengdu, China
Volume
2
fYear
2014
fDate
26-28 April 2014
Firstpage
877
Lastpage
880
Abstract
The concentration of atmospheric nitrogen (N) deposition increasing significantly is a concern in Global change. Atmospheric nitrogen deposition is increasing interest. Most research on N deposition mainly focuses on sensitive natural ecosystems. Information on N deposition in important ecosystems such as the Qinghai-Tibet Plateau is scarce. Although we might expect less impact form anthropogenic deposition compared with other regions of China, the ecological environment there is fragile. Quantitative evaluation the atmospheric nitrogen deposition of through fall is important pathway to research the N cycling into forest ecosystems, and is a premise to understand feedback mechanism of forest ecological system to atmospheric nitrogen deposition. This work was conducted under a Picea-Abies forest located in the southeast mountain environment comprehensive observation station of Chinese Academy of Sciences in 2012, to study the different forms of nitrogen deposition concentration and deposition calculated in different times in 2012. Annual wet deposition of inorganic nitrogen, NH4+-N and NO3--N in through fall in Picea-Abies forest were 8.58, 6.22 and 2.36 kg N ha-1 yr-1, respectively. NH4+-N was the dominant species in wet deposition, comprising 76.7% of total wet inorganic N deposition. The atmospheric nitrogen deposition has a significant seasonal change. High values of inorganic N concentration in through fall were found in summer and autumn, while lower values were found in spring and winter. NH4+-N (y1) and NO3--N (y2) mineral nitrogen sediment in rainfall have significant positive correlation with the monthly average temperature (oC) (R2=0.41 and R2=0.73, p<;0.001), and NO3--N (y2) has significant positive correlation with the monthly averag- rainfall(x, unit: mm), y2 = 0.0006x - 0.0023(R2=0.50, p<;0.01).
Keywords
atmospheric composition; China; N cycling; Qinghai-Tibet plateau; atmospheric nitrogen concentration; atmospheric nitrogen deposition; global change; natural ecosystems; quantitative evaluation; through fall; Correlation; Ecosystems; Meteorology; Minerals; Nitrogen; Sediments; Soil; Southeast Qinghai-Tibet Plateau; atmospheric nitrogen deposition; through fall; wet deposition;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Science, Electronics and Electrical Engineering (ISEEE), 2014 International Conference on
Conference_Location
Sapporo
Print_ISBN
978-1-4799-3196-5
Type
conf
DOI
10.1109/InfoSEEE.2014.6947793
Filename
6947793
Link To Document