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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effect of land use systems and topographical attributes on the condition of surface soil physicochemical properties in a highland catchment of the Lake Victoria Basin, Uganda
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Effect of land use systems and topographical attributes on the condition of surface soil physicochemical properties in a highland catchment of the Lake Victoria Basin, Uganda

机译:土地利用系统与地形属性对维多利亚湖,乌干达湖高地集水区地表土壤理化特性条件的影响

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摘要

Patterns of soil properties in highland environments remain poorly understood and limited knowledge exists on soil quality with respect to land use systems and topographic configurations. In this study, patterns of 12 surface soil physicochemical properties were assessed over a period of three years with respect to land use systems and toposequence positions in the Rwizi catchment of the Lake Victoria Basin. Four land use systems constituting mulched banana, unmulched banana, grassland and tree plantation, and three toposequence positions stratified as footslope, midslope and summit were considered and three replications were applied resulting in a total of 36 sites for soil properties measurements over a three-year period. Topographic attributes (elevation, slope gradient, slope aspect, and location) were collected at each site and correlated with surface soil properties. With the exception of pH and Ca, surface soil physicochemical properties are revealed to be optimal in the catchment. Greater spatial variation was found with soil chemical properties (8-57%) compared to physical properties (7-19%). Land use system registered significant effects (p < 0.05) for all soil chemical properties, as well as bulk density. Toposequence position is shown to have significant (p < 0.05) effects on soil pH, Soil Organic Matter, available P, N and soil texture. The effect of toposequence position revealed better soil quality along the catenary sequence summit > footslope > midslope. Strong and significant regression coefficients (r(2) > 0.6, p < 0.05) for topographic attributes were found with soil pH, available P, K, Ca, Mg and sand. Overall, the land use system effect supersedes toposequence position in accounting for variations in surface soil physicochemical properties. Although environments of the Lake Victoria Basin are subject to intense agricultural activity and are usually assumed to be degraded, surface soil physicochemical properties in this part of the catchment reflect relatively healthy soil quality conditions.
机译:高地环境中的土壤性质模式仍知之甚少,关于土地利用系统和地形配置方面的土壤质量知识有限。在这项研究中,在三年的时间里,评估了维多利亚湖盆地鲁维齐集水区土地利用系统和地形序列位置的12种表土物理化学性质的模式。考虑了四个土地利用系统,包括覆盖香蕉、未覆盖香蕉、草地和树木种植园,以及三个地形序列位置(按坡脚、中坡和山顶分层),并采用了三次重复,在三年期间共有36个土壤性质测量点。在每个地点收集地形属性(海拔、坡度、坡向和位置),并与表土性质相关。除pH和Ca外,集水区表土理化性质最佳。与物理性质(7-19%)相比,土壤化学性质(8-57%)的空间变异更大。土地利用系统对所有土壤化学性质和容重都有显著影响(p<0.05)。地形序列位置对土壤pH值、土壤有机质、速效p、N和土壤质地有显著影响(p<0.05)。地形序列位置的影响表明,悬链线序列顶部>坡脚>中坡沿线的土壤质量较好。土壤pH、速效p、K、Ca、Mg和沙子对地形属性的回归系数(r(2)>0.6,p<0.05)。总的来说,在解释表层土壤物理化学性质的变化时,土地利用系统效应取代了地形序列位置。尽管维多利亚湖流域的环境受到强烈农业活动的影响,通常被认为是退化的,但该流域这一部分的地表土壤理化性质反映了相对健康的土壤质量状况。

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