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Measuring and Utilising Ore Quality Variability Using Real-time On-belt Elemental Analysis to Improve Mill Feed Quality

机译:使用实时对腰带元素分析来测量和利用矿石质量变异,提高轧机饲料质量

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The focus of this paper is on measuring the composition to improve mill feed quality to minimise the processing of waste, optimise process performance, reduce processing costs and minimise the generation of tailings.Technologies used since the 1990s in the cement and coal industries for measuring conveyed materials have been operationally proven and effectively derisked. Despite this the acceptance by the minerals industry has been very slow except in iron ore. Real-time penetrative full stream measurement using prompt gamma neutron activation analysis (PGNAA) for multielemental analysis and microwave transmission for real-time moisture analysis provide representative, tonnage weighted dry weight per cent results on a minute by minute basis. Analysis is unaffected by particle size, dust, layering/segregation, mineralogy and belt speed. The technologies are explained and performance examples given.The benefits derived from real-time compositional analysis are predicated upon a good understanding of deposit geology, mineralogical associations, waste to ore interfaces, amenability to mining, metallurgical processes and downstream customer requirements. Processing may include basic preparation in the case of direct shipping ores, minor beneficiation using simple upgrading methods, or concentration using more complex processing systems such as flotation, leaching or many others.The value of real-time data from primary crushed conveyed flows, using analysis of increments smaller than a single haul truck's load, is very beneficial in process plants aiming to reduce waste processing, increasing feed grades and increasing metal recoveries. Grade variability can be utilised to divert conveyed increments of waste, direct shipping ore (DSO) quality material bypassing beneficiation, and subeconomic material amenable to upgrading diverted for further preconcentration by particle separation (sorting, heavy medium etc). Paybacks of a few months have been commonly achieved where the real-time technologies have been applied in the minerals sector. The paper outlines proven applications and case studies and proposes some innovative applications.
机译:本文的重点是测量组合物,以提高轧机饲料质量,以最大限度地减少废物加工,优化工艺性能,降低加工成本,最大限度地减少尾矿的产生。自20世纪90年代在水泥和煤炭行业中使用以来的发电,从而测量尾矿。材料已被验证和有效地驾驶。尽管这是矿物质行业的接受,除了铁矿石外的速度非常慢。使用提示伽马中子激活分析(PGNAA)的实时穿透性全流测量用于多元素分析和用于实时水分分析的微波传输提供代表,吨位加权干重量每分钟均匀。分析不受粒度,灰尘,分层/隔离,矿物学和皮带速度影响。解释了技术,并给出了性能实施例。根据对矿床地质,矿物学关联,矿石遗传措施的良好理解,实时组成分析的益处预先理解,矿物质侵入,矿产,冶金过程和下游客户要求。处理可包括在直接发运矿石的情况下,使用简单升级方法的轻微受益的基本准备,或使用更复杂的处理系统,例如浮选,浸出或许多其他浓度。来自初级压碎的输送流量的实时数据的值分析小于单个拖运卡车负荷的增量,在旨在减少废物处理,增加饲料等级和增加金属回收率的过程工厂中是非常有益的。级别可变性可用于转移输出的废物,直接送货矿石(DSO)质量材料旁路,并允许潜在的级化物质通过颗粒分离(分选,重培养基)转移以进行进一步前进的预浓缩。几个月的回报普遍达到了实时技术在矿业部门应用。本文概述了经过验证的申请和案例研究,并提出了一些创新应用。

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