Effect of Integrated Soil and Water Conservation Practices on Vegetation Cover Change and Soil Loss Reduction in Southern Ethiopia

Dessale Wasie, F. Yimer, S. Alem
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引用次数: 2

Abstract

Soil erosion is a major challenge in sustaining agricultural production. Area closure with tree planting and physical conservation measures, implemented by various land rehabilitation programs is one of the best options to address the soil erosion problem. This study was conducted to assess the effect of integrated soil and water conservation (SWC) practices on woody vegetation rehabilitation and soil erosion reduction in Hawassa Zuriya Woreda, Southern Ethiopia. Vegetation cover type classification and delineation were completed for each land management category (closure area with SWC, closure area without SWC and open grazing area) in the field. RUSLE model integrated with a GIS environment was used to estimate the annual soil losses. Results showed that SWC practices were increased forest, shrub and grass coverage, and reduced bare land surface coverage. The average C (p=0.02) and P values (p=0.04), and annual soil erosion rate were significantly lower in closure with SWC (p=0.0001) compared to the value without SWC and open grazing land. Thus, the average annual soil erosion rate was reduced below a tolerable (< 1 t/ha/yr.) level by SWC practices. The overall results confirmed that integrated soil and water conservation practices reduced soil erosion rates and improved woody species diversity. Therefore, area closure integrated with SWC practices is the best option to improve the biophysical condition of degraded lands.
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水土保持综合措施对埃塞俄比亚南部植被覆盖变化和水土流失的影响
土壤侵蚀是维持农业生产的主要挑战。通过各种土地恢复计划实施的植树和自然保护措施是解决土壤侵蚀问题的最佳选择之一。本研究旨在评估综合水土保持(SWC)措施对埃塞俄比亚南部Hawassa Zuriya worreda地区木本植被恢复和土壤侵蚀的影响。完成了野外各土地管理类别(有SWC封育区、无SWC封育区和露天牧区)的植被覆盖类型划分和圈定。采用RUSLE模型结合GIS环境估算年土壤流失量。结果表明:SWC增加了森林、灌木和草地的盖度,降低了裸地表面盖度;封育草地的平均C值(p=0.02)和p值(p=0.04)以及年土壤侵蚀速率(p=0.0001)显著低于未封育草地和开放草地。因此,SWC实践将年平均土壤侵蚀率降低到可容忍的水平(< 1 t/ha/年)以下。综合水土保持措施降低了土壤侵蚀速率,提高了木本物种多样性。因此,区域封闭与SWC实践相结合是改善退化土地生物物理状况的最佳选择。
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