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Geometallurgy in Mineral Sands Deposits - Linking Geological Artifacts to Metallurgy and Mine Planning

机译:矿泉水矿床的地质矿产 - 将地质文物与冶金和矿山规划联系起来

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Somewhat to the surprise of many heavy mineral sands (TiO_2 and zircon) producers, there are important geological structures within their typical placers and aeolian sands deposits that affect plant metallurgical performance. After many years of operations, even experienced producers have encountered unexpected changes in production, product quality and recovery. After looking in all the obvious (but wrong) places, it is recognised that the mine has advanced into ore with different separation characteristics.Metallurgical process response can vary significantly between ore sourced from different geological domains. The mineral characteristics that are exploited for effective separation may be associated with differences in the depositional environment, or be post-depositional in origin. Surface coatings that interfere with electrostatic separation might be associated with paleo-water table movements. Major storm events in the deposition history can also leave distorted mineral assemblage through stranded formations or incisions in older deposits.Apart from the influence on capital and operating costs, geometallurgical variances add another dimension to orebody modelling. Each domain could have specific recovery, mineral assemblage and product quality values to be considered in the value model. Project success is often directly dependent on understanding the geometallurgy of the resource. Tailoring the exploration and early process flow sheet development programs to account for such variances should be standard practice. Such practices have had a chequered history in the mineral sands industry, with sophisticated processes having been developed, only to be shelved for 'economic' reasons, and then once again 'discovered' when problems re-emerge.It is clear that knowledge gained through a higher level understanding of the changing mineral separation characteristics and advance warning of mineral behavioural differences can mean the difference between lost recoveries and disappointed customers or well timed capital plans and maximised revenues.
机译:有些令人惊讶的是许多重型矿物砂(TiO_2和锆石)生产商,他们的典型置剂和海湾砂沉积物中有重要的地质结构,影响植物冶金性能。经过多年的业务,甚至经验丰富的生产商遇到了生产,产品质量和恢复的意外变化。在看完所有明显的(但错误的)的地方后,矿井已经进入矿石,以不同的分离特性。矿石过程反应在不同地质域之间的矿石之间可以显着变化。利用有效分离的矿物特性可能与沉积环境的差异相关,或者在原产地后沉积。干扰静电分离的表面涂层可能与古水位运动有关。沉积历史中的主要风暴事件也可以通过搁浅的矿物组合来留下扭曲的矿物组合,或者在旧的沉积物中留下滞留的矿物组合。从资本和运营成本的影响,地产冶金差异为矿体建模添加了另一个维度。每个域都可以在值模型中具有特定的恢复,矿物组合和产品质量值。项目成功通常直接依赖于了解资源的几何验金。定制勘探和早期流程流程表开发程序,以解释此类差异应该是标准的做法。这种做法在矿物沙滩行业中有一个方格历史,具有复杂的过程,只开发出了精致的进程,只能为“经济”的原因而被搁置,然后再次“发现”问题重新纪录。很明显通过对矿产分离特征的更高级别了解和矿物行为差异的预先警告可能意味着遗失回收率和失望的客户之间的差异或更令人失望的客户或更好的资本计划和最大化的收入。

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