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首页> 外文期刊>European Journal of Soil Science >Electrical resistivity tomography as a non-destructive method for mapping root biomass in an orchard.
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Electrical resistivity tomography as a non-destructive method for mapping root biomass in an orchard.

机译:电阻层析成像是一种无损检测果园根生物量的方法。

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Multi-electrode soil electrical resistivity ( rho ) tomography was used for the non-invasive study of tree roots in situ and their spatial distribution in an agricultural soil. The quantitative relations of rho and root biometry and the contribution of different root size classes were investigated with two- and three-dimensional 48-electrode tomograms in an orchard in southern Italy on a Typic haploxeralf fine, mixed termic soil. Root biomass density (RD) and root length density (RLD) were measured destructively on coarse (>2 mm diameter) and fine roots, and soil paste electrical conductivity, water content, stone content, texture, organic matter and pH were measured on soil samples taken up to 0.48-m deep. Areas of large rho values (up to 460 ohm m) were found close to tree trunks and variability in rho was related to RD (0-0.137 Mg m-3) only; the resistive response was from coarse roots. The effect of other soil variables on rho was overshadowed by the presence of roots and therefore no significant multivariate relationship was found. A highly significant rho -RD gamma GLM model used to fit positively skewed data provides a useful framework for regression analysis when rho is dominated by roots. Soil electrical resistivity is promising as a proxy for RD in orchards, but not for RLD, and the effect of tree roots on rho needs to be taken into account in electrical surveys of soils.Digital Object Identifier http://dx.doi.org/10.1111/j.1365-2389.2010.01329.x
机译:多电极土壤电阻率(rho)层析成像技术用于非侵入性研究农业土壤中的树根原位及其空间分布。在意大利南部一个典型的Typlo haploxeralf精细混合白土土壤上,利用二维和三维48电极断层图研究了Rho和根系生物特征的定量关系以及不同根系类别的贡献。在粗(> 2 mm直径)和细根上破坏性地测量了根生物量密度( RD )和根长度密度( RLD ),以及土壤糊的电导率,含水量在深达0.48米的土壤样品上测量石材的含量,质地,有机质和pH值。发现大的rho值区域(最大460 ohm m)靠近树干,rho的变化仅与 RD (0-0.137 Mg m -3 )有关;电阻响应来自粗根。根的存在掩盖了其他土壤变量对rho的影响,因此未发现显着的多元关系。当rho以根为主时,用于拟合正偏数据的高度重要的rho-RDi gamma GLM模型为回归分析提供了有用的框架。土壤电阻率有望成为果园中 RD 的替代物,而不是 RLD 的替代物,并且在进行土壤电学调查时必须考虑到树根对rho的影响。土壤。数字对象标识符http://dx.doi.org/10.1111/j.1365-2389.2010.01329.x

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