Nitrogen deposition and its spatial pattern in main forest ecosystems along north-south transect of eastern China

被引:0
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作者
Xiaoyun Zhan
Guirui Yu
Nianpeng He
Huajun Fang
Bingrui Jia
Mei Zhou
Chuankuan Wang
Junhui Zhang
Guangdong Zhao
Silong Wang
Yunfen Liu
Junhua Yan
机构
[1] Chinese Academy of Sciences,Synthesis Research Center of Chinese Ecosystem Research Network, Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research
[2] University of Chinese Academy of Sciences,Institute of Botany
[3] Chinese Academy of Sciences,College of Ecology and Environmental Science
[4] Inner Mongolia Agricultural University,College of Forestry
[5] Northeast Forestry University,Institute of Applied Ecology
[6] Chinese Academy of Sciences,Institute of Forest Ecology Environment and Protection
[7] Chinese Academy of Forestry,South China Botany Garden
[8] Chinese Academy of Sciences,undefined
来源
关键词
forest ecosystem; nitrogen deposition; NH; -N; NO; -N; eastern China;
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中图分类号
学科分类号
摘要
A continuous three-year observation (from May 2008 to April 2011) was conducted to characterize the spatial variation of dissolved inorganic nitrogen (DIN) deposition at eight main forest ecosystems along the north-south transect of eastern China (NSTEC). The results show that both throughfall DIN deposition and bulk DIN deposition increase from north to south along the NSTEC. Throughfall DIN deposition varies greatly from 2.7 kg N/(ha·yr) to 33.0 kg N/(ha·yr), with an average of 10.6 kg N/(ha·yr), and bulk DIN deposition ranges from 4.1 kg N/(ha·yr) to 25.4 kg N/(ha·yr), with an average of 9.8 kg N/(ha·yr). NH4+-N is the dominant form of DIN deposition at most sampling sites. Additionally, the spatial variation of DIN deposition is controlled mainly by precipitation. Moreover, in the northern part of the NSTEC, bulk DIN deposition is 17% higher than throughfall DIN deposition, whereas the trend is opposite in the southern part of the NSTEC. The results demonstrate that DIN deposition would likely threaten the forest ecosystems along the NSTEC, compared with the critical loads (CL) of N deposition, and DIN deposition in this region is mostly controlled by agricultural activities rather than industrial activities or transportation.
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页码:137 / 146
页数:9
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