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首页> 外文期刊>Brazilian journal of chemical engineering >EFFECT OF Acidithiobacillus thiooxidans -CYSTEINE INTERACTIONS ON PYRITE BIOOXIDATION BY Acidithiobacillus ferrooxidans IN THE PRESENCE OF COAL COMPOUNDS
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EFFECT OF Acidithiobacillus thiooxidans -CYSTEINE INTERACTIONS ON PYRITE BIOOXIDATION BY Acidithiobacillus ferrooxidans IN THE PRESENCE OF COAL COMPOUNDS

机译:煤炭化合物存在下硫代酸性硫代细菌-半胱氨酸相互作用对铁氧代酸性硫代细菌对黄铁矿生物氧化的影响

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This study evaluated the biooxidation of pyrite contained in a Colombian coal (2.38 mm particle size 0.50 mm). The variables were cysteine concentration (0-600 mg/L) and culture type (pure Acidithiobacillus ferrooxidans (ATCC 23270) and a consortium of Acidithiobacillus thiooxidans (ATCC 15494) and Acidithiobacillus ferrooxidans ). Pyrite oxidation for the assays without cysteine was 31.14% after 12 days. In the presence of pure A. ferrooxidans , oxidation increased by 8.18% in the assays containing 60 mg Cys/L. In contrast, the counterpart using the consortium exhibited a significant increase in redox potential, which improved oxidation by 28.44%. Since all the assays had a similar kaolinite removal (around 31.45%), and the experiments without cysteine did not show differences in behaviour, the A. thiooxidans -cysteine interactions might have been responsible for increasing Fe 3+ regeneration, alleviating the toxic effect of Al 3+ ion dissolution, thus improving pyrite oxidation. The consortium-cysteine-coal interactions contrasted with those proposed by other authors for A. ferrooxidans -cysteine-pure pyrite and A. thiooxidans -cysteine, indicating different metabolic pathways in the presence of inorganic and organic coal matrices. On the other hand, the biooxidation rate decreased for both cultures in the presence of 600 mg Cys/L, showing similar inhibition to that reported in the literature.
机译:这项研究评估了哥伦比亚煤炭(2.38毫米<粒度<0.50毫米)中所含黄铁矿的生物氧化作用。变量为半胱氨酸浓度(0-600 mg / L)和培养类型(纯酸性氧化亚铁杆菌(ATCC 23270)和酸性氧化亚硫杆菌(ATCC 15494)和酸性氧化亚铁细菌的财团)。 12天后,不含半胱氨酸的测定的黄铁矿氧化率为31.14%。在纯铁氧化农杆菌存在下,在含60 mg Cys / L的测定中,氧化增加了8.18%。相反,使用该财团的对方显示出氧化还原电势的显着增加,从而使氧化改善了28.44%。由于所有测定法都具有相似的高岭石去除率(约31.45%),并且没有半胱氨酸的实验没有表现出不同的行为,因此硫代农杆菌-半胱氨酸的相互作用可能是增加Fe 3+再生的原因,从而减轻了Fe 3+的毒性作用。 Al 3+离子溶解,从而改善黄铁矿氧化。联盟-半胱氨酸-煤炭的相互作用与其他作者提出的关于铁氧化农杆菌-半胱氨酸-纯黄铁矿和硫代氧化农杆菌-半胱氨酸的相互作用形成对比,表明存在无机和有机煤基质时,代谢途径不同。另一方面,在600 mg Cys / L的存在下,两种培养物的生物氧化率均降低,显示出与文献报道相似的抑制作用。

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