Soil carbon sequestration in sub-Saharan Africa:: A review

被引:128
作者
Vågen, TG
Lal, R
Singh, BR
机构
[1] Norwegian Ctr Soil & Environm Res, Jordforsk, N-1432 As, Norway
[2] Ohio State Univ, Sch Nat Resources, Columbus, OH 43210 USA
[3] Agr Univ Norway, Dept Plant & Environm Sci, N-1432 As, Norway
关键词
soil organic matter; soil degradation; global warming; soil restoration; agroforestry; farming systems; ecoregions; sub-Saharan Africa; carbon sequestration in soil;
D O I
10.1002/ldr.644
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Restoration of degraded soils is a development strategy to reduce desertification, soil erosion and environmental degradation, and alleviate chronic food shortages with great potential in sub-Saharan Africa (SSA). Further, it has the potential to provide terrestrial sinks of carbon (C) and reduce the rate of enrichment of atmospheric CO2. Soil organic carbon (SOC) contents decrease by 0 to 63 per cent following deforestation. There exists a high potential for increasing SOC through establishment of natural or improved fallow systems (agroforestry) with attainable rates of C sequestration in the range of 0.1 to 5.3 Mg C ha(-1) yr(-1). Biomass burning significantly reduces SOC in the upper few centimeters of soil, but has little impact below 10 to 20 cm depth. The timing of burning is also important, and periods with large amounts of biomass available generally have the largest losses of SOC. In cultivated areas, the addition of manure in combination with crop residues and no-till show similar rates of attainable C sequestration (0 to 0.36 Mg C ha(-1) yr(-1)). Attainable rates of SOC sequestration on permanent cropland in SSA under improved cultivation systems (e.g. no-till) range from 0.2 to 1.5 Tg C yr(-1), while attainable rates under fallow systems are 0.4 to 18.5 Tg C yr(-1). Fallow systems generally have the highest potential for SOC sequestration in SSA with rates up to 28.5 Tg C yr(-1). Copyright (c) 2005 John Wiley & Sons, Ltd.
引用
收藏
页码:53 / 71
页数:19
相关论文
共 111 条
[61]   Soil carbon sequestration impacts on global climate change and food security [J].
Lal, R .
SCIENCE, 2004, 304 (5677) :1623-1627
[62]   SOIL-EROSION AND SEDIMENT TRANSPORT RESEARCH IN TROPICAL AFRICA [J].
LAL, R .
HYDROLOGICAL SCIENCES JOURNAL-JOURNAL DES SCIENCES HYDROLOGIQUES, 1985, 30 (02) :239-256
[63]  
Lal R., 1981, Tropical agricultural hydrology, P131
[64]  
Lal R, 2000, ADV SOIL S, P147
[65]  
LOVELAND TR, 2001, GLOBAL LAND COVER CH
[66]   The carbon balance of tropical, temperate and boreal forests [J].
Malhi, Y ;
Baldocchi, DD ;
Jarvis, PG .
PLANT CELL AND ENVIRONMENT, 1999, 22 (06) :715-740
[67]   Spatial carbon, nitrogen and phosphorus budget in a village of the West African savanna - II. Element flows and functioning of a mixed-farming system [J].
Manlay, RJ ;
Ickowicz, A ;
Masse, D ;
Feller, C ;
Richard, D .
AGRICULTURAL SYSTEMS, 2004, 79 (01) :83-107
[68]  
MANLAY RJ, 2000, THESIS ECOLE NATL GE
[69]   Spatial carbon, nitrogen and phosphorus budget of a village in the West African savanna - I. Element pools and structure of a mixed-farming system [J].
Manlay, RLJ ;
Ickowicz, A ;
Masse, D ;
Floret, C ;
Richard, D ;
Feller, C .
AGRICULTURAL SYSTEMS, 2004, 79 (01) :55-81
[70]   Influence of land-use on properties of a ferralitic soil under low external input farming in southeastern Swaziland [J].
Materechera, SA ;
Mkhabela, TS .
SOIL & TILLAGE RESEARCH, 2001, 62 (1-2) :15-25