首页> 外文期刊>Enzyme and Microbial Technology >UV induced mutations in Acidianus brierleyi growing in a continuous stirred tank reactor generated a strain with improved bioleaching capabilities
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UV induced mutations in Acidianus brierleyi growing in a continuous stirred tank reactor generated a strain with improved bioleaching capabilities

机译:紫外线在连续搅拌釜反应器中生长的酸性酸突变产生的菌株具有改善的生物浸出能力

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摘要

Use of microorganisms for bioleaching processes is commonly limited by low tolerance of extreme culture conditions such as temperature,pH,and pulp density.Adaptation to extreme conditions is the main approach for strain improvement.Traditional methods for breeding strains with tolerance of extreme condition are difficult to apply without genetic tools because of many of such strains are not readily purely cultivated in liquid or agar medium.Here,we developed a method using ultraviolet(UV)irradiation for mutation in a continuous stirred tank reactor(CSTR)for screening to improve the bioleaching performance of a poorly characterized strain of Acidianus brierleyi(A.brierleyi).An improved strain developed with our method exhibited a good tolerance to Cu2+ and a high bioleaching rate of chalcopyrite,which was four-fold better than that of a strain selected by traditional adaptation method.We also designed a countercurrent bioleaching process in stirred tanks in series,and copper recovery in 7-8 days at a 15% chalcopyrite pulp density was more than 90% in a two stage countercurrent reactor.
机译:微生物在生物浸出过程中的使用通常受到极端培养条件(例如温度,pH和果肉密度)的低耐受性的限制。适应极端条件是菌株改良的主要方法。传统方法难以繁殖具有极端条件的菌株由于许多这样的菌株不容易在液体或琼脂培养基中纯培养,因此无需遗传工具即可应用。在此,我们开发了一种在连续搅拌釜反应器(CSTR)中使用紫外线(UV)辐照进行突变的方法,以进行筛选,以改善特征性较弱的巴西酸杆菌(A.brierleyi)菌株的生物浸出性能。用我们的方法开发的改良菌株表现出对Cu2 +的良好耐受性和较高的黄铜矿生物浸出率,比通过筛选得到的菌株高四倍。我们还设计了串联搅拌​​槽中的逆流生物浸出工艺,并回收了铜。在两级逆流反应器中,在15%的黄铜矿纸浆密度下7-8天超过90%。

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