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Prediction of Soil and Nutrient Losses from the Lake Chini Watershed, Pahang, Malaysia

机译:马来西亚彭亨州奇尼湖流域土壤和养分流失的预测

摘要

Watersheds in tropical regions are frequently subjected to soil erosion and transportation of chemicals downstream. Any drastic change in land use and land cover would increase the process of land degradation. For this study, the Revised Universal Soil Loss Equation (RUSLE) was used to predict the average annual soil loss. The prediction of annual nutrient (phosphorus, potassium and magnesium) loss caused by soil erosion processes using RUSLE was also conducted. Soil and nutrient movements associated with several alternative methods of land use were studied. The rainfall erosivity (R), topographic factor (LS), land cover (C) and management factor (P) values were calculated from rainfall data together with the use of topographic and land-use maps. Soil was analysed to obtain the soil erodibility factor (K). Physical properties, such as particle size distribution, texture, hydraulic conductivity and organic matter (OM) content, were analysed to support the erosion rate analysis. The mean soil erodibility factors varied from 0.03 to 0.30 ton h MJ–1 mm–1. The annual soil loss in the study area ranged from 0.10 to 180.49 ton ha–1. Nutrient losses of phosphorus, potassium and magnesium were investigated in the study. Run-off and sediments were also analysed for these elements. The annual loss of phosphorus ranged from 0.003 to 3.23 kg ha–1, potassium from 0.10 to 8.38 kg ha–1 and magnesium from 0.003 to 2.83 kg ha–1 in the study area. A small quantity of phosphorus was present in the soil, and thus, phosphorus losses were low. The findings of the present study will help in the formulation of better conservation and management options for future land-use patterns of the Lake Chini watershed.
机译:热带地区的流域经常遭受土壤侵蚀和化学品向下游的运输。土地使用和土地覆盖的任何急剧变化都会加剧土地退化的过程。在本研究中,使用修订的通用土壤流失方程(RUSLE)来预测年均土壤流失。还使用RUSLE预测了土壤侵蚀过程导致的年度养分(磷,钾和镁)损失。研究了与几种土地利用替代方法相关的土壤和养分运移。降雨侵蚀力(R),地形因子(LS),土地覆盖率(C)和管理因子(P)值是根据降雨数据以及地形图和土地利用图计算得出的。分析土壤以获得土壤易蚀性因子(K)。分析了物理性质,例如粒度分布,织构,水力传导率和有机物(OM)含量,以支持侵蚀速率分析。平均土壤侵蚀性因子在0.03至0.30吨·h MJ-1 mm-1之间。研究区的年土壤流失量为0.10至180.49吨ha-1。在研究中研究了磷,钾和镁的营养损失。还对这些元素的径流和沉积物进行了分析。在研究区域内,磷的年损失量为0.003至3.23 kg ha-1,钾的损失量为0.10至8.38 kg ha-1,镁的损失量为0.003至2.83 kg ha-1。土壤中存在少量磷,因此磷损失低。本研究的结果将有助于为Chini湖流域的未来土地利用模式制定更好的保护和管理方案。

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