Author1, Author2, Unnamed Author
This chapter discusses alternative strategies for producing 65% copper matte through variations in blast composition, oil quantity, and temperature. The objective is to identify combinations that can achieve steady production of molten 65% Cu matte at 1500 K from pure chalcopyrite concentrate. Methodologically, the chapter extends previous calculations by analyzing different blast composition options, oil input levels, and blast temperatures, utilizing referenced tables for organized calculation sequences. The results indicate that maximum oxygen enrichment in the smelting process minimizes offgas production, thereby potentially increasing the concentrate throughput rate and reducing off gas treatment costs. Additionally, the chapter provides a pathway for addressing increased conductive, convective, and radiative heat loss expected in furnace operations, presenting specific cases for determining necessary operational combinations. This analysis paves the way for further examination of conditions to optimize production and manage heat loss effectively.
@article{64e7fdb0-44d1-4b11-8a6c-df0c4586de14,
title={Alternative Strategies for Producing 65% Cu Matte},
author={Author1 and Author2 and Unnamed Author},
year={1965},
language={en}
}TY - JOUR TI - Alternative Strategies for Producing 65% Cu Matte AU - Author1 AU - Author2 AU - Unnamed Author PY - 1965 LA - en ER -
Mark E. Schlesinger, Matthew J. King
This book presents a comprehensive overview of the principles and practices of copper extraction metallurgy. The objective is to provide both a theore
The leachability tests for manufacturing scrap TV boards (STVB) have indicated the release of metals beyond the limit levels with potential problems f
Alain Vignes
Extractive metallurgy is a critical field that encompasses the processes involved in the extraction of valuable metals from their ores. This work serv
Copper solvent extraction units at large hydrometallurgical plants face constraints in metal recovery, phase disengagement, and reagent consumption, d
L. Aspola, R. Matusewicz
The platinum group metals (PGMs), i.e. ruthenium, rhodium, palladium, osmium, iridium, and platinum, are typically found in association with each othe
Lkhamtogmid Nyamjargal, Ganbat Batdemberel, Gunchin Burmaa, Dashdendev Burmaa
This study was undertaken to develop a cost-effective method of copper leaching in sulfide concentrate involving minerals as chalcopyrite and pyrite.