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Carbon Material with High Specific Surface Area Improves Complex Copper Ores’ Bioleaching Efficiency by Mixed Moderate Thermophiles

机译:具有高比表面积的碳材料可通过混合中等嗜热剂提高复杂铜矿石的生物浸出效率

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摘要

The catalysis of carbon materials with different specific surface areas (SSA) (2, 400, 800 and 1200 m 2 /g) on complex copper ores bioleaching by moderately mixed thermophiles was investigated. The copper extractions increased with the rise in SSA of carbon materials. A recovery of 98.8% copper in the presence of 1200 m 2 /g activated carbon was achieved, and improved by 30.7% and 76.4% compared with biotic control and chemical leaching. Moreover, the addition of 1200 m 2 /g activated carbon adsorbed large amount of bacteria, accelerated the oxidation rate of ferrous iron and maintained the solution redox potential at relatively low values, and significantly increased the dissolution of primary copper sulfide (62.7%) compared to biotic control (6.0%). Microbial community succession revealed that activated carbon changed the microbial community composition dramatically. The S. thermosulfidooxidans ST strain gained a competitive advantage and dominated the microbial community through the whole bioleaching process. The promoting effect of carbon material with higher SSA on copper extraction was mainly attributed to better galvanic interaction, biofilm formation, direct contact and lower redox potential.
机译:研究了中度混合嗜热菌对具有不同比表面积(SSA)(2、400、800和1200 m 2 / g)的碳材料在复杂铜矿石生物浸出中的催化作用。铜提取物随着碳材料的SSA的增加而增加。在活性炭为1200 m 2 / g的情况下,铜的回收率为98.8%,与生物防治和化学浸出相比,回收率提高了30.7%和76.4%。此外,添加1200 m 2 / g活性炭可吸附大量细菌,加快了亚铁的氧化速度,并将溶液的氧化还原电势保持在较低的水平,并显着提高了伯硫化铜的溶解度(62.7%)。生物防治(6.0%)。微生物群落演替表明,活性炭极大地改变了微生物群落组成。热硫葡糖氧化酶ST菌株获得了竞争优势,并在整个生物浸出过程中占据了微生物群落的主导地位。具有较高SSA的碳材料对铜提取的促进作用主要归因于更好的电流相互作用,生物膜形成,直接接触和较低的氧化还原电位。

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