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Principles and Economic Considerations of Electrochemical Treatment of Cyanide-Laden Wastewater

机译:电化学法处理含氰废水的原理和经济考虑

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The mining industry is a global economic driver, that produces the metals and minerals required to sustain our current technological advancements. It is also however, a water intensive industry, that uses a third of Canada's fresh annual water resources. The increased mining activity requires significant waste and wastewater treatment of the contaminated water. The gold mining industry in particular is integral to the production of electronics, copper, and the solar panels that are required for the long-term growth of the renewable energy sector. Significant demand in recent years has lead the gold mining industry to consume 20% of the annual production of cyanide, which is used as a leaching reagent. The health and environmental risk posed by the wide spread use of cyanide has raised public concern, and as a result ever more stringent wastewater discharge requirements are being implemented. The current conventional method of treating cyanide requires a large amount of real estate, leads to persistent toxicity, and prevents mine operators from successfully meeting land reclamation requirements. Electrochemical oxidation and coagulation of cyanide offers an alternative wastewater treatment method that requires less real estate, is amenable to automation, and capable of meeting new stringent requirements. This paper presents the economic framework needed to assess the technical and economic validity of employing electrochemical treatment methods of cyanide-laden wastewater.
机译:采矿业是全球经济驱动力,其生产维持我们当前技术进步所需的金属和矿物。但是,它也是用水密集型产业,其使用的加拿大年度淡水资源占三分之一。采矿活动的增加要求对被污染的水进行大量的废物和废水处理。特别是金矿开采业是电子,铜和太阳能电池板生产不可或缺的组成部分,这是可再生能源行业长期增长所必需的。近年来,巨大的需求导致金矿开采业消耗了氰化物(用作浸出剂)的年产量的20%。氰化物广泛使用所造成的健康和环境风险引起了公众的关注,因此,对废水排放的要求也越来越严格。当前处理氰化物的常规方法需要大量空间,导致持久的毒性,并妨碍矿山经营者成功满足土地开垦要求。氰化物的电化学氧化和混凝提供了另一种废水处理方法,该方法需要更少的空间,易于自动化且能够满足新的严格要求。本文提出了评估用电化学方法处理载有氰化物的废水的技术和经济有效性所需的经济框架。

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