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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Root-induced changes in soil thermal and dielectric properties should not be ignored
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Root-induced changes in soil thermal and dielectric properties should not be ignored

机译:不忽视土壤热和介电性能的根本诱导的变化

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There is a lack of quantitative understandings on root-mediated changes of soil physical properties. Here we investigated the influences of maize roots on soil heat capacity (C), thermal conductivity (lambda) and dielectric constant (epsilon) of the root zone. Root-zone soil cores were collected at different depths and horizontal positions from the eighth leaf to milk stage of maize, and C, lambda, and epsilon of the samples were measured with the thermo-TDR technique. Improved C, lambda, and epsilon models that included the influences of roots were developed and validated. The patterns and magnitudes of root effects on C, lambda, and epsilon generally followed the configurations of root distribution. On average, the presence of roots caused increases in soil C, lambda, and epsilon by 8.8%, 7.1% and 13.6%, respectively. For the root-zone soils, root influences on thermal properties and dielectric constant were significant and could be described quantitatively by using the proposed models.
机译:对根系介导的土壤物理性质的变化缺乏定量谅解。在这里,我们调查了根部区域对土壤热容量(C),导热性(Lambda)和根区介电常数(ε)的影响。在不同深度和八叶叶的水平位置收集根区土壤核,用热TDR技术测量样品的C,Lambda和ε的C,Lambda和ε。改进的C,Lambda和epsilon模型,包括根源的影响并验证。对C,Lambda和epsilon的根效果和幅度通常遵循根部分布的配置。平均而言,根部的存在引起土壤C,λ和ε的增加8.8%,7.1%和13.6%。对于根区土壤,对热性质和介电常数的根部影响是显着的,并且可以通过使用所提出的模型来定量描述。

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