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A process mineralogy approach to geometallurgical model refinement for the Namakwa Sands heavy minerals operations, west coast of South Africa

机译:南非西海岸Namakwa Sands重矿物运营的过程矿物学方法用于地球冶金模型精炼

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摘要

The original geometallurgical model for the Namakwa Sands deposit was modified to accommodate ore blends in addition to the various single ore types. A process mineralogy approach was followed in a structured and systematic manner to evaluate the integrity of the adjusted model, particularly for ilmenite and zircon, the minerals of highest intrinsic value. This study reproduced recovery relationships predicted by the geometallurgical model for each of the key process functions, and as a result the integrity of the geometallurgical model is validated. Overall, the recovery potential determined for ilmenite and zircon are well adjusted to model estimates. Poor mineral liberation, an anomalously high abundance of garnet and pyroxene and variation in particle chemistry are recognized as the key recovery penalties. The gan-gue content is the most significant constraint to ilmenite recovery, whereas zircon chemistry is the most important negative factor in the production of a premium quality zircon product. Results of this study contributed to the refinement of the current geometallurgical model and also identified opportunities to optimise mineral resource utilisation in the future.
机译:修改了Namakwa Sands矿床的原始地质冶金模型,以适应各种单一矿石类型之外的矿石混合物。随后采用结构化和系统化的工艺矿物学方法来评估调整后模型的完整性,尤其是对于钛铁矿和锆石(具有最高内在价值的矿物)而言。这项研究再现了由冶金模型预测的每个关键过程功能的采收率关系,因此,验证了冶金模型的完整性。总体而言,对钛铁矿和锆石确定的采收潜力进行了很好的调整,以建立模型估算值。不良的矿物释放,异常丰富的石榴石和辉石以及颗粒化学成分的变化被认为是关键的回收处罚。 gan-gue含量是钛铁矿回收的最重要限制因素,而锆石化学是优质锆石产品生产中最重要的负面因素。这项研究的结果有助于改进当前的地球冶金模型,并且还确定了未来优化矿产资源利用的机会。

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