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Assessing the applicability of the earth impedance method for in situ studies of tree root systems

机译:评估接地阻抗方法在树根系统的原位研究中的适用性

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摘要

Several electrical methods have been introduced as non-invasive techniques to overcome the limited accessibility to root systems. Among them, the earth impedance method (EIM) represents the most recent development. Applying an electrical field between a cormus and the rooted soil, the EIM measures the absorptive root surface area (ARSA) from grounding resistance patterns. Allometric relationships suggested that this method was a valuable tool. Crucial assumptions for the applicability of the EIM, however, have not been tested experimentally. Focusing on tree root systems, the present study assesses the applicability of the EIM. Six hypotheses, deduced from the EIM approach, were tested in several experiments and the results were compared with conventional methods. None of the hypotheses could be verified and the results allow two major conclusions. First, in terms of an analogue electrical circuit, a tree-root–soil continuum appears as a serial circuit with xylem and soil resistance being the dominant components. Allometric variation in contact resistance, with the latter being the proxy for root surface area, are thus overruled by the spatial and seasonal variation of soil and xylem resistances. Second, in a tree-root–soil continuum, distal roots conduct only a negligible portion of the electric charge. Most of charge carriers leave the root system in the proximal parts of the root–soil interface.
机译:已经引入了几种电方法作为非侵入性技术,以克服对根系统的有限访问性。其中,接地阻抗法(EIM)代表了最新的发展。 EIM在Cormus和生根土壤之间施加电场,通过接地电阻模式来测量吸收性根表面积(ARSA)。异形关系表明该方法是一种有价值的工具。 EIM的适用性的关键假设,但是,尚未通过实验进行测试。专注于树的根系统,本研究评估EIM的适用性。根据EIM方法得出的六个假设在几个实验中得到了验证,并将结果与​​传统方法进行了比较。没有任何假设可以得到验证,结果给出两个主要结论。首先,就模拟电路而言,树根-土壤连续体表现为串联电路,木质部和土壤阻力是主要成分。因此,土壤和木质部电阻的空间和季节变化可以抵消接触电阻的异形变化,而后者是根表面积的替代。其次,在树根-土壤连续体中,远侧根仅传导微不足道的电荷。大多数电荷载体在根-土界面的近端部分离开根系统。

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