Microwave efficient extraction of manganese from low-grade pyrolusite by pyrite reduction acid leaching process
Author:
Funder
National Natural Science Foundation of China
Publisher
Elsevier BV
Subject
Metals and Alloys,Surfaces, Coatings and Films,Biomaterials,Ceramics and Composites
Reference48 articles.
1. Study on the high-efficiency separation of Fe and Mn from low-grade pyrolusite and the preparation of LiMn2O4 materials for lithium-ion batteries;Li;Sep Purif Technol,2021
2. Study on thermochemical characteristics properties and pyrolysis kinetics of the mixtures of waste corn stalk and pyrolusite;Du;Bioresour Technol,2021
3. Effect of iron–manganese–sepiolite as heterogeneous Fenton-like catalyst on the performance and microbial community of anaerobic granular sludge treatment system;Su;Bioresour Technol,2016
4. Electromagnetic characteristics of nanometer manganese dioxide composite materials;Guan;J Electron Mater,2006
5. Pilot-scale study on enhanced carbothermal reduction of low-grade pyrolusite using microwave heating;Li;Powder Technol,2020
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4. Co-recovery of Mn and Fe from pyrolusite and copper slag with hydrometallurgy process: Kinetics and leaching mechanisms;Environmental Science and Pollution Research;2023-11-27
5. An efficient and clean method for the selective extraction and recovery of manganese from pyrolusite using ammonium sulfate roasting-water leaching and carbonate precipitation;Minerals Engineering;2023-11
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