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首页> 外文期刊>Hydrometallurgy >Bioleaching of arsenopyrite from Janggun mine tailings (South Korea) using an adapted mixed mesophilic culture
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Bioleaching of arsenopyrite from Janggun mine tailings (South Korea) using an adapted mixed mesophilic culture

机译:来自Janggun Min Silings(韩国)的砷黄石的生物浸润使用适应的混合培养基培养物

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This article explores a heap bioleaching technology for the removal of arsenic (As) from mine tailings using the GEOCOAT (TM) technique. Small-scale columns were operated at fixed temperatures of 20 degrees C, 30 degrees C, and 45 degrees C and at ramped-up temperatures from 25 degrees C to 45 degrees C using a mixed mesophilic acidophilic iron and sulfur oxidizing microbial culture, adapted to high As concentration (20 g/L). The packed-bed columns were filled with inert granite pebbles coated with Janggun Mine tailings, irrigated with a 1 g/L ferrous-enriched 0 K medium and aerated with 200 mL/min compressed air, To study the microbial colonization at various stages of the leaching process relative to the initial inoculum, the ramped-up-temperature experiment was conducted in triplicate and the columns were sacrificed after different leaching periods. The fixed-temperature column samples were sampled upon the termination of each experiment, for microbial speciation of the culture attached to the mineral during the leaching of the ore. The As that was released into the solution, the iron oxidation rates, the pH and the redox potential were used to assess the leaching performance of each column. A triangulation of the results between the fixed and the ramped-up temperatures allowed determination of the influence of temperature on As leaching kinetics and microbial distribution. 94-97% As removal was achieved among the various column experiments, 88 days after inoculation. The results showed that increased temperature induced an increased lag in the As leaching phase. Temperature also affected the abundance of acidophilic microorganisms present in the combined bulk volume of the column and on the mine tailings. The mesophilic bacterial species Acidithiobacillus caldus and Leptospirillum ferriphilum were the dominant biooxidation species ( 60%) in both the inoculum applied to the columns and in Col. A operated at a fixed 20 degrees C. Increased incubation temperature resulted in a decrease in the number of bacterial cells; however, the number of archaeal cells remained similar with a resulting increase in the archaeal dominance at 45 degrees C. The ramped-up temperature study showed similar results with an increase in both cell numbers and archaeal dominance between day 42 and 84. Overall, this study demonstrated the feasibility of As detoxification from the Janggun Mine tailings using microbial heap leaching.
机译:本文探讨了使用Geocoid(TM)技术从矿山尾矿中移除砷(AS)的堆生物浸出技术。在20摄氏度的固定温度下,使用混合的嗜苯胺嗜酸性熨斗和硫氧化微生物培养,在20℃,30℃和45摄氏度的固定温度下,在25摄氏度至45摄氏度下,在升温温度下操作小尺寸柱。高于浓度(20g / l)。填充床柱填充有Janggun矿山尾矿的惰性花岗岩鹅卵石,用1g / l铁富含0k培养基灌溉,用200ml / min压缩空气充气,以研究在各个阶段的微生物殖民化浸出过程相对于初始接种物,斜坡上升温度实验一式三份进行,并在不同的浸出期后处死柱。在每个实验的终止时对固定温度柱样品进行取样,用于在矿石的浸出期间附着于矿物质的培养物的微生物形态。作为释放到溶液中的原料,铁氧化率,pH和氧化还原潜力被释放到溶液中,用于评估每列的浸出性能。固定和斜坡温度之间的结果的三角测量允许测定温度对浸出动力学和微生物分布的影响。在接种后88天的各种柱实验中实现了94-97%,在各种柱实验中实现。结果表明,随着浸出阶段诱导延迟增加的滞后,结果表明。温度还影响了柱的组合批量体积和矿井尾矿中存在的嗜酸性微生物的丰富。嗜培素的细菌种类酸酐和百分之菌菌状物是在施加到柱和Col.的含有型接种物中的主要生物氧化物质(& 60%),在固定的20摄氏度下操作。增加孵育温度导致了下降细菌细胞数量;然而,在45摄氏度下,抗颅骨细胞的数量保持类似的古代统治性的增加。斜坡上升的温度研究显示出类似的结果,在第42天和84天之间的细胞数和古代占主导地际的增加。总体而言,这研究证明了使用微生物堆浸出的Janggun Min尾矿的解毒可行性。

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