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首页> 外文期刊>Communications in Soil Science and Plant Analysis >Relationship Between Soil Properties and Nitrogen Mineralization in Undisturbed Soil Cores from California Agroecosystems
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Relationship Between Soil Properties and Nitrogen Mineralization in Undisturbed Soil Cores from California Agroecosystems

机译:加利福尼亚省农产物系统未受干扰土壤矿物质与氮矿化的关系

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Soil nitrogen (N) mineralization rates from different agricultural regions in California were determined and related to soil properties. Undisturbed soil cores were sampled in spring from 57 fields under annual crop rotations and incubated at 25celcius for 10 weeks. Soil properties varied across and within regions, most notably those related to soil organic matter (SOM), with total soil carbon ranging from 6 to 198 g kg(-1). Multivariate linear regression was used to select soil properties that best predicted N mineralization rates. Regression models with a good fit differed between soils with high and low SOM contents, but generally included a measure of SOM quantity, its quality as well as soil texture or mineralogy. Adjusted R-2 values were 0.95 and 0.60 for high and low SOM soils, respectively. This study has shown that information on soil properties can contribute to better estimates of N mineralization in soils of contrasting characteristics.
机译:确定并与土壤性质有关的不同农业地区的土壤氮(N)矿化率。 在年度作物旋转下的57个田地中,在弹簧中取样未受干扰的土壤核心,并在25celcius孵育10周。 土壤性质在地区和地区内变化,最值得注意的是与土壤有机物(SOM)有关的那些,总土壤碳范围为6至198g kg(-1)。 多变量线性回归用于选择最佳预测N矿化率的土壤性质。 具有良好拟合的回归模型不同于具有高低和低的土壤,但通常包括SOM数量,其质量以及土壤质地或矿物质的量度。 调整后的R-2值分别为0.95和0.60,分别为高低SOM土壤。 本研究表明,土壤性质的信息可以有助于更好地估计对比度特征的土壤中的N矿化。

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