An Overview of Carbon Sequestration in Agricultural Soils of Latin America and the Caribbean

被引:0
作者
M. E, Jimenez-Castaneda [1 ]
R, Lal [1 ]
F. F. C, Mello [2 ]
K, Witkowski [2 ]
C, St. Martin [2 ]
F, Villarreal [2 ]
机构
[1] CFAES Rattan Lal Carbon Management & Sequestrat Ct, Coll Food Agr & Environm Sci, Sch Environm & Nat Resources, Columbus, OH 43210 USA
[2] Interamer Inst Cooperat Agr IICA, San Jose, Costa Rica
关键词
Soil; agriculture; Latin America and the Caribbean (LAC); soil organic carbon (SOC); mitigation; NITROGEN-USE EFFICIENCY; ORGANIC-MATTER; MICROBIAL BIOMASS; WHEAT PRODUCTIVITY; CLIMATE-CHANGE; IMPACTS; SYSTEMS; DECOMPOSITION; MANAGEMENT; TILLAGE;
D O I
10.1080/07352689.2022.2148923
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
A major challenge in Latin America and the Caribbean (LAC) is to determine how to meet the ever-growing global needs for food while preserving natural ecosystems and contributing to climate change mitigation. In the region, continuing land use is occurring and has caused a significant soil organic carbon (SOC) loss. We estimated the SOC reduction in three representative ecosystems of the region: forests (4.21 petagrams of carbon, Pg C, over 30 years), grasslands (1.86-7.32 Pg C, over different periods) and mangroves (0.36 Pg C over 25 years). Increasing SOC stocks in agricultural lands can help to mitigate the SOC loss due to land use change, but multiple factors influence the dynamics and response of the agricultural production and carbon sequestration. Farmers are pivotal actors that contribute to food production and could maintain SOC stocks; however, incentives or fair compensation must be considered to enable this. Moreover, national, and continental policies are needed for land restoration and sustainable management of soil health as a living entity through adoption of nature-positive practices which enhance soil organic matter (SOM) stocks, increase use-efficiency of inputs, and lead to nutrition-sensitive agriculture.
引用
收藏
页码:391 / 405
页数:15
相关论文
共 106 条
  • [11] Bustamante M. M. C., 2006, Carbon sequestration in soils of Latin America, P285
  • [12] Carbon sequestration in agricultural soils in the Cerrado region of the Brazilian Amazon
    Carvalho, J. L. N.
    Cerri, C. E. P.
    Feigl, B. J.
    Piccolo, M. C.
    Godinho, V. P.
    Cerri, C. C.
    [J]. SOIL & TILLAGE RESEARCH, 2009, 103 (02) : 342 - 349
  • [13] Cassman KG, 2002, AMBIO, V31, P132, DOI 10.1639/0044-7447(2002)031[0132:ANUEAN]2.0.CO
  • [14] 2
  • [15] Predicted soil organic carbon stocks and changes in the Brazilian Amazon between 2000 and 2030
    Cerri, C. E. P.
    Easter, M.
    Paustian, K.
    Killian, K.
    Coleman, K.
    Bernoux, M.
    Falloon, P.
    Powlson, D. S.
    Batjes, N. H.
    Milne, E.
    Cerri, C. C.
    [J]. AGRICULTURE ECOSYSTEMS & ENVIRONMENT, 2007, 122 (01) : 58 - 72
  • [16] CONAFOR, 2022, INV NAC FOR SUEL
  • [17] Cotler Helena, 2016, Terra Latinoam, V34, P125
  • [18] The Microbial Efficiency-Matrix Stabilization (MEMS) framework integrates plant litter decomposition with soil organic matter stabilization: do labile plant inputs form stable soil organic matter?
    Cotrufo, M. Francesca
    Wallenstein, Matthew D.
    Boot, Claudia M.
    Denef, Karolien
    Paul, Eldor
    [J]. GLOBAL CHANGE BIOLOGY, 2013, 19 (04) : 988 - 995
  • [19] Land use patterns and related carbon losses following deforestation in South America
    De Sy, V.
    Herold, M.
    Achard, F.
    Beuchle, R.
    Clevers, J. G. P. W.
    Lindquist, E.
    Verchot, L.
    [J]. ENVIRONMENTAL RESEARCH LETTERS, 2015, 10 (12):
  • [20] Delgado R., 2021, FISCAL POLICY CLIMAT