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A model for prioritizing sites and reclamation methods at abandoned mines

机译:优先处理废弃矿山的场地和开垦方法的模型

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Abandoned mines present numerous safety and environmental problems due to altered topography and poor management of mine waste. Few guidelines are available for selecting reclamation methods to address these problems, and many existing decision models lack transparency, leave out important parameters and reclamation methods, and/or lack model calibration. Consequently, a decision model was developed that includes: (1) a mine hazard index for prioritizing sites for reclamation, (2) a reclamation method screening table for narrowing viable reclamation methods, and (3) a reclamation method ranking matrix for ranking the applicability of reclamation methods at a site. These three processes form the abandoned mine decision model, optimized for topographic reconstruction and waste disposal at abandoned mines. The hazard index quantifies geologic and hydrologic hazards using measurable parameters, sub-parameters, and a range of sub-parameter conditions. Main and sub-parameter weighting factors were determined using the analytic hierarchy process and Delphi method. Reconciling differences between initial parameter weighting factors for the two methods resulted in an improved decision-making technique. The decision model was calibrated with 25 abandoned metal mines in the western USA. Mine hazard index thresholds were determined for mines having low, medium, and high priority. The screening table and ranking matrix were effective at narrowing the number of viable reclamation methods. Further validation of the decision model was evident by the implemented reclamation method being among the four highest scoring alternatives 80 % of the time. This model provides a quantitative and transparent process that overcomes the deficiencies found in many existing mine reclamation decision models.
机译:由于地形变化和矿山废物管理不善,废弃的矿山带来许多安全和环境问题。很少有指南可供选择来选择回收方法来解决这些问题,并且许多现有的决策模型缺乏透明度,缺少重要的参数和回收方法和/或缺乏模型校准。因此,开发了一个决策模型,其中包括:(1)矿山灾害指数,用于优先进行填海;(2)填海方法筛选表,用于缩小可行的填海方法;(3)填海方法排名矩阵,用于对适用性进行排名现场的填海方法这三个过程形成了废弃矿山的决策模型,该模型针对地形重建和废弃矿山的废物处理进行了优化。危害指数使用可测量的参数,子参数和一系列子参数条件来量化地质和水文危害。使用层次分析法和德尔菲法确定主参数和子参数加权因子。调和这两种方法的初始参数加权因子之间的差异导致了改进的决策技术。该决策模型已在美国西部的25个废弃金属矿场进行了校准。确定具有低,中和高优先级的地雷的地雷危害指数阈值。筛选表和排序矩阵可有效缩小可行的填海方法的数量。通过实施的回收方法在80%的时间中是得分最高的四个替代方案之一,显然可以进一步验证决策模型。该模型提供了定量和透明的过程,克服了许多现有矿山开垦决策模型中发现的缺陷。

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