首页> 外文会议>Annual Meeting of the Canadian Mineral Processors >IN-PLANT HYDROGEOCHEMICAL MAPPING: A TOOL TO LOCALISE POTENTIAL DELETERIOUS REACTIONS DUE TO WATER QUALITY IN A PROCESS
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IN-PLANT HYDROGEOCHEMICAL MAPPING: A TOOL TO LOCALISE POTENTIAL DELETERIOUS REACTIONS DUE TO WATER QUALITY IN A PROCESS

机译:工厂水文地球化学贴图:一种在过程中为水质本地化潜在有害反应的工具

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The mining industry has to face increasing restrictions concerning the use of fresh water in Quebec and throughout the world. Increasing recirculated water usage could lead to a better control of the quality and the quantity of water supplied to the mineral processing units. Furthermore, it could reduce the volume of waste water to be managed and treated before its release to the environment. However, process water may have a negative impact on mineral processing operations, thereby limiting the incentive for sustainable development initiatives. As a first step into selecting and testing remediation strategies, one of which being blending local waters, a mapping of process water quality (inorganic and organic fractions) allowed to locate zones in an industrial case study where fresh water is introduced into the circuit and to detect dissolution and precipitation zones. A complementary hydro-geochemical modeling study on water blends was also performed showing encouraging results towards the objectives of the project.
机译:矿业行业必须面临魁北克和全世界在魁北克省份的淡水中的越来越多的限制。增加再循环的水使用可能导致更好地控制提供给矿物加工单元的水的质量和水量。此外,它可以减少在释放到环境之前进行管理和治疗的废水量。然而,工艺用水可能对矿物加工操作产生负面影响,从而限制了可持续发展举措的激励。作为选择和测试修复策略的第一步,其中一个是将局部水​​融化的原料,允许在工业案例研究中定位区域的工艺水质(无机和有机分数)的映射,其中淡水被引入电路和检测溶解和沉淀区。还表现出对水混合物的互补水力地球化学建模研究,展示了令人鼓舞的项目目标。

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