Christopher J Greet
This document provides a comprehensive guide on the optimization of flotation plants, presenting methodologies to identify and solve pertinent problems. The objective is to enhance metallurgical performance through a structured process beginning with the acquisition of quality data from the plant. The methodology encompasses several chapters written by various experts, starting with a case study from the Eureka Mine that illustrates the practical application of problem-solving techniques in real-world scenarios. Subsequent chapters cover essential topics such as existing methods for process analysis, mass balancing of flotation data, and the mineralogical characteristics that influence flotation outcomes. Each chapter addresses specific aspects of the optimization process, offering insights and techniques relevant to both theoretical understanding and practical implementation. By integrating these various components, the guide aims to equip practitioners with the knowledge necessary for effective problem identification, analysis, and resolution in flotation operations. Ultimately, the document serves as a valuable resource for professionals seeking to improve the efficiency and effectiveness of their metallurgical processes.
@article{0d7af278-1cc1-4f08-8a0b-b442028b6f18,
title={Flotation Plant Optimisation: A Metallurgical Guide to Identifying and Solving Problems in Flotation Plants},
author={Christopher J Greet},
year={2010},
language={en}
}TY - JOUR TI - Flotation Plant Optimisation: A Metallurgical Guide to Identifying and Solving Problems in Flotation Plants AU - Christopher J Greet PY - 2010 LA - en ER -
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