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Effects of compaction due to machinery traffic on soil pore configuration

机译:机械运输引起的压实对土壤孔隙形态的影响

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摘要

Soil compaction has been recognized as a severe problem in mechanized agriculture and has an influence on many soil properties and processes. Yet, there are few studies on the long-term effects of soil compaction, and the development of soil compaction has been shown through a limited number of soil parameters. The objectives of this study were to evaluate the persistence of soil compaction effects (three traffic treatments: T0, without traffic; T3, three tractor passes; and T5, five tractor passes) on pore system configuration, through static and dynamic determinations; and to determine changes in soil pore orientation due to soil compaction through measurement of hydraulic conductivity of saturated soil in samples taken vertically and horizontally. Traffic led to persistent changes in all the dynamic indicators studied (saturated hydraulic conductivity, K0; effective macro- and mesoporosity, εma and εme), with significantly lower values of K0, εma, and εme in the T5 treatment. The static indicators of bulk density (BD), derived total porosity (TP), and total macroporosity (θma) did not vary significantly among the treatments. This means that machine traffic did not produce persistent changes on these variables after two years. However, the orientation of the soil pore system was modified by traffic. Even in T0, there were greater changes in K0 measured in the samples taken vertically than horizontally, which was more related to the presence of vertical biopores, and to isotropy of K0 in the treatments with machine traffic. Overall, the results showed that dynamic indicators are more sensitive to the effects of compaction and that, in the future, static indicators should not be used as compaction indicators without being complemented by dynamic indicators.
机译:在农业机械化中,土壤压实已被认为是一个严重的问题,它对许多土壤特性和过程都有影响。然而,很少有关于土壤压实的长期影响的研究,并且通过有限数量的土壤参数显示了土壤压实的发展。这项研究的目的是通过静态和动态确定来评估土壤压实效应(三种交通处理:T0,无交通; T3,三轮拖拉机; T5,五轮拖拉机)的持久性对孔隙系统结构的持久性。并通过测量垂直和水平取样的饱和土壤的水力传导率来确定由于土壤压实而引起的土壤孔隙取向的变化。流量导致研究的所有动态指标(饱和水力传导率K0;有效大孔隙和中孔隙率εma和εme)持续变化,而T5处理中的K0,εma和εme值明显较低。在处理之间,堆密度(BD),衍生的总孔隙度(TP)和总大孔隙度(θma)的静态指标没有显着变化。这意味着两年后机器流量不会对这些变量产生持续的变化。但是,土壤孔隙系统的方向因交通而改变。即使在T0中,在垂直方向上采集的样品中的K0值也要比水平方向上的测量值更大,这与垂直生物孔的存在以及机器流量处理中K0的各向同性关系更大。总体而言,结果表明,动态指标对压实效果更为敏感,并且在将来,如果没有动态指标的补充,静态指标就不能用作压实指标。

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