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Effect of ultraviolet mutagenesis on heterotrophic strain mutation and bioleaching of low grade copper ore 被引量:5

Effect of ultraviolet mutagenesis on heterotrophic strain mutation and bioleaching of low grade copper ore
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摘要 The effect of ultraviolet mutagenesis on a heterotrophic strain(Providencia JAT-1) mutation was studied and bioleaching of low grade copper ore with mutant bacteria was investigated. The results show that the activity of bacteria was improved after ultraviolet mutagenesis; the best irradiation time was 120 s. Compared to the original bacteria, the cells density of mutant bacteria at stationary phase increased by 26% and ammonia produced by mutant bacteria increased by 12%. Higher activity of bacteria leads to a higher copper extraction rate. The bioleaching performance of Providencia JAT-1 was improved after UV mutagenesis. The copper extraction rate with mutant bacteria increased by 10.6% compared to the original bacteria. The ore surface was corroded and the fine particles were absent after bioleaching. Free copper oxide and copper silicates could be leached out easily by using JAT-1; a small part of the copper sulfide can also be leached out. Bioleaching using JAT-1 is more effective than ammonia leaching and copper extraction rate with mutant bacteria was 21.1% higher than that by ammonia leaching under the same condition. The effect of ultraviolet mutagenesis on a heterotrophic strain(Providencia JAT-1) mutation was studied and bioleaching of low grade copper ore with mutant bacteria was investigated. The results show that the activity of bacteria was improved after ultraviolet mutagenesis; the best irradiation time was 120 s. Compared to the original bacteria, the cells density of mutant bacteria at stationary phase increased by 26% and ammonia produced by mutant bacteria increased by 12%. Higher activity of bacteria leads to a higher copper extraction rate. The bioleaching performance of Providencia JAT-1 was improved after UV mutagenesis. The copper extraction rate with mutant bacteria increased by 10.6% compared to the original bacteria. The ore surface was corroded and the fine particles were absent after bioleaching. Free copper oxide and copper silicates could be leached out easily by using JAT-1; a small part of the copper sulfide can also be leached out. Bioleaching using JAT-1 is more effective than ammonia leaching and copper extraction rate with mutant bacteria was 21.1% higher than that by ammonia leaching under the same condition.
作者 WU Ai-xiang HU Kai-jian WANG Hong-jiang ZHANG Ai-qing YANG Ying 吴爱祥;胡凯建;王洪江;张爱卿;杨莹
出处 《Journal of Central South University》 SCIE EI CAS CSCD 2017年第10期2245-2252,共8页 中南大学学报(英文版)
基金 Project(2012BAB08B02)supported by the National Key Technologies R&D Program for the 12th Five-year Plan,China Projects(51304011,51374035)supported by the National Natural Science Foundation of China
关键词 ULTRAVIOLET MUTAGENESIS BIOLEACHING HETEROTROPHIC STRAIN ammonia low grade copper ORE ultraviolet mutagenesis bioleaching heterotrophic strain ammonia low grade copper ore
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