Industrial production of medium carbon ferromanganese is accomplished by decarburization of high carbon ferromanganese in an oxygen blown converter. In this study, the possible in situ refinement of high carbon ferromanganese was tested in carbon deficient mixtures of pre-reduced Mamatwan ore, coal char, and silica flux reacted at furnace temperatures of 1450°–1550°C. The resultant phase chemistry was analyzed and interpreted with the aid of thermochemical calculations. Production of carbon unsaturated ferromanganese alloy in the AlloyStream process is explained with reference to laboratory experimental results.http://www.tandfonline.com/loi/gmpr202018-01-23hj2018Materials Science and Metallurgical Engineerin
The production of medium- and low-carbon ferromanganese (M-LCFeMn) using the converter method has no...
Abstract: Investigations on coke-bed relations with acidic manganese ores have been reported number ...
The paper emphasizes the need for development of special carbon reductants for ferroalloy produc...
Industrial production of medium carbon ferromanganese is accomplished by decarburization of high car...
Three pilot-scale experiments have been conducted at SINTEF/NTNU in a 440 kVA AC electric furnace to...
Abstract: During High Carbon Ferromanganese production as well as other reduction processes, the che...
“This work details the research performed on location in Marietta, Ohio in an attempt to determine t...
The SAF (submerged arc furnace) process is most widely used for industrial production of high carbon...
The charge for silicomangansese production consists of manganese ore (often mixed with ferromanganes...
Conventionally low carbon ferromanganese is manufactured globally by refining high carbon ferromanga...
Manganese ore reduction is quite complex at intermediate reaction temperatures of 1100–1400 °C due t...
Manganese ore reduction is quite complex at intermediate reaction temperatures of 1100–1400 C due t...
Abstract: It has been observed that during high carbon ferromanganese using South African ores, some...
The effect of coke and bituminous coal on the reduction of medium-grade manganese ore in ferromangan...
Manganese ore smelting is reviewed in terms of processing parameters such as feed material particle ...
The production of medium- and low-carbon ferromanganese (M-LCFeMn) using the converter method has no...
Abstract: Investigations on coke-bed relations with acidic manganese ores have been reported number ...
The paper emphasizes the need for development of special carbon reductants for ferroalloy produc...
Industrial production of medium carbon ferromanganese is accomplished by decarburization of high car...
Three pilot-scale experiments have been conducted at SINTEF/NTNU in a 440 kVA AC electric furnace to...
Abstract: During High Carbon Ferromanganese production as well as other reduction processes, the che...
“This work details the research performed on location in Marietta, Ohio in an attempt to determine t...
The SAF (submerged arc furnace) process is most widely used for industrial production of high carbon...
The charge for silicomangansese production consists of manganese ore (often mixed with ferromanganes...
Conventionally low carbon ferromanganese is manufactured globally by refining high carbon ferromanga...
Manganese ore reduction is quite complex at intermediate reaction temperatures of 1100–1400 °C due t...
Manganese ore reduction is quite complex at intermediate reaction temperatures of 1100–1400 C due t...
Abstract: It has been observed that during high carbon ferromanganese using South African ores, some...
The effect of coke and bituminous coal on the reduction of medium-grade manganese ore in ferromangan...
Manganese ore smelting is reviewed in terms of processing parameters such as feed material particle ...
The production of medium- and low-carbon ferromanganese (M-LCFeMn) using the converter method has no...
Abstract: Investigations on coke-bed relations with acidic manganese ores have been reported number ...
The paper emphasizes the need for development of special carbon reductants for ferroalloy produc...