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Predicting Base Saturation Percentage by pH—A Case Study of Red Soil Series in South China

机译:pH值预测碱饱和度百分比-以华南地区红壤系列为例

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pH and base saturation percentage (BSP) are two basic indexes in identifying soil types in Chinese Soil Taxonomy. Some studies proved that there is significant correlation between BSP and pH, thus it could save the cost of laboratory work if we can infer BSP directly from pH. In this study, the measured values of BSP and pH of 162 and 232 horizon samples from 48 and 55 red soil series surveyed from 2009 to 2011 in Fujian and Guangdong respectively were adopted from Soil Series Database to set up the optimal correlation model between BSP and pH. The results showed that: 1) BSP ranged from 2.30% to 94.02% with a mean of 25.07%, while pH from 3.42 to 6.91 with a mean of 4.98 for the total soil samples. 2) There were significant differences in pH between different soil types (R~(2) were 0.624 for Ferralosols, 0.507 for Ferrosols, 0.515 for Argosols, and 0.456 for Cambosols, p < 0.01), in BSP between different parent materials (R~(2) were 0.580 for Quaternary red clay, 0.434 for granite, 0.642 for sandstone, and 0.712 for basalt, p < 0.01), in pH and BSP between different land use types (R~(2) were 0.623 for dryland, and 0.404 for forest land, p < 0.01). pH and BSP generally were in moderate variation (10% - 100%), and in positive skew distribution (>0), their probability density curves were mainly in flat or normal curves (<0.67). 3) There is significant positive correlation between BSP and pH, and the optimal correlation models are in quadratic form in most circumstances, but the optimal model and the accuracy are different in different circumstances, changed with different regions, parent materials, soil types and land use types. The accuracy of models established in other studies when predicting our soil samples was lower compared with our models. pH < 5.33 or <5.93 could be used roughly to judge BSP < 35% or <50% based on the model of all red soil series ( y = 6.84 x ~(2) &#8722; 45.86 x + 81.52, R~(2) = 0.494, p < 0.01).
机译:pH和碱饱和度(BSP)是识别中国土壤分类学中土壤类型的两个基本指标。一些研究证明BSP与pH之间存在显着相关性,因此,如果我们可以直接从pH推断BSP,则可以节省实验室工作的成本。本研究从土壤序列数据库中分别采用2009年至2011年在福建和广东进行调查的48个和55个红壤系列的162个和232个地平线样品的BSP和pH值测量值,建立BSP与土壤之间的最佳相关模型。 pH值结果表明:1)土壤样品中BSP的范围为2.30%至94.02%,平均值为25.07%,而pH值为3.42至6.91,平均值为4.98。 2)不同母体之间的BSP中,不同土壤类型之间的pH值之间存在显着差异(R〜(2)为Ferralosols为0.624,Ferrosols为0.507,Argosols为0.515,Cambosols为0.456,p <0.01)。 (2)在不同土地利用类型之间的pH和BSP中,第四纪红黏土为0.580,花岗岩为0.434,砂岩为0.642,玄武岩为0.712,p <0.01)(R〜(2)为0.623,旱地为0.404)对于林地,p <0.01)。 pH和BSP通常处于中等变化(10%-100%),并且在正偏分布(> 0)中,它们的概率密度曲线主要为平坦或正态曲线(<0.67)。 3)BSP和pH之间存在显着的正相关,在大多数情况下最佳相关模型为二次方形式,但最佳模型和精度在不同情况下会有所不同,随区域,母体,土壤类型和土地的不同而变化。使用类型。与我们的模型相比,在其他研究中建立的模型在预测我们的土壤样本时的准确性较低。根据所有红壤系列的模型(y = 6.84 x〜(2)&#8722; 45.86 x + 81.52,R〜(),pH <5.33或<5.93可以粗略地判断BSP <35​​%或<50% 2)= 0.494,p <0.01)。

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