Vertical Distribution of Soil Carbon, Nitrogen, and Phosphorus in Typical Chinese Terrestrial Ecosystems

被引:0
作者
CHAI Hua [1 ,2 ]
YU Guirui [1 ]
HE Nianpeng [1 ]
WEN Ding [1 ]
LI Jie [2 ]
FANG Jiangping [2 ]
机构
[1] Key Laboratory of Ecosystem Network Observation and Modeling, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences
[2] Agriculture and Animal Husbandry College of Tibet University
关键词
soil profile; storage; stoichiometry; vertical distribution; China;
D O I
暂无
中图分类号
S153.6 [土壤成分];
学科分类号
0903 ; 090301 ;
摘要
Characterization of the vertical distribution of soil organic carbon(C), nitrogen(N), and phosphorus(P) may improve our ability to accurately estimate soil C, N, and P storage. Based on a database of 21 354 records in 74 long-term monitoring plots from 2004 to 2013 in the Chinese Ecosystem Research Network(CERN), we built fitting functions to quantify the vertical distribution of soil C, N, and P(up to 100 cm depth) in the typical Chinese terrestrial ecosystems. The decrease of soil C, N, and P content with depth can be well fitted with various mathematical functions. The fitting functions differed greatly between artificial(agriculture) and natural(desert, forest, and grassland) ecosystems, and also differed with respect to soil C, N, and P content. In both the artificial and natural ecosystems, the best fitting functions were exponential functions for C, quadratic functions for N, and quadratic functions for P. Furthermore, the stoichiometric ratios of soil C, N, and P were ranked in descending order: grassland > forest > agriculture > desert, and were also associated with climate. This study is the first to build the fitting functions for the profile distribution of soil C, N, and P in China at a national scale. Our findings provide a scientific basis to accurately assess the storage of C, N, and P in soils at a large scale, especially for the integrative analysis of historical data.
引用
收藏
页码:549 / 560
页数:12
相关论文
共 27 条
[1]   湖南典型土壤磷素剖面分布特征及其流失风险 [J].
邱亚群 ;
甘国娟 ;
刘伟 ;
刘妍 ;
侯洪波 ;
李裕元 ;
彭佩钦 .
中国农学通报, 2012, 28 (08) :223-227
[2]   中国气候区划新方案 [J].
郑景云 ;
尹云鹤 ;
李炳元 .
地理学报, 2010, 65 (01) :3-12
[3]   陆地生态系统土壤呼吸、氮矿化对气候变暖的响应 [J].
同小娟 ;
陶波 ;
曹明奎 .
地理科学进展, 2005, (04) :84-96
[4]   高效利用土壤磷素的植物营养学研究 [J].
王庆仁 ;
李继云 ;
李振声 .
生态学报, 1999, (03) :129-133
[5]   The effects of contour hedges and reduced tillage with ridge furrow cultivation on nitrogen and phosphorus losses from sloping arable land [J].
Xia, Lizhong ;
Liu, Guohua ;
Ma, Li ;
Yang, Linzhang ;
Li, Yundong .
JOURNAL OF SOILS AND SEDIMENTS, 2014, 14 (03) :462-470
[6]   Environmental and site factors controlling the vertical distribution and radiocarbon ages of organic carbon in a sandy soil [J].
Hobley, Eleanor ;
Willgoose, Garry R. ;
Frisia, Silvia ;
Jacobsen, Geraldine .
BIOLOGY AND FERTILITY OF SOILS, 2013, 49 (08) :1015-1026
[7]  
Chinese ecosystem research network: Progress and perspectives[J] . Bojie Fu,Shenggong Li,Xiubo Yu,Ping Yang,Guirui Yu,Renguo Feng,Xuliang Zhuang.Ecological Complexity . 2010 (2)
[8]  
Pattern and variation of C:N:P ratios in China’s soils: a synthesis of observational data[J] . Hanqin Tian,Guangsheng Chen,Chi Zhang,Jerry M. Melillo,Charles A. S. Hall.Biogeochemistry . 2010 (1)
[9]   Increased coniferous needle inputs accelerate decomposition of soil carbon in an old-growth forest [J].
Crow, Susan E. ;
Lajtha, Kate ;
Bowden, Richard D. ;
Yano, Yuriko ;
Brant, Justin B. ;
Caldwell, Bruce A. ;
Sulzman, Elizabeth W. .
FOREST ECOLOGY AND MANAGEMENT, 2009, 258 (10) :2224-2232
[10]   Carbon and nitrogen store and storage potential as affected by land-use in a Leymus chinensis grassland of northern China [J].
He, Nianpeng ;
Yu, Qiang ;
Wu, Ling ;
Wang, Yuesi ;
Han, Xingguo .
SOIL BIOLOGY & BIOCHEMISTRY, 2008, 40 (12) :2952-2959