首页> 外文会议>IWA(International Water Association) International Conference on Odours and VOCs; 20030914-17; Singapore(SG) >Removal of odorous sulphur-containing gases by a new isolate from activated sludge
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Removal of odorous sulphur-containing gases by a new isolate from activated sludge

机译:通过新的活性污泥分离物去除臭味的含硫气体

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Biological treatment of odorous sulphur-containing compounds is attracting attention due to its benign eco-friendliness, energy-savings and low operating costs. As the biological treatment efficiency of dimethylsulphide (DMS) reported was often low and variable, selection of useful DMS-degrading microorganisms is of importance for the enhancement of the biological deodorizing process. This paper reports the successful isolation of a DMS-degrading bacterium from activated sludge, using the enrichment isolation technique. The isolate was identified by 16S rRNA gene sequencing, and found to belong to the alpha group of Proteobacteria, with an identity of 99.4% and 99.1 % to the 16S rRNA gene sequences of Afipia felis and Pseudomonas carboxydohydrogena, respectively. The isolate was able to metabolize DMS as well as hydrogen sulphide (H_2S). A batch experiment was performed to assess the removal characteristics of DMS by the isolate. The results showed that over half of DMS could be removed by the isolate in 3 hours when the initial DMS amount was approximately 10 μmol and 25 μmol. Removal of H_2S by the isolate was evaluated by a continuous test in a 2-L gas-bubbling bottle. Although part of the H_2S removal by the mineral medium itself was observed in the control test, the majority of H_2S removal was believed to be attributed to the metabolic activity of the isolate. In conclusion, the isolate might be potentially useful for the enhancement of the biological deodorizing processes.
机译:由于其有益于环境的友好,节能和低运行成本,对含硫硫化合物的生物处理引起了人们的关注。由于所报告的二甲基硫醚(DMS)的生物处理效率通常较低且变化不定,因此选择有用的可降解DMS的微生物对于增强生物除臭工艺至关重要。本文报道了使用富集分离技术从活性污泥中成功分离出DMS降解细菌的方法。该分离物通过16S rRNA基因测序鉴定,发现属于变形杆菌的α基团,分别与费氏假单胞菌和羧基假单胞菌的16S rRNA基因序列具有99.4%和99.1%的同一性。该分离物能够代谢DMS以及硫化氢(H_2S)。进行批处理实验以评估分离物对DMS的去除特性。结果表明,当初始DMS量约为10μmol和25μmol时,分离物可在3小时内去除一半以上的DMS。通过在2-L气泡瓶中进行的连续测试,评估了分离物对H_2S的去除。尽管在对照试验中观察到矿物介质本身去除了H_2S的一部分,但大多数H_2S的去除被认为归因于分离物的代谢活性。总之,分离物可能对增强生物除臭过程具有潜在的作用。

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