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AUTOMATED MINERALOGICAL TECHNIQUES –A DRIVE TOWARDS PLANT OPTIMISATION

机译:自动化矿物学技术-A朝向工厂优化

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For years traditional optical microscopic techniques have been used successfully to carry out mineralogical studies on processing products. Essential information could be obtained by supplementing microscopic data with X-ray powder diffraction data, chemical analyses, etc. However, most of the time the mineralogists working on plant related issues, would supply qualitative information to the metallurgists, due to quantification not being possible in the available time. Since the late-80s, the use of semi-automated to automated techniques for mineral quantification has impacted positively on the use of mineralogy for optimising processing plants. Rustenburg Platinum Mines (now Anglo Platinum) were the first mining company to purchase a Qem*Sem in 1987. With the success achieved in quantifying the minerals in the concentrator streams of the Rustenburg Platinum operations, a second instrument was purchased soon after. These instruments have proven invaluable tools in understanding the flotation behaviour of the sulfide and gangue minerals in the various reefs of the Bushveld. Restrictions in the resolution of these earlier instruments, as well as the time involved in searching for and correctly identifying the fine-grained platinum-group minerals (PGM), meant that these investigations focused on the deportment of the more abundant base metal sulfides, rather than on the actual PGM. The Mineral Liberation Analyser (MLA), which became available in the late 1990s, was well suited to detect and analyse minerals occurring in trace amounts such as the PGM. Anglo Platinum was the first mining company to purchase such an instrument and now has fourteen systems operating at the AR Crown Mines site. One of the applications of these systems involves the study of feeds, concentrates and tailings from the various concentrators on a monthly basis. These routine investigations provide information on a variety of mineralogical parameters, including liberation, association, and grain size. Results are used to emphasise areas for improvement, and specifically underline those areas where improvements will have the most impact on recovery. After new or different technologies have been implemented, mineralogical characterisation of the different process streams is an essential component in the assessment of the impact of these changes on flotation performance. In addition, the knowledge is databased for future reference to draw trends across the various concentrators around the Bushveld complex, and is also used for comparative studies when plants experience high losses to tailings. Due to the success of these investigations the question was posed whether it was possible to obtain data on a daily basis, as compositing samples could hide the impact of daily events. Although the instruments currently used are suitable for a research environment, these are not ideal for mine-site implementation. For that reason Anglo Platinum, together with FEI embarked on a development program to develop a system that can be implemented on-site to measure the important mineralogical characteristics on a daily basis. Important requirements for such a system include time-to-data, ease of use and regular quality control. Highlighting some results from concentrator studies, the presentation will review the progress on the development of automated mineralogical techniques for fast, automated mineral measurements.
机译:多年来,已经成功地使用了传统的光学显微技术,以进行处理产品的矿物学研究。通过补充具有X射线粉末衍射数据的微观数据,化学分析等可以获得基本信息,但大多数时候矿物学家在植物相关问题上工作,将提供对冶金主义者的定性信息,因为量化不可能在可用时间。自80年代后期以来,使用半自动化矿物质量化的自动化技术对矿物学的使用积极影响,以优化加工厂。 Restenburg Platinum Mines(现在的Anglo Platinum)是1987年第一家购买QEM * SEM的矿业公司。随着量化矿物流量的矿物质中的成功,即尽快购买第二种仪器。这些仪器已经证明了了解BUSHVELD各种礁石中硫化物和膨胀矿物的浮选行为的宝贵工具。解决这些早期文书的分辨率的限制,以及参与搜索和正确识别细粒铂族群体(PGM)的时间,意味着这些调查集中在诸如碱性硫化物的驱逐,而是而不是实际的pgm。在20世纪90年代后期可用的矿物解放分析仪(MLA)非常适合于检测和分析痕量的矿物质,例如PGM。 Anglo Platinum是第一家购买此类乐器的矿业公司,现在拥有14个系统在Ar Crown Mines网站上运营。这些系统的一个应用涉及每月从各种集中器的饲料,浓缩物和尾矿的研究。这些常规调查提供有关各种矿物学参数的信息,包括解放,关联和粒度。结果用于强调改进区域,具体强调这些改进对恢复影响最大的领域。在实施新的或不同的技术之后,不同过程流的矿物学表征是评估这些变化对浮选性能的影响的重要组成部分。此外,知识数据库是为了将来参考,以在BUSHVELD复合物周围的各种集中器中吸引趋势,并且在植物对尾矿损失高损失时也用于比较研究。由于这些调查的成功,问题是在每天获得数据的问题,因为合成样本可以隐藏日常事件的影响。虽然目前使用的仪器适用于研究环境,但这些不适合排雷现场实施。就此而言,Anglo Platinum以及Fei一起开始开发开发系统,可以在现场实施,以每天测量重要的矿物学特征。对此类系统的重要要求包括数据到数据,易用性和定期质量控制。介绍集中器研究的一些结果,演示将审查快速,自动化矿物测量的自动化矿物技术开发的进展。

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