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Characteristics of Cultivated Sulfur Oxidizing Bacteria Community Isolated from Coal Mine Treatment Plant in H_2S Removal

机译:H_2S煤矿治疗厂栽培硫氧化细菌群落的特征

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Sulfur cycling based on biological oxidation of sulfide to sulfate involves sulfur-oxidizing reducing microbial communities associated with sulfide which normally oxidize sulfide in acidic environment to sulfate. The chemolithotrophic sulfur oxidizing bacteria (SOB) usually use organic and/or inorganic sulfide initially oxidizing and subsequently released sulfate under aerobic or subaerobic condition. This study was to understand SOB community isolated from coal mine treating plant at Mae Moh, Lampang and their potentials in hydrogen sulfide (H_2S) removal. In this result, with common heterotrophic medium supplemented with glucose 10 mg/L and sulfur 0.001%, the cultured SOB were successfully cultivated based on most probable number method. Their activity showed an increase in sulfate concentration over time correspondent to an increase in culturable SOB communities. The SOB community could also develop their own microbial niches in the present of continuously aerated H_2S in the medium at 30-40°C during 7 day incubation. They could remove H_2S between 200-500 ppm from wastewater. These sulfur oxidized H_2S contaminated in wastewater treatment facilities or drainage. Their species will be further isolated and characterized by molecular analysis.
机译:基于硫化硫化物的生物氧化的硫循环涉及硫氧化与硫化物相关的减少硫化物,其通常氧化硫化物在酸性环境中至硫酸盐。氧化细菌(SOB)的化学型脱硫硫含量通常使用有机和/或无机硫化物最初氧化,随后在有氧或胚胎条件下释放硫酸盐。本研究是理解在Mae Moh,Lampang及其在硫化氢(H_2S)中的煤矿治疗植物中孤立的SOB群落。在该结果,通过补充有葡萄糖的常见异养介质,含硫0.001%,基于大多数可能的数量方法成功培养培养的溶液。它们的活性显示硫酸盐浓度的增加随着时间的推移而导致培养的SOB群落增加。在7天孵育期间,SOB界也可以在30-40℃下在培养基中连续曝气的H_2s的目前开发自己的微生物效力。它们可以从废水中移除200-500 ppm之间的H_2s。这些硫氧化在废水处理设施或排水中污染的氧化H_2。它们的物种将进一步分离并以分子分析为特征。

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