Soil organic carbon storage in mountain grasslands of the Pyrenees:: effects of climate and topography

被引:127
作者
Garcia-Pausas, Jordi
Casals, Pere
Camarero, Lluis
Huguet, Carme
Sebastia, Maria-Teresa
Thompson, Roy
Romanya, Joan
机构
[1] Ctr Tecnol Forestal Catalunya, Solsona 25280, Spain
[2] Fdn Ctr Estudios Ambientales Mediterraneo, Valencia 46980, Spain
[3] CSIC, Ctr Estudis Avancats Blanes, Blanes 17300, Spain
[4] Netherlands Inst Sea Res, Dept Marine Biochem & Toxicol, Texel, Netherlands
[5] Univ Lleida, Escola Tecn Super Engn Agr, Lleida 25198, Spain
[6] Univ Edinburgh, Grant Inst Geol, Dept Geol & Geophys, Edinburgh EH9 3JW, Midlothian, Scotland
[7] Univ Barcelona, Dept Prod Nat Biol Vegetal & Edafolog, Barcelona 08028, Spain
关键词
climate; mountain grasslands; Pyrenees; soil organic carbon storage; topography;
D O I
10.1007/s10533-007-9071-9
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The prediction of soil C stocks across the landscape has been increasingly studied in many areas of the world. Soil organic C storage in mountain areas is highly heterogeneous, mainly as a result of local-scale variability in the soil environment (topography, stoniness, parent material) and microclimate. The aims of the present study are to estimate soil organic C stocks (SOCS) in mineral soils of high-altitude grasslands of the Pyrenees and determine whether climatic and topographic variables can be used as predictors of SOCS and organic C content in the surface soil horizons of these ecosystems. For that purpose we sampled 35 soil profiles in subalpine and alpine grasslands including a range of altitudes, slopes and aspects. We analysed the soils for stoniness, bulk density, total C, texture, and C-to-N ratio and determined topographical variables. We used georeferenced climatic information for climatic descriptions of the sites. SOCS were highly correlated with soil depth. However, we were not able to predict soil depth by using environmental and topographic variables. In spite of this fact, altitude and aspect explained 41.2% of the SOCS variability while summer temperature and precipitation combined with aspect explained 56.9% of the variability of the organic C content of the surface layer (OC). The SOCS were low at high altitudes, probably as a result of an overall temperature limitation of net primary productivity. Under these conditions, the effect of aspect was small. The highest SOCS occurred at the lowest altitudes for ENE or WNW aspects, showing sharper decreases towards the south than to the north. The harsh climatic conditions and low-plant productivity that occur at the northern slopes reduced SOCS at the highest altitudes. In contrast, southern aspects showed similar organic C content along the altitudinal gradient. The OC variability in the surface soils not explained by climatic or topographic variables was partially related to the characteristics of soil organic matter, which may depend on the plant communities.
引用
收藏
页码:279 / 289
页数:11
相关论文
共 34 条
[1]   Reconstructing air temperature at eleven remote alpine and arctic lakes in Europe from 1781 to 1997 AD [J].
Agustí-Panareda, A ;
Thompson, R .
JOURNAL OF PALEOLIMNOLOGY, 2002, 28 (01) :7-23
[2]  
Bardgett R, 2005, BIOL SOIL COMMUNITY, DOI DOI 10.1093/ACPROF:OSO/9780198525035.001.0001
[3]   Landscape- and field-scale control of spatial variation of soil properties in Mediterranean montane meadows [J].
Benayas, JMR ;
Sánchez-Colomer, MG ;
Escudero, A .
BIOGEOCHEMISTRY, 2004, 69 (02) :207-225
[4]  
Brooks PD, 1999, HYDROL PROCESS, V13, P2177, DOI 10.1002/(SICI)1099-1085(199910)13:14/15&lt
[5]  
2177::AID-HYP850&gt
[6]  
3.0.CO
[7]  
2-V
[8]   Organic carbon storage in soils of the Basque Country (Spain): the effect of climate, vegetation type and edaphic variables [J].
Ganuza, A ;
Almendros, G .
BIOLOGY AND FERTILITY OF SOILS, 2003, 37 (03) :154-162
[9]   Effects of human disturbance and cryoturbation on soil iron and organic matter distributions and on carbon storage at high elevations in the Cairngorm Mountains, Scotland [J].
Grieve, IC .
GEODERMA, 2000, 95 (1-2) :1-14
[10]   The capacity of soils to preserve organic C and N by their association with clay and silt particles [J].
Hassink, J .
PLANT AND SOIL, 1997, 191 (01) :77-87