Molybdenite polytypism and its implications for processing and recovery: A geometallurgical-based case study from Bingham Canyon Mine, Utah

Q2 Materials Science Minerals & Metallurgical Processing Pub Date : 2016-08-01 DOI:10.19150/MMP.6752
C. Mcclung
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引用次数: 2

Abstract

Molybdenum, in the form of molybdenite, is a common byproduct of many copper mining and concentrating operations. While the recovery of most copper sulfide minerals is principally liberation controlled, the recovery of molybdenite is much more complex, with fully liberated particles commonly lost to tailings.A geometallurgical investigation was undertaken of molybdenite from the Bingham Canyon deposit with the aim of determining what effects, if any, mineralogy and the mineralogical attributes of morphology, angularity, liberation and size have on molybdenite recovery in the processing circuit. A set of samples was collected from the ores and products of Rio Tinto Kennecott’s Copperton Concentrator. The samples were analyzed by normal polarized reflected light microscopy, X-ray diffractometry, and scanning electron microscopy using a Mineral Liberation Analyzer, revealing the presence of two distinct types of molybdenite, which are the two polytypes: hexagonal (2H) and rhombohedral (3R). The 2H polytype occurs as textbook-shaped particles in quartz-molybdenite veins located in the core of the deposit, while the 3R polytype occurs as disseminated, ball-shaped particles with a dull or frosted appearance along the margins of the mineralized intrusive body or central core. Each polytype exhibited metallurgical properties consistent with those reported in the literature. The 2H polytype is easily ground, kinetically “faster” floating and displays surface attributes that are amenable to higher rates of recovery. This commonly results in the production of a high-quality molybdenum concentrate under normal operating conditions at most copper concentration operations. The 3R polytype is difficult to grind, kinetically “slower” floating and displays surface attributes that are less amenable to recovery. Therefore, in deposits with higher concentrations of the 3R polytype, modifications to operating parameters may be necessary to improve the recovery of molybdenite.A preliminary investigation into the metal budget of porphyry copper and molybdenum deposits indicated a possible positive correlation between total economic metal budget and polytype content. Higher concentrations of the 3R polytype appear to be more prevalent in gold-enriched porphyries than in molybdenum-enriched porphyries. This may help explain why it is easier to obtain higher rates of recovery in molybdenum ± tungsten-rich deposits, which contain little to none of the 3R polytype. There is a potential for the metal budget of a porphyry deposit to be used as an indication of the molybdenite polytype present as well as its impact on the economics, in terms of exploration, and the processing circuit, in terms of plant design.
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钼矿多型性及其对加工和回收的影响:犹他州宾厄姆峡谷矿的一项基于地质冶金的案例研究
钼以辉钼矿的形式存在,是许多铜矿开采和富集作业的常见副产品。虽然大多数硫化铜矿物的回收主要受解离控制,但辉钼矿的回收要复杂得多,完全解离的颗粒通常会消失在尾矿中。对宾厄姆峡谷矿床的辉钼矿进行了地学调查,目的是确定矿物学和矿物学属性(形貌、角度、解离度和大小)对加工回路中辉钼矿的回收率有什么影响(如果有的话)。从里约热内卢Tinto Kennecott铜选矿厂的矿石和产品中采集了一套样品。利用常规偏振光显微镜、x射线衍射仪和扫描电子显微镜对样品进行分析,发现存在两种不同类型的辉钼矿,即六方(2H)和菱形(3R)两种多型。2H多型以教科书形状的颗粒出现在位于矿床核心的石英辉钼矿脉中,而3R多型则以浸染状球形颗粒出现在矿化侵入体或中心核心边缘,其外观暗淡或磨砂。每个多型都表现出与文献报道一致的冶金特性。2H型易于研磨,动态“更快”浮动,并显示出适合更高回收率的表面属性。这通常导致在大多数铜浓缩操作的正常操作条件下生产高质量的钼精矿。3R多型难以研磨,动态“较慢”浮动,并且显示出不易恢复的表面属性。因此,在3R多型矿浓度较高的矿床中,可能需要修改操作参数以提高辉钼矿的回收率。对斑岩型铜钼矿床的金属收支进行了初步调查,结果表明,总经济金属收支与多型含量之间可能存在正相关关系。3R多型在富金斑岩中比在富钼斑岩中更为普遍。这可能有助于解释为什么在含少量或不含3R多型的富钼±钨矿床中更容易获得较高的回收率。斑岩矿床的金属预算有可能被用来指示辉钼矿多型的存在,以及它对经济的影响,在勘探方面,在加工电路方面,在工厂设计方面。
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来源期刊
Minerals & Metallurgical Processing
Minerals & Metallurgical Processing 工程技术-矿业与矿物加工
CiteScore
0.84
自引率
0.00%
发文量
0
审稿时长
>12 weeks
期刊介绍: For over twenty-five years, M&MP has been your source for the newest thinking in the processing of minerals and metals. We cover the latest developments in a wide range of applicable disciplines, from metallurgy to computer science to environmental engineering. Our authors, experts from industry, academia and the government, present state-of-the-art research from around the globe.
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