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Column bioleaching of low grade copper sulfide ore at extreme conditions for most mineral processing bacteria

机译:低级硫化铜矿石柱生物浸渍在大多数矿物加工细菌的极端条件下

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This study is prompted by the high leaching efficiency of Zijinshan copper bio-heap leaching industrial plant. Bioleaching columns with 100 mm diameter and 1 m height were used to investigate copper bioleaching at different operating conditions. Elevated temperature, high total Fe concentration and high acidity significantly increased copper leaching rate as determined by and residue assays. At 60°C with 50 g/L iron (initial Fe~(3+)/Fe~(2+) ratio 2.5), pH 1.0 and no aeration, of copper extraction by residue assay was achieved after 60 days. However, at 30°C, 5 g/L total Fe, pH 1.5 and no aeration, copper extraction reached 80% and 85% after 90 and 200 days, Real-time PCR assay showed that only 10~5 cells/ml and 2×10~5 cells/g are in solution and on the ore surface at the condition of 60°C, 50 g/L iron and pH 1.0, respectively. In addition, a similar rate was observed in the tests with and without inoculation. Two columns were irrigated with acid mine drainage (AMD) with and without inoculation, respectively. Our results indicate high copper leaching efficiency at extreme conditions for mineral oxidizing bacteria. Inoculation and aeration not necessary in Zijinshan copper mine bio-heap leaching process.
机译:Zijinshan铜生物堆浸出工业厂的高浸出效率提示了这项研究。使用100mm直径和1M高度的生物浸出柱用于在不同的操作条件下研究铜生物浸渍。高温,高总浓度高,高酸度显着提高铜浸出率和残留物测定。在60℃下,用50g / L铁(初始Fe〜(3 +)/ Fe〜(2+)比率2.5),在60天后通过残留测定铜提取的pH 1.0和无通气。但是,在30℃,5g / l总Fe,pH 1.5,没有通气,铜提取达到90%和200天后达到80%和85%,实时PCR测定显示,只有10〜5个细胞/ ml和2 ×10〜5个细胞/ g分别在60℃,50g / L铁和pH 1.0的条件下在溶液中和矿石表面上。此外,在具有和不接种的测试中观察到类似的速率。用酸性矿氨排水(AMD)灌溉两列,分别与未接种。我们的结果表明了矿物氧化细菌的极端条件下的高铜浸出效率。在紫金山铜矿生物堆浸出过程中不需要接种和通气。

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