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Fungal pretreatment of sulfides in refractory gold ores

机译:难处理金矿石中硫化物的真菌预处理

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This study assessed the capability of the fungus, Phanerochaete chrysosporium, to decompose pyrite, arsenopyrite and a sulfide-containing flotation concentrate in an effort to develop a microbial process for pretreating refractory gold ores. The extent of biotransformation was monitored by analyzing for iron, sulfur and arsenic in incubation solutions, and for sulfide sulfur in the residual solids. The results were then expressed as percentages of the initial weights. For arsenopyrite, 1.5 wt.%, 7.2 wt.% and 10.3 wt.% of iron, arsenic and sulfur respectively were present as soluble constituents in the incubation solution within 21 days of fungal treatment, whereas for pyrite, there was 1.2 wt.% iron and 6.0 wt.% sulfur. For the same processing period in the case of the flotation concentrate, 1.8 wt.%, 6.1 wt.% and 10.7 wt.% respectively of iron, arsenic and sulfur remained in solution. Overall, the decomposition of sulfide sulfur in the samples was 15 wt.%, 35 wt.% and 57 wt.% respectively for pyrite, arsenopyrite and the flotation concentrate. Changes in sulfide sulfur concentration and the formation of oxide phases during fungal treatment were confirmed using Raman spectroscopy and X-ray diffraction analysis. These results suggest that P. chrysosporium is a potential microorganism for oxidative decomposition of metal sulfides associated with refractory gold ores.
机译:这项研究评估了真菌Phanerochaete chrysosporium分解黄铁矿,毒砂和含硫化物的浮选精矿的能力,以努力开发用于处理难处理金矿石的微生物工艺。通过分析培养溶液中的铁,硫和砷,以及残留固体中的硫化物硫来监测生物转化的程度。然后将结果表示为初始重量的百分比。对于毒砂,在真菌处理后的21天之内,铁,砷和硫分别以1.5 wt。%,7.2 wt。%和10.3 wt。%作为可溶成分存在,而对于黄铁矿,则为1.2 wt。%。铁和6.0 wt。%的硫。对于浮选精矿,在相同的处理期间,溶液中分别残留有1.8重量%,6.1重量%和10.7重量%的铁,砷和硫。总体而言,黄铁矿,毒砂和浮选精矿中样品中硫化物硫的分解分别为15重量%,35重量%和57重量%。使用拉曼光谱和X射线衍射分析证实了真菌处理过程中硫化物硫浓度的变化和氧化物相的形成。这些结果表明金孢假单胞菌是潜在的微生物,其用于与难处理的金矿石相关的金属硫化物的氧化分解。

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