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Influence of Improving Materials of Forest Roads on the Surrounding Environment

机译:改善森林道路材料对周边环境的影响

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摘要

Ensuring the efficiency of forest management and the availability of landscape areas requires a quality transport network. However, any structure and its subsequent use generally contributes to a certain disruption of surrounding ecosystems, soil degradation, erosion and changes in vegetation. The presented study analyzes the effects and impacts of the five types of improving materials used to improve the load-bearing capacity of low-volume roads. Two basic types of analyses were performed: the classification of mechanical properties of soil for determining fine clay particle proportions and the chemical testing for pH and carbonate determination. The samples were always collected at three distances from the roadside, at two height levels and in two years: 2012 and 2017. The aim of the study was to quantify the effects of improving materials on the pH changes as well as the carbonate levels, and to compare their changes over the course of five years. Also, we have highlighted the possibilities of "biological tools" (vegetation) to control and minimize the impact of human activities. Vegetative control, or phytoremediation, increases soil resistance to erosion, improves water retention in a landscape and maintains the original balance. It seems to be an effective tool for reduction of the impact of pavement construction materials and technologies on the surrounding environment.
机译:确保森林管理的效率和景观地区的可用性需要质量运输网络。然而,任何结构及其随后的用途通常有助于某种中断周围的生态系统,土壤退化,侵蚀和植被变化。本研究分析了用于提高低批量道路承载能力的五种改善材料的效果和影响。进行了两种基本的分析:用于确定细粘土比例的土壤机械性能的分类及pH和碳酸酯测定的化学试验。样品总是在路边的三个距离上收集,两个高度水平,两年:2012年和2017年。该研究的目的是量化改善材料对pH变化以及碳酸酯水平的影响。在五年的过程中比较他们的变化。此外,我们强调了“生物工具”(植被)的可能性来控制和尽量减少人类活动的影响。营养管制或植物化对侵蚀的土壤抵抗力增加,提高了景观中的水保留并保持原始平衡。它似乎是减少路面建筑材料和技术对周围环境的影响的有效工具。

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