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Shi, Xian-Ai (Shi, Xian-Ai.) [1] (Scholars:石贤爱) | Li, Cong-Ying (Li, Cong-Ying.) [2] | Lin, Hui (Lin, Hui.) [3] | Meng, Chun (Meng, Chun.) [4] (Scholars:孟春) | Guo, Yang-Hao (Guo, Yang-Hao.) [5] (Scholars:郭养浩)

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Abstract:

The mechanism and characteristics of Meizhou chalcopyrite bioleaching by Acidianus brierleyi were studied. Adsorption of Acidianus brierleyi on the surface of ore was correlated with the Langmuir isotherm, the maximum adsorption capacity, XAm, was 5.00×108 cell/g, the adsorption equilibrium constant, KA, was 5.88 ×10-7 mL/cell. Bioleaching of Meizhou chalcopyrite by Acidianus brierleyi proceeded mainly with the direct bacterial oxidation. The bioleaching rate of copper solely by Acidianus brierleyi was 0.0137 g/(L·h), 6 times of the chemical oxidation rate of Fe3+. The bioleaching rate of Meizhou chalcopyrite by Acidianus brierleyi (65°C) was 16 times as that of Thiobacillus ferrooxidans (31°C). The optimal temperature of growth and leaching with Acidianus brierleyi was 65°C, the optimal pH of growth was 2.0, whereas the optimal pH of bioleaching was 1.5. Acidianus brierleyi would have a potential perspective in industrial application, as it could leach 91.3 percent of copper in Meizhou chalcopyrite within 10 days.

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Source :

The Chinese Journal of Process Engineering

ISSN: 1009-606X

CN: 11-4541/TQ

Year: 2005

Issue: 3

Volume: 5

Page: 332-336

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ESI Highly Cited Papers on the List: 0 Unfold All

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30 Days PV: 2

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