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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Soil physical quality - Part I. Theory, effects of soil texture, density, and organic matter, and effects on root growth
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Soil physical quality - Part I. Theory, effects of soil texture, density, and organic matter, and effects on root growth

机译:土壤物理质量-第一部分,理论,土壤质地,密度和有机质的影响以及对根系生长的影响

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摘要

A soil physical parameter, S, is defined. It is equal to the slope of the soil water retention curve at its inflection point. This curve must be plotted as the logarithm (to base e) of the water potential against the gravimetric water content (kg kg(-1)). The value of S is indicative of the extent to which the soil porosity is concentrated into a narrow range of pore sizes. In most soils, lamer values of S are consistent with the presence of a better-defined microstructure. Much previous work has shown that this microstructure is responsible for most of the soil physical properties that are necessary for the proper functioning of soil in agriculture and the environment. The use of S is illustrated with examples of soils with different texture, density (or degree of compaction), and organic matter (OM) content. The effects of S on root growth in soil are investigated, and S is shown to be a better indicator of soil rootability than bulk density. It is suggested that S can be used as an index of soil physical quality that enables different soils and the effects of different management treatments and conditions to be compared directly
机译:定义了土壤物理参数S。它等于土壤保水曲线拐点处的斜率。该曲线必须以水势(以e为底)对重量水含量(kg kg(-1))的对数绘制。 S的值表示土壤孔隙度集中在狭窄的孔径范围内的程度。在大多数土壤中,S的较高值与定义更清晰的微观结构一致。以前的许多工作表明,这种微观结构负责土壤的大多数物理特性,而这些物理特性是土壤在农业和环境中正常运行所必需的。通过使用具有不同质地,密度(或压实度)和有机质(OM)含量的土壤示例说明了S的使用。研究了硫对土壤根系生长的影响,并且表明硫比容重比土壤硫更好。建议将S用作土壤物理质量的指标,可以使不同土壤以及不同管理措施和条件的效果可以直接进行比较。

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