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Assessment of rehabilitation projects results of a gold mine area using landscape function analysis

机译:使用景观功能分析评估康复项目的康复项目结果

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Mining activity is indispensable for the current stage of progress of our civilization. Although it is a temporary activity, its impacts are remarkable, especially with respect to landscape modifications. To mitigate such impacts, the implementation of monitored environmental recovery projects is of fundamental importance. Landscape Function Analysis (LFA) is a multicriteria analysis using remote sensing data and field information, suitable for monitoring the performance of recovery projects in areas degraded by the mining activity. In this work, LFA was used to evaluate the results of 20 years of environmental recovery projects in a gold mine. Ten base maps were developed: Declivity, Vegetation/Physiognomy Stratification, Fractures and faults, Compaction degree/soil structure, Erosion features, Geotechnical stability, Local hydrogeology, Degree of fragment isolation, Soils and Drainage. These were combined in order to give rise to three intermediate maps: Erosion and soil stability, Vegetation and Water. With the union of these three maps, it was possible to create the map with the final analysis of the environmental recovery performance. The technique used allowed the separation of native areas (which obtained the highest scores), recovered and self-sustaining areas (old mine dumps and waste piles) and areas still deficient in environmental recovery, with stability and erosion problems (mining sites and active mine dumps). In addition to allowing the analysis of large areas, the presentation of LFA results on maps facilitates decision-making and the dissemination and understanding of results by the different stakeholders involved.
机译:采矿活动对于当前的文明进步阶段是必不可少的。虽然它是临时活动,但它的影响是显着的,特别是对于景观修改而言。为了减轻这种影响,监测的环境恢复项目的实施具有重要意义。景观功能分析(LFA)是使用遥感数据和现场信息的多标准分析,适用于监控在采矿活动中退化的区域中恢复项目的性能。在这项工作中,LFA被用来评估金矿中20年的环境恢复项目的结果。开发了十个基本地图:衰退,植被/地理学分层,裂缝和故障,压实度/土结构,侵蚀特征,岩土稳定性,局部水文,碎片分离程度,土壤和排水程度。这些组合以产生三种中间地图:侵蚀和土壤稳定性,植被和水。通过这三张地图的联合,可以通过对环境恢复性能的最终分析创建地图。所用技术允许分离原生区域(获得最高评分),恢复和自我维持区域(旧矿山垃圾和废物桩)和区域仍然缺乏环境回收,具有稳定性和侵蚀问题(采矿遗址和活跃的矿山转储)。除了允许对大面积的分析外,LFA的展示结果在地图上介绍了不同利益攸关方的决策和传播和理解所涉及的不同利益攸关方的结果。

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