Application of Acid Mine Drainage for the Biooxidation of a High-Grade Refractory Sulfide Gold Ore

Author:

Nouhi Elaheh1,Ahmadi Ali1

Affiliation:

1. Isfahan University of Technology

Abstract

Abstract

Acid mine drainage (AMD) is one of the challenging environmental issues in sulfidic mines. These hazardous solutions generally contain a mixture of native iron- and sulfur-oxidizing microorganisms which could be used to a source for biotechnological aims. In this research, the ability of an AMD of a sulfide-bearing gold mine was investigated for the biooxidation of a high-grade pyritic gold ore and its efficiency was compared with iron- and sulfur-oxidizing microorganisms from a microbial culture bank. The experiments were conducted at 35 and 45 ̊C, initial pH values of 1.5 and 2 in a Norris culture medium prepared from deionized and saline local waters. The effects of some critical parameters including, initial pH, and the concentrations of ferrous or ferric sulfate were investigated on the efficiency of the biooxidation process and gold extraction. The results showed that the AMD microorganisms had a more ability to oxidize the sulfide ore than the microorganisms from the microbial bank. The addition of ferrous and ferric sulfates increased the biooxidation efficiency, while high concentrations of these ions caused the formation of inhibitory precipitates (jarosite) and decreased gold extraction. The results showed that biooxidation using the AMD medium in the saline local water increased the extraction of gold from 73–99%. It can be concluded that the application of AMD for the treatment of refractory gold sulfide ores could be an efficient solution for increasing gold extraction and reducing environmental problems.

Publisher

Research Square Platform LLC

Reference20 articles.

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4. Biological leaching of metal contaminated substrates from a passive bioreactor treating mine drainage;Bailey M;Environ Science: Water Res Technol,2018

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