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Microbiological Sulfide Removal—From Microorganism Isolation to Treatment of Industrial Effluent

机译:微生物硫化物去除 - 从微生物分离到工业流出物的治疗

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摘要

Management of excessive aqueous sulfide is one of the most significant challenges of treating effluent after biological sulfate reduction for metal recovery from hydrometallurgical leachate. The main objective of this study was to characterize and verify the effectiveness of a sulfide-oxidizing bacterial (SOB) consortium isolated from post-mining wastes for sulfide removal from industrial leachate through elemental sulfur production. The isolated SOB has a complete sulfur-oxidizing metabolic system encoded by sox genes and is dominated by the Arcobacter genus. XRD analysis confirmed the presence of elemental sulfur in the collected sediment during cultivation of the SOB in synthetic medium under controlled physicochemical conditions. The growth yield after three days of cultivation reached ~2.34 gprotein/molsulfid, while approximately 84% of sulfide was transformed into elemental sulfur after 5 days of incubation. Verification of isolated SOB on the industrial effluent confirmed that it can be used for effective sulfide concentration reduction (~100% reduced from the initial 75.3 mg/L), but for complete leachate treatment (acceptable for discharged limits), bioaugmentation with other bacteria is required to ensure adequate reduction of chemical oxygen demand (COD).
机译:过量硫化物水溶液的管理是在氢晶渗滤液中对金属回收后的生物硫酸盐降低后处理流出物的最重要挑战之一。本研究的主要目的是表征和验证硫化硫化物细菌(SOB)联盟的有效性,从开采废物中分离的硫化物从工业渗滤液中除去硫化物。分离的碱液具有通过SOX基因编码的完全硫氧化代谢系统,并由Arcobacter Genus主导。 XRD分析证实了在受控物理化学条件下的合成培养基中培养过程中收集沉积物中的元素硫的存在。培养三天后的生长产率达到〜2.34甲蛋白/摩尔脲,而在孵育5天后,将约84%的硫化物转化为元素硫。在工业流出物上验证分离的呜咽证实,它可用于有效的硫化物浓度降低(从最初的75.3mg / L降低),但对于完全渗滤液处理(可接受的排出限值),与其他细菌的生物沉积需要确保减少化学需氧量(COD)。

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