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首页> 外文期刊>The Canadian Journal of Chemical Engineering >A review of the physicochemical properties and flotation of pyrrhotite superstructures (4C-Fe7S8/ 5C-Fe9S10) in Ni-Cu sulphide mineral processing
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A review of the physicochemical properties and flotation of pyrrhotite superstructures (4C-Fe7S8/ 5C-Fe9S10) in Ni-Cu sulphide mineral processing

机译:Ni-Cu硫化物矿物加工中Pyrlotite上层建筑(4C-FE7S8 / 5C-FE9S10)的物理化学特性及浮选综述

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摘要

Pyrrhotite is one of the most abundant sulphide gangue minerals in base metal mining operations. It has little economic value and is a significant contributor of SO2 emissions at the smelting stage, thus it is rejected in most concentrators, requiring a concerted effort to ensure it is well separated from valuable minerals. The mineral processing of pyrrhotite is generally understood, however it has many complex crystallographic structures (superstructures) that behave differently in the flotation pulp for which the information is sparse and dispersed throughout the literature. Traditionally, the superstructures were largely isolated into magnetic/non-magnetic circuits and floated separately. Many operations have now transitioned away from magnetic separators, and treat the superstructures in the same flotation circuit where their flotation responses are quite different. Historically, it was perceived that the superstructures behaved virtually the same; whereas, recent work has clearly demonstrated that there are quantifiable differences in their flotation responses. The available information is scattered in the literature and is also plagued with many contradictions, making it very difficult for researchers to retrieve relevant information pertaining to the superstructures. This review aims to reduce the confusion by summarizing the superstructure nomenclature, characterization methods, aqueous stability, surface charges and superstructure-reagent interactions, and available flotation data.
机译:Pyrlotite是基础金属采矿业务中最丰富的硫化硫化物矿物之一。它具有很少的经济价值,是冶炼阶段的SO2排放的重要贡献者,因此它在大多数集中器中被拒绝,需要一致努力确保它与宝贵矿物分开。通常理解PyrrHotite的矿物处理,然而,它具有许多复杂的晶体结构(上部结构),其在浮选纸浆中表现不同地,其中信息稀疏并分散在整个文献中。传统上,上部结构主要被隔离到磁性/非磁性电路中并分开漂浮。现在许多操作已经远离磁分离器,并在相同的浮选电路中处理上层建筑,其中它们的浮选响应是完全不同的。从历史上看,被认为是上层建筑表现得几乎相同;然而,最近的工作明确证明了他们的浮选反应中的可量化差异。可用信息分散在文献中,并且还困扰着许多矛盾,使研究人员非常困难地检索与上层建筑有关的相关信息。本综述旨在通过总结上层建筑命名,表征方法,稳定性,表面电荷和超结构 - 试剂相互作用以及可用的浮选数据来减少混淆。

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