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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Assessing the effects of slope gradient and land use change on soil quality degradation through digital mapping of soil quality indices and soil loss rate
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Assessing the effects of slope gradient and land use change on soil quality degradation through digital mapping of soil quality indices and soil loss rate

机译:通过土壤质量指标和土壤流失率的数字映射评估坡梯度和土地利用变化对土壤质量降解的影响

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摘要

Slope gradient and land use change are known to influence soil quality and the assessment of soil quality is important in determining sustainable land-use and soil-management practices. In this study, soil quality indices (SQIs) were developed by quantifying several soil properties to discriminate the effects of slope gradient and land use change on soil quality in 480 km(2) of agricultural land in Kurdistan Province, Iran. Three soil quality indices (SQIs) were used. Each of the soil quality indices was calculated using two linear and non-linear scoring methods and two soil indicator selection approaches, a Total Data Set (TDS) and a Minimum Data Set (MDS). Nine soil quality indicators: pH, Electrical Conductivity (EC), Organic Carbon (OC), Cation Exchange Capacity (CEC), Total Naturalized Value (TNV), Soil Erodibility (K), Porosity (P), Mean Weight Diameter (MWD), and Bulk Density (BD) and soil loss rate were measured for 110 soil samples (0-30 cm depth). Soil quality indices maps were developed using digital soil mapping methods. The & 10% slope class had the highest soil loss rate and highest percentage of soils with very low quality (grade V) based on all SQIs. The results showed that soil quality was better estimated using the Weighted Additive Soil Quality Index (SQI(w)) (r(2) = 0.78) compared to SQI(a) (the Additive Soil Quality Index) and SQI(n) (the Nemoro Soil Quality Index). The agreement values of all SQIs for the non-linear scoring method were higher than the linear scoring method. The mean values of all SQIs and the soil loss rate were higher and lower in rangeland than cropland, respectively, but they were not significantly different because of intensive grazing. Slopes with a large gradient and where land use was converted to agriculture were characterized by low values of SQIs, suggesting a recovery of soil quality through changing to sustainable practices and abandoning over grazing in these areas.
机译:已知坡梯度和土地利用变化影响土壤质量,对土壤质量的评估对于确定可持续的土地利用和土壤管理实践非常重要。在这项研究中,通过量化几种土壤特性来制定土壤质量指数(SQI),以区分斜坡梯度和土地利用变化对库尔德斯坦省Kurdistan省的480公里(2)米(2)克的土壤质量的影响。使用了三种土壤质量指数(SQIS)。使用两种线性和非线性评分方法和两种土壤指示器选择方法,总数据集(TDS)和最小数据集(MDS)计算每个土壤质量指标。九种土壤质量指标:pH,电导率(EC),有机碳(OC),阳离子交换能力(CEC),全归化值(TNV),土壤易用(K),孔隙率(P),平均重量直径(MWD)并测量110种土壤样品(0-30cm深度)的批量密度(BD)和土壤损失率。使用数字土壤映射方法开发了土壤质量指数地图。 & 基于所有SQI的10%的斜坡阶层具有最高的土壤损失率和具有非常低质量(V级)的土壤的最高百分比。结果表明,与SQI(A)(A1)(Acclative土壤质量指数)和SQI(N)(r(2)= 0.78)相比,使用加权添加剂土壤质量指数(R(2)= 0.78)更好地估计土壤质量。 Nemoro土壤质量指数)。非线性评分方法所有SQI的协议值高于线性评分方法。所有SQIS和土壤损失率的平均值分别比农田分别更高,土壤损失率较高,而且由于密集放牧,它们并没有显着差异。具有大梯度和土地使用的坡度被转化为农业的倾斜度,表征了SQI的低值,表明通过改变可持续实践并在这些地区放弃放牧来恢复土壤质量。

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