Revisiting IPCC Tier 1 coefficients for soil organic and biomass carbon storage in agroforestry systems

被引:86
作者
Cardinael, Remi [1 ,2 ,3 ]
Umulisa, Viviane [4 ,5 ]
Toudert, Anass [4 ]
Olivier, Alain [6 ]
Bockel, Louis [4 ]
Bernoux, Martial [4 ]
机构
[1] CIRAD, UPR AIDA, F-34398 Montpellier, France
[2] Univ Montpellier, CIRAD, AIDA, Montpellier, France
[3] Univ Zimbabwe, Dept Crop Sci, Box MP167, Harare, Zimbabwe
[4] Food & Agr Org United Nations FAO, Rome, Italy
[5] Univ Bonn, Dept Earth Sci, Bonn, Germany
[6] Univ Laval, Dept Phytol, Quebec City, PQ G1V 0A6, Canada
来源
ENVIRONMENTAL RESEARCH LETTERS | 2018年 / 13卷 / 12期
关键词
carbon sequestration; emission factor; climate change mitigation; land use change; KARITE VITELLARIA-PARADOXA; GREENHOUSE-GAS BALANCE; LAND-USE SYSTEMS; NITROGEN STOCKS; INTERCROPPING SYSTEMS; SILVOPASTORAL SYSTEMS; CHEMICAL-PROPERTIES; MICROBIAL BIOMASS; SOUTHERN ONTARIO; IMPROVED FALLOWS;
D O I
10.1088/1748-9326/aaeb5f
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Agroforestry systems comprise trees and crops, or trees and pastures within the same field. Globally, they cover approximately 1 billion hectares of land and contribute to the livelihoods of over 900 million people. Agroforestry systems have the capacity to sequester large quantities of carbon (C) in both soil and biomass. However, these systems have not yet been fully considered in the approach to C accounting developed by the Intergovernmental Panel on Climate Change, largely due to the high diversity of agroforestry systems and scarcity of relevant data. Our literature review identified a total of 72 scientific, peer-reviewed articles associated with biomass C storage (50) and with soil organic carbon (SOC) (122), containing a total of 542 observations (324 and 218, respectively). Based on a synthesis of the reported observations, we are presenting a set of Tier 1 coefficients for biomass C storage for each of the eight main agroforestry systems identified, including alley cropping, fallows, hedgerows, multistrata, parklands, shaded perennial-crop, silvoarable and silvopastoral systems, disaggregated by climate and region. Using the same agroforestry classification, we are presenting a set of stock change factors (F-LU) and SOC accumulation/loss rates for three main land use changes (LUCs): cropland to agroforestry; forest to agroforestry; and grassland to agroforestry. Globally, the mean SOC stock change factors (+/- confidence intervals) were estimated to be 1.25 +/- 0.04, 0.89 +/- 0.07, and 1.19 +/- 0.10, for the three main LUCs, respectively. However, these average coefficients hide huge disparities across and within different climates, regions, and types of agroforestry systems, highlighting the necessity to adopt the more disaggregated coefficients provided herein. We encourage national governments to synthesize data from local field experiments to generate country-specific factors for more robust estimation of biomass and SOC storage.
引用
收藏
页数:19
相关论文
共 185 条
[1]   Contribution of Acacia senegal to biomass and soil carbon in plantations of varying age in Sudan [J].
Abaker, Wafa E. ;
Berninger, Frank ;
Saiz, Gustavo ;
Braojos, Victor ;
Starr, Mike .
FOREST ECOLOGY AND MANAGEMENT, 2016, 368 :71-80
[2]   Potential of agroforestry techniques in mitigating CO2 emissions in Nigeria:: some preliminary estimates [J].
Adesina, FA ;
Siyanbola, WO ;
Oketola, FA ;
Pelemo, DA ;
Momodu, SA ;
Adegbulugbe, AO ;
Ojo, LO .
GLOBAL ECOLOGY AND BIOGEOGRAPHY, 1999, 8 (02) :163-173
[3]   Soil erosion control and carbon sequestration in shifting cultivated degraded highlands of eastern India: performance of two contour hedgerow systems [J].
Adhikary, Partha Pratim ;
Hombegowda, H. C. ;
Barman, D. ;
Jakhar, P. ;
Madhu, M. .
AGROFORESTRY SYSTEMS, 2017, 91 (04) :757-771
[4]   Alley cropping in the moist savanna of West-Africa: I. Restoration and maintenance of soil fertility on 'terre de barre' soils in Benin Republic [J].
Aihou, K ;
Sanginga, N ;
Vanlauwe, B ;
Lyasse, O ;
Diels, J .
AGROFORESTRY SYSTEMS, 1998, 42 (03) :213-227
[5]   Carbon sequestration in tropical agroforestry systems [J].
Albrecht, A ;
Kandji, ST .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2003, 99 (1-3) :15-27
[6]   Soil and water conservation by contour hedging in the humid tropics of Peru [J].
Alegre, JC ;
Rao, MR .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 1996, 57 (01) :17-25
[7]  
Alvarado Jhon, 2013, Colomb. for., V16, P21
[8]   Tree diversity, carbon stocks, and soil nutrients in cocoa-dominated and mixed food crops agroforestry systems compared to natural forest in southeast Ghana [J].
Asase, Alex ;
Tetteh, Daniel A. .
AGROECOLOGY AND SUSTAINABLE FOOD SYSTEMS, 2016, 40 (01) :96-113
[9]   Carbon pool size and stability are affected by trees and grassland cover types within agroforestry systems of western Canada [J].
Baah-Acheamfour, Mark ;
Chang, Scott X. ;
Carlyle, Cameron N. ;
Bork, Edward W. .
AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2015, 213 :105-113
[10]   Growth of widely spaced trees. A case study from young agroforestry plantations in France [J].
Balandier, P ;
Dupraz, C .
AGROFORESTRY SYSTEMS, 1998, 43 (1-3) :151-167