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Chloride ion tolerance and pyrite bioleaching capabilities of pure and mixed halotolerant, acidophilic iron- and sulfur-oxidizing cultures

机译:氯化物离子耐受性和硫酸盐的纯和混合卤素,嗜酸铁和硫氧化培养物的能力

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摘要

The search for halotolerant acidophilic microorganisms to increase the efficiency of bioleaching processes in regions of fresh water scarcity has been ongoing for the past two decades. In this study, three pure cultures (V6, V8 and M8) and four enrichment cultures (14C, L2.21, L4-9 and L6.11) from low pH, high saline environments were characterized for their ability to oxidize soluble iron and inorganic sulfur in the presence of increasing concentrations of chloride ion. The mixed cultures 14C and L2-21 contained predominantly Acidihalobacter and Acidithiobacillus spp., respectively, while L4-9 and L6-11 predominantly contained Perroplasma spp. Cultures V6, V8, 14C and L2-21 were assessed for their ability to oxidize 1% pyrite at 9, 15 and 30 g/L chloride ion. Results showed that pure cultures V6 and V8 and mixed culture 14C were able to oxidize pyrite at chloride ion concentrations of 30 g/L, which is higher than the chloride concentration found in seawater (19 g/L). L2-21 was unable to oxidise pyrite, possibly due to the predominant presence of sulfur oxidizing microorganisms in the mixed culture. This illustrates the potential applicability of the cultures for saline water bioleaching and biooxidation of sulfide ores.
机译:在过去的二十年中,寻找嗜酸性嗜酸性微生物以提高淡水稀缺区域中的生物浸润过程的效率。在该研究中,来自低pH,高盐水环境的三种纯培养物(V6,V8和M8)和四种富集培养物(14℃,L2.21,L4-9和L6.11),其特征在于它们氧化可溶性铁的能力在增加浓度的氯离子的存在下无机硫。混合培养物14c和l2-21主要包含慈善杆菌和酸酐水分,而L4-9和L6-11主要含有产后肌的SPP。评估培养v6,v8,14c和l2-21,以便在9,15和30g / L氯离子中氧化1%硫铁粒的能力。结果表明,纯培养物V6和V8和混合培养14C能够在30g / L的氯离子浓度下氧化黄铁矿,其高于海水中发现的氯化物浓度(19g / L)。 L2-21不能氧化硫铁矿,可能是由于在混合培养中氧化微生物的主要存在。这说明了培养水的培养物的潜在适用性和硫化物矿石的生理水生物生物浸入和生物氧化。

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