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Evaluation of Complex Systems to Develop Key Water Quality Influences at the DeBeers Snap Lake Diamond Project

机译:复杂系统对发展中的关键水质影响的评价,在Debeers Snap Lake Diamond项目中的影响

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DeBeers Canada Mining Inc (DeBeers) recently submitted an Environmental Assessment (EA) for its proposed Snap Lake Diamond Mine located in Northwest Territories, Canada. As part of the EA process, a site water quality management plan must be developed. Plan development requires an integrated approach such that the key factors influencing water quality can be identified and managed to minimise potential impact. A system model was therefore developed to simulate the site-wide water quality conditions and mass loadings to the principal environmental receptor of concern, Snap Lake, during operations and post-closure. Requirements of the simulation included integrating hydrology, geochemistry, hydrogeology and site management practices in a dynamic way. A unique feature of the site was the need to accommodate a complex flow system that included a feedback loop between lake water and mine water. A system model was constructed using the GoldSim software package that integrated on-site water quality and flow measurements, as well as results from independent groundwater flow and geochemical modelling efforts. The GoldSim model simulated concurrently the movement of 39 solutes through the subsurface mine and surface facilities. Solute sources considered included four different waste rock and tailings types, explosives use in the mine, treatment plant discharge, and recycled process water for dust suppression. Separate solubility constraints were identified for different regions of the flow system (eg underground mine; treatment facility; surface water bodies). Kinetic test data were used to derive temperature-dependent rate constants for use in calculating mass inputs from surface sources such as waste rock piles. The model generated water quality estimates over time for a variety of management scenarios at several potential discharge locations. The integrated approach used by the model was effective in identifying the significance of key factors influencing overall water quality such as explosives use, mine water inflow rates, waste rock reaction rates, site/mine management options, and effectiveness of treatment. The model provides an example of an effective tool for comprehensive, integrated system evaluation and management.
机译:Debeers Canada Mining Inc(Debeers)最近为其在加拿大西北地区的拟议的Snap Lake Diamond Mine提交了环境评估(EA)。作为EA过程的一部分,必须开发出站点水质管理计划。计划开发需要一种综合方法,使得能够确定影响水质的关键因素,并设法最大限度地减少潜在的影响。因此,制定了一种系统模型,以模拟现场水质条件和群众载荷,以期间担心的主要环境受体,卡扣湖泊,在运营和关闭后。模拟要求包括以动态方式整合水文,地球化学,水文地质和现场管理实践。该网站的独特功能是需要容纳一个复杂的流量系统,其中包括湖水和矿井水之间的反馈环。使用集成现场水质和流量测量的Goldsim软件包构建系统模型,以及独立地下水流量和地球化学建模努力的结果。 Goldsim模型通过地下矿井和表面设施同时模拟39溶质。所考虑的溶质来源包括四种不同的废岩和尾矿类型,爆炸物在矿井,治疗厂排放和再循环过程中的粉尘抑制。针对流动系统的不同区域(例如,地下矿井;治疗设施;地表水体)鉴定了单独的溶解度约束。动力学测试数据用于导出温度依赖性速率常数,以用于计算来自表面源的质量输入,例如废岩桩。模型在几个潜在放电位置的各种管理场景上产生了水质的估算。该模型使用的综合方法是有效地识别影响爆炸物使用,矿井水流入率,废弃物反应率,现场/矿山管理方案以及治疗有效性等关键因素的重要性。该模型提供了综合,集成系统评估和管理的有效工具的示例。

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