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An Integrated Approach to Proactive Tailings Management

机译:主动尾矿管理的综合方法

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Most preventive environmental management practices promote proactive integrated approaches to waste management. For example, life cycle assessment is often used to find the 'hot spots' of environmental burdens. This kind of approach is often based on generic data and has rarely been used for tailings. Besides, life cycle assessments are less useful for designing operations or simulating changes in the process and consequent environmental outcomes. It is evident that an integrated approach for tailings research linked to better processing options is needed.The aim of this Nextmine? project is to develop new tailings management models by streamlining orebody characterisation, process optimisation and rehabilitation. We present an integrated tailings management approach and preliminary results from a case study. Combined grinding and flotation models were developed using geometallurgical data from the orebody, to predict the properties of tailings produced under various processing conditions. The modelling scenarios based on the case study data provide the capacity to predict the composition of tailings and the resulting environmental management implications. For example, the type and content of clay minerals in tailings will affect the geotechnical stability and water recovery. Clay content will also influence decisions made for paste or thickened tailings and underground backfilling.
机译:大多数预防性环境管理实践促进了对废物管理的积极综合方法。例如,生命周期评估通常用于找到环境负担的“热点”。这种方法通常基于通用数据,很少用于尾矿。此外,生命周期评估对于设计业务或模拟过程中的变化和随后的环境结果不太有用。很明显,需要一种与更好的加工选择相关的尾矿研究的综合方法。这一目标的目的?项目是通过简化矿体特征,流程优化和康复来开发新的尾矿管理模型。我们提出了一个综合的尾矿管理方法和案例研究的初步结果。使用来自矿体的几何数据进行组合的研磨和浮选模型,以预测在各种加工条件下生产的尾矿的性质。基于案例研究数据的建模方案提供了预测尾矿组成和由此产生的环境管理影响的能力。例如,尾矿中粘土矿物的类型和含量将影响岩土工程稳定性和水回收。粘土含量也将影响为粘贴或加厚尾矿和地下回填制作的决定。

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