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Reductive leaching of low-grade manganese oxide ores using pretreated straw as reductant

Authors :
Sun Yang
Fu Gaofeng
Jiang Lan
Sun Yang
Fu Gaofeng
Jiang Lan
Publication Year :
2021

Abstract

The extraction of manganese from a low-grade manganese oxide ore was investigated in the presence of pretreated straw as reductant in sulphuric acid medium. It was found that concentrated sulphuric acid disrupted the structure of cellulose, hemicellulose and lignin of straw, making it possible to hydrolyse into monosaccharide. The effects of stirring speed, reductant/ore mass ratio, sulphuric acid concentration, ore particle size, leaching temperature and leaching time were examined. The optimal leaching conditions were determined as: stirring speed of 300 rpm, reductant/ore mass ratio of 0.3, sulphuric acid concentration of 9% (v/v), particle size of 45-75 microns and temperature of 85 degrees C for 180 min. Under the above conditions, 92.8% manganese and 10.8% iron were extracted. The experimental results indicated that a high manganese leaching efficiency was achieved with a relatively low iron extraction. (Authors.)<br />The extraction of manganese from a low-grade manganese oxide ore was investigated in the presence of pretreated straw as reductant in sulphuric acid medium. It was found that concentrated sulphuric acid disrupted the structure of cellulose, hemicellulose and lignin of straw, making it possible to hydrolyse into monosaccharide. The effects of stirring speed, reductant/ore mass ratio, sulphuric acid concentration, ore particle size, leaching temperature and leaching time were examined. The optimal leaching conditions were determined as: stirring speed of 300 rpm, reductant/ore mass ratio of 0.3, sulphuric acid concentration of 9% (v/v), particle size of 45-75 microns and temperature of 85 degrees C for 180 min. Under the above conditions, 92.8% manganese and 10.8% iron were extracted. The experimental results indicated that a high manganese leaching efficiency was achieved with a relatively low iron extraction. (Authors.)

Details

Database :
OAIster
Notes :
und
Publication Type :
Electronic Resource
Accession number :
edsoai.on1309285488
Document Type :
Electronic Resource