Inexorable land degradation due to agriculture expansion in South American Pampa

植树造林 植被(病理学) 农业 草原 沉积物 地理 腐蚀 土地退化 农林复合经营 土地利用 土壤退化 水土保持 环境科学 水文学(农业) 生态学 地质学 考古 生物 医学 病理 古生物学 岩土工程
作者
Anthony Foucher,Marcos Tassano,Pierre-Alexis Chaboche,Guillermo Chalar,Mirel Cabrera,Joan González,Pablo Cabral,Anne‐Catherine Simon,M. Agelou,Rafael Ramon,Tales Tiecher,Olivier Evrard
出处
期刊:Nature sustainability [Nature Portfolio]
卷期号:6 (6): 662-670 被引量:52
标识
DOI:10.1038/s41893-023-01074-z
摘要

From 1985 onwards, South America has undergone a major expansion in agriculture at the expense of native vegetation (for example, native Pampa grassland). As an emblematic crop, the surface area cultivated with soybeans has increased by 1,000% between 1990 and 2020 in Uruguay. The environmental consequences of this massive land-use conversion on soil degradation remain poorly documented, although agriculture expansion is projected to continue to increase in the coming years in South America. In this study, sediment cores were collected in reservoirs located downstream of two contrasted agricultural catchments draining the Rio Negro River (Uruguay) to reconstruct the sediment dynamics and the sources of erosion associated with this expansion. Results demonstrated the occurrence of two periods of acceleration of sediment delivery since the 1980s. The first period of acceleration was recorded in the mid-1990s and was related to afforestation programs. The second and larger acceleration phase was recorded after 2000 during the soybean crop expansion. This period was marked by a greater supply of sediment from the native grassland source, highlighting the impact of agriculture expansion at the expense of native vegetation. Conservation measures should therefore be urgently taken to preserve biodiversity and soil functions in this region. The impacts on soil degradation of the massive land-use conversion of South American Pampa grasslands to agriculture are not well documented. This study estimates, over the period 1982–2019, the impacts of such conversion on the sediment cascade and how soil and water resources are affected as a result.
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