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Arsenic in complex orebodies

机译:复合矿石中的砷

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There is an increasing trend in the extraction and development of copper resources from complex deposits. The complex deposits pose mineral processing challenges, as they often contain low grade copper ore, relatively large quantity of clay minerals, complex texture, very fine disseminated ore, high amount of pyrite, and high level of impurity elements such as arsenic. With the amount of arsenic in concentrates increasing and with environment, occupational health and safety regulations becoming more restrict, there is a need for a processing method that results in no arsenic emissions and captures all arsenic while immobilizing it in a compound that is stable under a wide range of conditions, so it is suitable for long-term disposal. Some development work has been undertaken to examine the most effective arsenic treatment option for complex orebodies that contain arsenic, but a technically robust and economically viable option has not yet been developed. Previous research has demonstrated the possibility of separating arsenic-copper sulphides from other copper minerals by controlling the potential of the flotation pulp in the single mineral systems. The selective flotation of enargite from copper sulphides in a real complex ore system was studied by Tayebi-Khorami (2016), which is summarised in this paper.
机译:复杂沉积物的提取和开发铜资源的提取和开发越来越大。复杂的沉积物造成矿物加工挑战,因为它们通常含有低级铜矿,相对大量的粘土矿物质,复杂的质地,非常精细的散发矿石,大量的硫铁矿和高水平的杂质元素如砷。随着浓缩物的砷量增加,随着环境的增加,职业健康和安全法规变得更加限制,需要一种加工方法,导致无砷排放并捕获所有砷,同时将其固定在稳定下的化合物中各种条件,因此适合长期处理。已经开展了一些发展工作,以检查含砷的复杂矿物最有效的砷治疗选择,但尚未开发技术稳健和经济上可行的选择。以前的研究表明,通过控制单一矿物系统中的浮选纸浆的电位,可以将砷 - 硫化铜与其他铜矿物分离的可能性。通过Tayebi-Khorami(2016)研究了真实复合矿石系统中硫化铜硫化物的选择性浮选,其在本文中总结。

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