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Beneficiation of Nickel Laterites for HPAL Processing

机译:镍的优势乳房加工

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Nickel laterite HPAL circuits are known for their complexity and have presented a large number of challenges to process engineers worldwide. An attitude commonly encountered by the author is that the beneficiation of the ore is relatively simple and that the difficult problems are in the realms of hydrometallurgy. On a number of occasions beneficiation has become the "poor cousin" in the process design phase. Another common theme is that significant difficulties are encountered when beneficiation circuits are started up, invariably slowing the ramp-up of the remainder of the circuit. In some cases the problems impact on throughput for a long period and can require major rectification capital. The HPAL Ni laterite projects encountered each have their own set of beneficiation problems that need to be understood before an appropriate circuit can be designed. This paper will discuss a range of design issues including geometallurgy, ore characterisation through laboratory testing, the application of appropriate sizing and analytical procedures, the selection of appropriate unit operations, materials handling of plant feed and products and setting meaningful plant design requirements.
机译:镍红土型HPAL电路以其复杂性而闻名,并为全球工程师提供了大量挑战。作者通常遇到的态度是矿石的职业是相对简单的,并且难以存在的问题是潮湿冶金领域。在许多场合,受益者已成为过程设计阶段的“堂兄弟”。另一个常见主题是当受利用电路启动时遇到显着的困难,总是速度减慢电路剩余时间的斜坡。在某些情况下,问题对吞吐量的影响很长时间,可能需要重大的整改资本。遇到的HPAL NI Widerite项目每个都有自己的一组需要在设计适当的电路之前理解的益处问题。本文将讨论一系列的设计问题包括geometallurgy,通过实验室测试,适当的尺寸和分析程序的应用,相应的单元操作的选择,处理厂和饲料产品和设定有意义的厂房设计要求的材料,矿石特征。

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