Fusion of molten phase R&D into the metallurgical industry to drive circularity

The Australasian Institute of Mining and Metallurgy
S Nikolic A Burrows S L. Nicol O J. Mendoza B J. Hogg
Organization:
The Australasian Institute of Mining and Metallurgy
Pages:
10
File Size:
1643 KB
Publication Date:
Aug 21, 2024

Abstract

The top submerged lance (TSL) technology, developed in the 1970s, is now widely used for the processing of a range of materials. The key advantage the ISASMELT™ TSL technology provided was the ability to process feed materials in a highly turbulent bath, reaching close to equilibrium conditions, uniquely allowing for operation below the liquidus of the molten slag phase. The details on what happened below the liquidus line in the phase diagram became critical for the successful operation of the technology. During the development of the ISASMELT™ technology this led to a collaboration between the Process Technology group of Mount Isa Mines, now part of Glencore Technology, and the Pyrometallurgy Research Centre (PYROSEARCH) at The University of Queensland. The fusion of the phase equilibria research into the technology development allowed for understanding of the behaviour of molten splash, reliable tapping of the furnace, and the ability to operate the furnace with a refractory lining and achieve a year campaign life in excess of four years. The outcome has allowed for the highly successful adaption of the ISASMELT™ technology to recycling of complex feed streams necessary to drive circularity in our modern global economy.
Citation

APA: S Nikolic A Burrows S L. Nicol O J. Mendoza B J. Hogg  (2024)  Fusion of molten phase R&D into the metallurgical industry to drive circularity

MLA: S Nikolic A Burrows S L. Nicol O J. Mendoza B J. Hogg Fusion of molten phase R&D into the metallurgical industry to drive circularity. The Australasian Institute of Mining and Metallurgy, 2024.

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