An overview on potential hydrometallurgical processes for separation and recovery of manganese

Authors

  • Dr.Sanghamitra Pradhan Department of Chemistry, Institute of Technical Education and Research (FET), Siksha -›O’ Anusandhan Deemed to be University, Khandagiri Square, Bhubaneswar-751030, Odisha, India
  • Ms.Muskan Ram Department of Chemistry, Institute of Technical Education and Research (FET), Siksha -›O’ Anusandhan Deemed to be University, Khandagiri Square, Bhubaneswar-751030, Odisha, India
  • Prof.Sujata Mishra Department of Chemistry, Institute of Technical Education and Research (FET), Siksha -›O’ Anusandhan Deemed to be University, Khandagiri Square, Bhubaneswar-751030, Odisha, India

DOI:

https://doi.org/10.30544/560

Keywords:

Manganese ; Ores ; Leaching ; Solvent extraction ; Post-consumer products.

Abstract

With rapid economic progress worldwide, the search for new resources for materials has become a priority due to mineral resource depletion. Enhanced requirements for manganese alloys and compounds for several commercial applications created a desperate demand for manganese recovery technologies from primary as well as secondary resources. The future demand for manganese alloys and compounds is expected to increase. The growing need of electrolytic manganese dioxide (EMD) for different battery usage in automobile and energy sectors could create a gap in the supply and demand of manganese. There is an urgent necessity for eco-friendly and efficient technologies to boost the production of manganese from low-grade ores as well as post-consumer products. The framework of effective leaching processes and proper solvent extraction techniques for the recovery of manganese could be a novel pathway to get a clean, green and healthy environment for a sustainable future in the automotive and energy segment where this metal has a significant contribution.

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Published

2020-11-19

How to Cite

Pradhan, Dr.Sanghamitra, Ms.Muskan Ram, and Prof.Sujata Mishra. 2020. “An Overview on Potential Hydrometallurgical Processes for Separation and Recovery of Manganese”. Metallurgical and Materials Engineering 27 (2):243-58. https://doi.org/10.30544/560.

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Section

Hydrometallurgical operations and processes