TY - JOUR
T1 - Enhancement effects of distiller's dried grains as reducing agents on the kinetics and leaching of pyrolusite from manganese ore
AU - Liu, Dongjie
AU - Gao, Lei
AU - Chen, Guo
AU - Zhou, Junwen
AU - Guo, Shenghui
AU - Omran, Mamdouh
AU - Chen, Jin
N1 - Publisher Copyright:
© 2022 The Author(s)
PY - 2022/7/1
Y1 - 2022/7/1
N2 - To solve the problem of environmental pollution, Distiller's dried grains (DDGS), a biomass, is used as a clean reducing agent for the leaching process of pyrolusite. Experimental results have shown that the leaching rate of manganese can reach 92.1% with the optimized conditions including a sulfuric acid concentration of 3.5 mol/L, a DDGS to pyrolusite ratio of 0.4, a liquid–solid ratio of 3 mL/g, a temperature of 363K, a time of 3 h, and a rotation speed of 400 rpm. This article explored the mechanism of the entire leaching process: the crude fiber in DDGS is hydrolyzed into reducing sugars, and the MnO2 in pyrolusite undergoes an oxidation–reduction reaction to generate Mn2+ and studied the kinetics of the leaching process following the unreacted shrinkage nuclear reaction model controlled by the surface chemical reaction (1-(1-X)1/3 = kt). The equation of leaching kinetics is [formula presented]0.25·[rpm]0.09·exp(−48.448/(RT)) This work provides a green and effective leaching process for the leaching of pyrolusite.
AB - To solve the problem of environmental pollution, Distiller's dried grains (DDGS), a biomass, is used as a clean reducing agent for the leaching process of pyrolusite. Experimental results have shown that the leaching rate of manganese can reach 92.1% with the optimized conditions including a sulfuric acid concentration of 3.5 mol/L, a DDGS to pyrolusite ratio of 0.4, a liquid–solid ratio of 3 mL/g, a temperature of 363K, a time of 3 h, and a rotation speed of 400 rpm. This article explored the mechanism of the entire leaching process: the crude fiber in DDGS is hydrolyzed into reducing sugars, and the MnO2 in pyrolusite undergoes an oxidation–reduction reaction to generate Mn2+ and studied the kinetics of the leaching process following the unreacted shrinkage nuclear reaction model controlled by the surface chemical reaction (1-(1-X)1/3 = kt). The equation of leaching kinetics is [formula presented]0.25·[rpm]0.09·exp(−48.448/(RT)) This work provides a green and effective leaching process for the leaching of pyrolusite.
KW - Distiller's dried grains
KW - Hydrometallurgical
KW - Leaching kinetics
KW - Manganese leaching efficiency
KW - Pyrolusite
UR - http://www.scopus.com/inward/record.url?scp=85143997551&partnerID=8YFLogxK
U2 - 10.1016/j.jmrt.2022.07.005
DO - 10.1016/j.jmrt.2022.07.005
M3 - Article
AN - SCOPUS:85143997551
SN - 2238-7854
VL - 19
SP - 4270
EP - 4281
JO - Journal of Materials Research and Technology
JF - Journal of Materials Research and Technology
ER -