首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Magnitude of soil erosion on the northern slope of the Uluguru Mountains, Tanzania: interrill and rill erosion.
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Magnitude of soil erosion on the northern slope of the Uluguru Mountains, Tanzania: interrill and rill erosion.

机译:坦桑尼亚乌鲁格鲁山脉北坡土壤侵蚀的规模:层间和层间侵蚀。

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The magnitude of interrill and rill erosion was determined on the northern slopes of the Uluguru Mountains, Tanzania which is representative for larger areas of East African Arch Mountains, where population pressure is high and land degradation is severe. The aim of the study was to develop a database to support soil conservation in the area. The study was done on two distinct geomorphic units with respect to altitude and hence rainfall distribution pattern: mountain ridges with an altitude ranging from 1000 to 1500 masl and mean annual rainfall of 2300 mm and mountain foothills whose altitude and mean annual rainfall are 550 to 900 masl and 900 mm, respectively. Total soil loss was measured on 36 individual bounded plots measuring 1.2 m x 20 m using Gerlarch troughs on each day with rain from July 2000 to June 2001. The plots were located on six different geopedologic units, nine on mountain ridges and the rest on the mountain foothills. The slope gradient on the terrain ranged from 30% to 70%. The plots were put under maize cultivation as the main crop. Soil loss through rill erosion was estimated by volumetric measurements of rills on each soil erosion plot. The soil loss due to interrill erosion was obtained by subtracting soil loss through rill erosion from the total soil loss measured in the Gerlarch troughs. The results indicate that soil loss due to both interrill and rill erosion was very high with mean soil loss of 69 and 163 t/ha/year, respectively. Rill erosion accounted for about 58% of the total soil loss while interrill erosion contributed to the remaining 42%. Both interrill and rill erosion were higher in the mountain ridges with mean soil loss of 88 t/ha/year and 210 t/ha/year compared to 49 and 116 t/ha/year in the mountain foothills, respectively. Rill erosion was significantly higher (P<=0.001) in all geopedologic units with slope gradient above 40% (mean soil loss ranged between 91 and 258 t/ha/year) compared to interrill erosion with mean soil loss varying from 41 to 115 t/ha/year. In geopedologic units with slope gradient above 60% both interrill and rill erosion were highly active while in geopedologic units with slope gradient below 40% the two processes were less active. The results demonstrate that rill erosion is more important than interrill erosion in the study area particularly where the slope gradient exceeds 40%. The results further show that the major part of the studied area has moderate interrill erosion (10-50 t/ha/year) and severe to very severe (>100 t/ha/year) rill erosion. This study clarifies the magnitude of interrill and rill erosion which is important for designing soil conservation on agricultural fields.
机译:在坦桑尼亚乌鲁古鲁山脉的北坡上确定了层间和层间侵蚀的程度,这代表了东非弓形山的较大区域,那里人口压力高,土地退化严重。该研究的目的是建立一个数据库,以支持该地区的水土保持。该研究在海拔和降雨分布方式的两个截然不同的地貌单位上进行:海拔1000至1500 masl,年平均降雨量2300 mm的山脊以及海拔和年均降雨量550至900的山麓丘陵masl和900 mm。从2000年7月至2001年6月,每天有雨,使用Gerlarch槽,在36个面积为1.2 mx 20 m的单个有界地块上测量了总的土壤流失。这些地块位于六个不同的地理学单位上,其中九个位于山脊上,其余的位于山上山麓。地形上的坡度范围为30%至70%。该地块主要以玉米栽培。通过对每个土壤侵蚀区的小溪进行体积测量,可以估算出由于小溪侵蚀造成的土壤流失。层间侵蚀造成的土壤流失是通过从Gerlarch槽中测得的总土壤流失中减去因土壤流失引起的土壤流失而获得的。结果表明,由于层间和小溪侵蚀造成的土壤流失非常高,平均土壤流失分别为69吨/公顷/年/ 163公顷。细沟侵蚀约占土壤总损失的58%,而层间侵蚀占剩余土壤的42%。山间垄间和小溪侵蚀均较高,平均土壤流失量为88吨/公顷/年和210吨/公顷/年,而山区丘陵分别为49吨/公顷/年和116吨/公顷/年。与层间侵蚀相比,在坡度高于40%(平均土壤流失量介于91至258吨/公顷/年)的所有地理学单元中,河床侵蚀显着更高(P <= 0.001) /公顷/年。在坡度梯度高于60%的地质学单元中,钻探间和钻头侵蚀都非常活跃,而在坡度梯度低于40%的地理学单元中,这两个过程都不​​太活跃。结果表明,在研究区域,特别是在坡度梯度超过40%的地方,小孔侵蚀比小孔侵蚀更重要。结果进一步表明,研究区域的大部分地区有中等的钻头间侵蚀(10-50吨/公顷/年)和严重到非常严重的(> 100吨/公顷/年)钻头侵蚀。这项研究阐明了层间和层间侵蚀的程度,这对于设计农田土壤的保护非常重要。

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