Assessment of the induced effect of selected iron hydroxysulfates biosynthesized using Acidithiobacillus ferrooxidans for biomineralization of acid mine drainage

Author:

Wang Heru1,Guo Qian2,Guo Zehao2,Luo Haowei2,Li Honghu2,Yang Jun23,Song Yongwei2ORCID

Affiliation:

1. a Laboratory Centre for Safety and Environment, Zhongnan University of Economics and Law, Wuhan 430073, China

2. b Department of Environmental Engineering, School of Information and Safety Engineering, Zhongnan University of Economics and Law, Wuhan 430073, China

3. c Institute of Environmental Management and Policy, Zhongnan University of Economics and Law, Wuhan 430073, China

Abstract

Abstract Soluble iron and sulfate in acid mine drainage (AMD) can be greatly removed through the formation of minerals facilitated by seed crystals. However, the difference in the effects of jarosite and schwertmannite as endogenous seed crystals to induce AMD mineralization remains unclear. This paper intends to study the effect of Fe2+ oxidation and Fe3+ mineralization in the biosynthesis of minerals using different addition amounts and methods of jarosite or schwertmannite. The results showed that the addition amount and method of different seed crystals had no effect on the Fe2+ bio-oxidation but would change the Fe3+ mineralization efficiency. With the same amount of seed crystals added, jarosite exhibited a higher capacity to promote Fe3+ mineralization than schwertmannite. Adding seed crystals before the initiation of Fe2+ oxidation (0 h) could significantly promote Fe3+ mineralization efficiency. With the increase of seed crystals, jarosite could not only shorten the time required for mineral synthesis but also improve the final mineral yield, whereas schwertmannite could only shorten the time required for mineral synthesis. When Fe2+ was completely oxidized to Fe3+ (48 h), the supplementary of jarosite could still effectively improve Fe3+ mineralization efficiency, but the addition of schwertmannite no longer affected the final mineralization degree.

Funder

National Natural Science Foundation of China

Fundamental Research Funds for the Central Universities

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

Reference38 articles.

1. Acid Mine Drainage (AMD): causes, treatment and case studies

2. Effects of microbial inoculation density and mineral collection time on the formation of secondary iron minerals in bioleach;Bai;Chin. J. Microbiol.,2011a

3. Effects of monovalent cations and water-soluble organic matter on the formation of secondary iron minerals by bioleach;Bai;Acta Mineral. Sin.,2011b

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