Bath smelting and converting technologies for copper production have been improved, resulting in higher production efficiency and less polluting emissions. Reported studies on experimental and computational modeling approaches are reviewed in this paper, focusing on adjustable variables and flow details, for a thorough understanding of the complex flow phenomena of the high-temperature reactors used. Results from water models and Computational Fluid Dynamics (CFD) simulations indicate that the transport phenomena in different reactors should be analyzed separately, as flow behavior exhibits significant differences in different gas injecting regimes and furnace structures. Mixing behavior and further optimization for most furnaces are presen...
Impeller-stirred mixing is one of the most important processes employed throughout the chemical, met...
Metal is now produced from ore in novel single reactors. These converters provide substantial improv...
This study uses a water model experiment to investigate the effects of gas bottom blowing conditions...
Bath smelting and converting technologies for copper production have been improved, resulting in hig...
A commercial scale bottom-blown copper smelting furnace started operation in 2008 by Fangyuan Nonfer...
The bottom-blown copper smelting furnace is a novel copper smelter developed in recent years. Many a...
The first commercial bottom blown oxygen copper smelting furnace has been installed and operated at ...
The first commercial bottom blown oxygen copper smelting furnace has been installed and operated at ...
The injection dynamics and related accretion build up, as well as bath motion and heat losses in cop...
Funding Information: Open access funding provided by Aalto University. This work was supported by th...
In the copper smelting process, sulfides are oxidized by the injected oxygen in the liquid bath. The...
The effectivity of present copper smelting technologies have their roots in industrial and laborator...
A Computational Fluid Dynamics modelling of gas injections in a top submerged lance smelting unit wa...
The waves formed on bath surface play an important role in the bottom blown copper smelting furnace ...
In recent years, a bottom blown copper melting technology has been developed by Fangyuan Nonferrous ...
Impeller-stirred mixing is one of the most important processes employed throughout the chemical, met...
Metal is now produced from ore in novel single reactors. These converters provide substantial improv...
This study uses a water model experiment to investigate the effects of gas bottom blowing conditions...
Bath smelting and converting technologies for copper production have been improved, resulting in hig...
A commercial scale bottom-blown copper smelting furnace started operation in 2008 by Fangyuan Nonfer...
The bottom-blown copper smelting furnace is a novel copper smelter developed in recent years. Many a...
The first commercial bottom blown oxygen copper smelting furnace has been installed and operated at ...
The first commercial bottom blown oxygen copper smelting furnace has been installed and operated at ...
The injection dynamics and related accretion build up, as well as bath motion and heat losses in cop...
Funding Information: Open access funding provided by Aalto University. This work was supported by th...
In the copper smelting process, sulfides are oxidized by the injected oxygen in the liquid bath. The...
The effectivity of present copper smelting technologies have their roots in industrial and laborator...
A Computational Fluid Dynamics modelling of gas injections in a top submerged lance smelting unit wa...
The waves formed on bath surface play an important role in the bottom blown copper smelting furnace ...
In recent years, a bottom blown copper melting technology has been developed by Fangyuan Nonferrous ...
Impeller-stirred mixing is one of the most important processes employed throughout the chemical, met...
Metal is now produced from ore in novel single reactors. These converters provide substantial improv...
This study uses a water model experiment to investigate the effects of gas bottom blowing conditions...