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Ecological effects of soil compaction and initial recovery dynamics: a preliminary study

机译:土壤压实的生态效应和初始恢复动力学:初步研究

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摘要

Skid trails of regular harvest operations with time delays up to 24 years between tracking and examination were investigated in order to characterize the status of recovery of essential soil functions. The study was focused on the ability of soils to serve as an effective rooting space. The gas diffusion coefficient and the fine root distributions of comparable sensitive silty loams were used to describe the disturbances of soil functions still detectable after decades. Tracking with heavy loaded machines severely reduced the soil aeration and in consequence the ability of the soil to act as a rooting space. Reduction of gas diffusivity and rooting was found on the whole skidding trail area and even expanded to the close vicinity of the margin zone. Up to 14 years after machine impact, gas diffusion coefficients and root densities beyond 4 cm depth under wheel tracks showed no signs of restoration. Soil aeration and root densities comparable to the control plot were found in the top soil layer 18 years after tracking at the site Ettenheim. At that location 24 years after machine impact, significantly reduced root densities occurred only in soil depths beyond 54 cm. In the long run, only concentration of machine traffic on permanent skid trail systems guarantees an adequate soil preservation. This applies especially under Middle European site conditions and management practices. This prescription must be underlined in guidelines for machine use in forests.
机译:为了确定基本土壤功能恢复的状态,对常规采伐作业的防滑路径进行了调查,追踪和检查之间的时间延迟长达24年。该研究的重点是土壤充当有效生根空间的能力。相当的敏感粉质壤土的气体扩散系数和细根分布被用来描述几十年来仍可检测到的土壤功能的扰动。用重载机器进行跟踪会严重减少土壤通气,从而导致土壤充当生根空间的能力。在整个集材径区域发现了气体扩散率和生根的降低,甚至扩展到了边缘区的附近。在机器撞击后长达14年的时间里,轮迹下超过4厘米深度的气体扩散系数和根部密度都没有恢复的迹象。在埃特海姆(Ettenheim)站点追踪18年后,在表层土壤中发现了与对照样地相当的土壤通气量和根系密度。在机器撞击24年后的那个位置,只有在深度超过54厘米的土壤中,根系密度才显着降低。从长远来看,只有将机器交通集中在永久性滑道系统上才能确保充分的土壤保护。这尤其适用于中欧站点条件和管理实践。在森林中使用机器的准则中必须在处方上强调该规定。

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