Efficiency of soil and water conservation practices in different agro-ecological environments in the Upper Blue Nile Basin of Ethiopia

被引:0
|
作者
Dagnenet Sultan
Atsushi Tsunekawa
Nigussie Haregeweyn
Enyew Adgo
Mitsuru Tsubo
Derege T. Meshesha
Tsugiyuki Masunaga
Dagnachew Aklog
Ayele A. Fenta
Kindiye Ebabu
机构
[1] Tottori University,The United Graduate School of Agricultural Sciences
[2] Bahir Dar University,School of Civil and Water Resource Engineering, Institute of Technology
[3] Tottori University,Arid Land Research Center
[4] Tottori University,International Platform for Dryland Research and Education
[5] Bahir Dar University,Department of Natural Resources Management
[6] Agricultural Research Council,Institute for Soil, Climate and Water
[7] Shimane University,Faculty of Life and Environmental Science
[8] Tottori University,Center for International Affairs
来源
Journal of Arid Land | 2018年 / 10卷
关键词
agro-ecology; drought-prone; runoff coefficient; runoff conservation efficiency; Ethiopia;
D O I
暂无
中图分类号
学科分类号
摘要
In developing countries such as Ethiopia, research to develop and promote soil and water conservation practices rarely addressed regional diversity. Using a water-balance approach in this study, we used runoff plots from three sites, each representing a different agro-ecological environment, e.g., high, mid and low in both elevation and rainfall, in the Upper Blue Nile Basin of Ethiopia to examine the runoff response and runoff conservation efficiency of a range of different soil and water conservation measures and their impacts on soil moisture. The plots at each site represented common land use types (cultivated vs. non-agricultural land use types) and slopes (gentle and steep). Seasonal runoff from control plots in the highlands ranged 214–560 versus 253–475 mm at midlands and 119–200 mm at lowlands. The three soil and water conservation techniques applied in cultivated land increased runoff conservation efficiency by 32% to 51%, depending on the site. At the moist subtropical site in a highland region, soil and water conservation increased soil moisture enough to potentially cause waterlogging, which was absent at the lowrainfall sites. Soil bunds combined with Vetiveria zizanioides grass in cultivated land and short trenches in grassland conserved the most runoff (51% and 55%, respectively). Runoff responses showed high spatial variation within and between land use types, causing high variation in soil and water conservation efficiency. Our results highlight the need to understand the role of the agro-ecological environment in the success of soil and water conservation measures to control runoff and hydrological dynamics. This understanding will support policy development to promote the adoption of suitable techniques that can be tested at other locations with similar soil, climatic, and topographic conditions.
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页码:249 / 263
页数:14
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