Changes in Soil Carbon and Nitrogen after Contrasting Land-use Transitions in Northeastern Costa Rica

被引:1
作者
Jennifer S. Powers
机构
[1] Duke University,Department of Biology
[2] P.O.Box 90338,undefined
[3] Durham,undefined
[4] North Carolina 27708-0338 ,undefined
[5] Current address: Dept. of Ecology & Evolution,undefined
来源
Ecosystems | 2004年 / 7卷
关键词
deforestation; intensification of agriculture; land-use change; soil carbon; soil nitrogen; reforestation; Costa Rica;
D O I
暂无
中图分类号
学科分类号
摘要
Northeastern Costa Rica is a mosaic of primary and secondary forests, tree plantations, pastures, and cash crops. Many studies have quantified the effects of one type of land-use transition (for example, deforestation or reforestation) on soil properties such as organic carbon (C) storage, but few have compared different land-use transitions simultaneously. We can best understand the effects of land-use change on regional and global ecosystem processes by considering all of the land-use transitions that occur in a landscape. In this study, I examined the changes in total soil C and nitrogen (N) pools (to 0.3 m) that have accompanied different land-use transitions in a 140,000-ha region in northeastern Costa Rica. I paired sites that had similar topography and soils but differed in recent land-use history. The following land-use transitions were represented: 12 conversions of primary forests to banana plantations, 15 conversions of pastures to cash crops, and four conversions of pastures to Vochysia guatemalensis tree plantations. The conversion of forests to bananas decreased soil C concentrations and inventories (Mg C ha−1) in the surface soil by 37% and 16.5%, respectively. The conversion of pastures to cash crops reduced soil C concentrations and inventories to the same extent that forest-to-banana cropping did. Furthermore, young Vochysia plantations do not appear to increase soil C storage, at least over the 1st decade. When data from all land-use transitions were pooled, the difference in root biomass and leaf litter pools between land-use pairs explained 50% of the differences in soil C concentrations and 36% of the differences in soil C inventories. Thus, reduced productivity or C inputs to the soil is one mechanism that could explain the losses in soil C pools with land-use change. In this landscape, losses of soil C due to cultivation are rapid, whereas re- accumulation rates are slow. Total soil N pools (0–10 cm) were also reduced after the conversion of forests to banana plantations or the conversion of pastures to crops, despite fertilization of the cropped soils. This suggests that the added N fertilizer is not retained but instead is exported via produce, N gas emissions, and hydrologic processes.
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页码:134 / 146
页数:12
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共 80 条
[1]  
Aguilar R(1988)Effects of cultivation on soils in northern great plains rangeland Soil Sci Soc Am J 52 1081-5
[2]  
Kelly EF(1996)Leaf litter decomposition and mulch performance from mixed and monospecific plantations of native tree species in Costa Rica Agric Ecosyst Environ 58 145-55
[3]  
Heil RD(1992)Resampling methods for computation-intensive data analysis in ecology and evolution Annu Rev Ecol Syst 23 405-47
[4]  
Byard R(1993)Changes in soil carbon inventories following cultivation of previously untilled soils Biogeochemistry 20 161-93
[5]  
Lewis KC(1987)Bioassays of nutrient limitation in a tropical rain forest soil Oecologia 74 370-6
[6]  
Montagnini F(1993)Organic carbon in soils of the world Soil Sci Soc Am J 57 192-4
[7]  
Crowley PH(1995)Amelioration of degraded rain forest soils by plantations of native trees Soil Sci Soc Am J 59 544-9
[8]  
Davidson EA(1994)Growth of native forest species planted on abandoned pasture land in Costa Rica For Ecol Manage 70 159-67
[9]  
Ackerman IL(1959)Increases in the carbon and nitrogen contents of tropical soils under natural fallows J Soil Sci 10 284-99
[10]  
Denslow JS(1997)Structure and floristics of secondary and old-growth forest stands in lowland Costa Rica Plant Ecol 132 107-20