Feasible Bioprocessing Technologies for Low-Grade Iron Ores

Society for Mining, Metallurgy & Exploration
M. M. Zhang H. X. Li M. Andrade W. Xuan A. Correa
Organization:
Society for Mining, Metallurgy & Exploration
Pages:
10
File Size:
767 KB
Publication Date:
Jan 1, 2015

Abstract

"With increasing demand for steel and depletion of high-grade iron ore deposits, more research efforts are being directed toward extending the life of existing ore reserves and developing technology to treat low-grade iron ore resources. Among all the reported technologies, biotechnologies in mineral processing – specifically bioleaching and microbially induced flotation – have emerged to be considered as low-cost, environmentally friendly potential alternatives to many of the current mineral processing techniques. This paper provides a comprehensive review of current research on the use of microorganisms for iron ore beneficiation and, further, discusses the applicability of bioleaching, bioflotation and bioflocculation for the beneficiation of low-grade iron ores.IntroductionIncreasing global demand for raw materials has led to diminishing resources of high-grade iron ore. As a result, the mining and utilization of low-grade hematite, limonite, specularite, siderite and goethite ores have attracted more and more attention. However, these types of iron ores are of complex paragenesis and fine disseminated grain size, and often contaminated by phosphorus in the form of solid solution. The distribution of phosphorus throughout the iron mineral crystals prevents the effective use of physical separation techniques, and these complex ores are at present largely untapped due to a lack of cost-effective and efficient processing methods. Chemical leaching and roasting-magnetic separation approaches have been mainly tested only on the laboratory scale and are all either cost prohibitive or ineffective when used on low-grade complex iron ores."
Citation

APA: M. M. Zhang H. X. Li M. Andrade W. Xuan A. Correa  (2015)  Feasible Bioprocessing Technologies for Low-Grade Iron Ores

MLA: M. M. Zhang H. X. Li M. Andrade W. Xuan A. Correa Feasible Bioprocessing Technologies for Low-Grade Iron Ores. Society for Mining, Metallurgy & Exploration, 2015.

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