1020;The TSL Ausmelt Furnace project also cooperates with Outotec a technology provider that owns this technology. PT TIMAH Tbk spent an investment of IDR 1.2 trillion for
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SMELTING AT THE BEGINNING OF THE 21ST CENTURY Andreas Siegmund RSR Technologies, Inc. 2777 Stemmons Freeway, Dallas, TX 75207 Abstract During the decade of
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2017327;AUSMELT PROCESS Over a period of more than 40 years, the Ausmelt Process has been used for processing copper, nickel, lead, tin, zinc and precious metal
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Oxygen-enriched top-blowing submerged lance bath smelting technology (TSL technology) includes ISA process and Ausmelt process, both of which use vertical cylindrical metallurgical
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2019818;It also compares the energy efficiency of the Ausmelt Process against the Bottom Blown Smelting process, which has become widely adopted in China over the past
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2017327;Over a period of more than 40 years, the Ausmelt Process has been used for processing copper, nickel, lead, tin, zinc and precious metal
Based on Top Submerged Lance (TSL) technology, the Ausmelt TSL Process has become a leading smelting technology due to its versatility, cost efectiveness and environmental
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purification, solvent extraction, Ausmelt TSL smelting, electrowinning and casting tech-nologies as well as concentrator and sulfuric acid plants. We offer one-of-a-kind technology solutions
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2017327;AUSMELT PROCESS Over a period of more than 40 years, the Ausmelt Process has been used for processing copper, nickel, lead, tin, zinc and precious metal
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Ausmelt has developed a process that allows the production of blister copper from copper concentrates, using either one or two furnaces depending on the scale of the operation.
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Dedicated Ausmelt batch converting furnaces have subsequently been installed at several larger scale smelters for the processing of copper matte from Ausmelt smelting furnaces (Table 2).
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CONFIDENTIAL Ausmelt Primary Smelter Design & Costing Study AUS933-15000 A-2 May 2001, Revision 0 A project overviewand description f the Ausmelt furnace are detailed ino section 2,
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20081012;O ver more than 25 years Ausmelt (www.ausmelt.com. au) has explored the many possible innovative applications of Top Submerged Lance (TSL) technology to process
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20161114;Non-ferrous smelting and copper smelting in particular, have witnessed a continual evolution of processing technologies in response to
In the copper industry, the Ausmelt Process. efficiency. This paper provides a summary of how explosion in uptake of the technology in copper. Fig. 1. Ausmelt Process cumulative feed
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an Ausmelt installation by comparison with an alternative type of furnace with the same smelting capacity. As noted previously, the specific smelting rate per square metre of hearth area is an
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202443;Smelting reduction processes are used to reduce iron ore to produce pig iron. The process combines coal gasification with melt reduction of iron ore, eliminating the need for
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The Outotec® Ausmelt Direct Zinc Smelting process (henceforth Outotec® DZS process) involves the pyrometallurgical treatment of zinc sulphide concentrates to recover zinc in the form of a zinc-
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2019818;It also compares the energy efficiency of the Ausmelt Process against the Bottom Blown Smelting process, which has become widely adopted in China over the past
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202426;As the world’s fourth largest tin producer, PT Timah is familiar with large-scale smelting operations. In an effort to maximize productivity and
Table 1: Outotec Ausmelt smelting and converting operations for Ni-containing materials elient Location Year Feed Desi n Product Jilin China 2009 Concentrate 275,000 LG Matte Jinchuan
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The Outotec® Ausmelt Direct Zinc Smelting process (henceforth Outotec® DZS process) involves the pyrometallurgical treatment of zinc sulphide concentrates to recover zinc in the form of a zinc-
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2007101;Today Ausmelt Technology is regarded as a highly efficient processing technology, with continual developments giving Ausmelt
Based on its revolutionary top entry submerged lance, the application of Ausmelt technology to the production of blister copper introduces significant advantages in capital and operating
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200711;The thermodynamics of smelting, reduction and fuming of zinc and/or lead in Ausmelt furnaces have been discussed elsewhere for: lead and zinc recovery from lead
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1130; has modernized its Ausmelt® TSL smelting pilot testwork facility in Melbourne, Australia, to enable testing of gaseous hydrogen as both a fuel and chemical
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1012;Part I of this series of papers focuses on plant and reactor engineering aspects of the TSL reactor technology. A general flowsheet is presented, while emphasis is given to
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CONFIDENTIAL Ausmelt Primary Smelter Design & Costing Study AUS933-15000 A-2 May 2001, Revision 0 A project overviewand description f the Ausmelt furnace are detailed ino section 2,
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