Microwave fragmentation of a synthetic alundum-pyrite ore

W. Yang, C. Pickles, J. Forster
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引用次数: 2

Abstract

ABSTRACT In the mining industry, the comminution process is very inefficient in terms of energy utilisation. Numerous research studies have investigated the use of microwave pre-treatment to fracture ore, prior to subsequent unit operations, such as grinding, flotation and leaching, therefore saving on energy consumption. The objective of the present work was to investigate the microwave fragmentation of a synthetic ore with controllable composition and particle size. The synthetic ore was composed of both a hyperactive material (pyrite) and an active material (alundum cement), which were compacted into a briquette. Heating behaviour, permittivity and thermogravimetric/differential thermal analysis (TGA/DTA) studies were conducted in order to understand the fundamental interactions of powdered samples with microwaves. The briquettes were processed in a microwave system followed by compression testing and image analysis to determine the effects of microwaving on the failure load and the fragmentation degree. It was found that the failure load of the briquettes decreased and the fragmentation degree increased with increasing pyrite particle size, pyrite content, and microwave energy absorption.
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一种合成刚玉黄铁矿矿石的微波破碎
摘要在采矿业中,粉碎过程在能源利用方面效率非常低。许多研究已经调查了在随后的单元操作(如研磨、浮选和浸出)之前使用微波预处理来破碎矿石,从而节省能源消耗。本工作的目的是研究具有可控成分和粒度的合成矿石的微波破碎。合成矿石由超活性材料(黄铁矿)和活性材料(刚玉水泥)组成,它们被压实成团块。进行了加热行为、介电常数和热重/差热分析(TGA/DTA)研究,以了解粉末样品与微波的基本相互作用。在微波系统中处理压块,然后进行压缩测试和图像分析,以确定微波对破坏载荷和破碎程度的影响。研究发现,随着黄铁矿粒径、黄铁矿含量和微波能量吸收的增加,压块的破坏载荷降低,破碎度增加。
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来源期刊
CiteScore
3.50
自引率
0.00%
发文量
6
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