首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Isolation of a Naphthalene-Degrading Strain from Activated Sludge and Bioaugmentation with it in a MBR Treating Coal Gasification Wastewater
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Isolation of a Naphthalene-Degrading Strain from Activated Sludge and Bioaugmentation with it in a MBR Treating Coal Gasification Wastewater

机译:活性污泥中萘降解菌的分离及其在MBR处理煤气化废水中的生物强化作用

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A highly effective naphthalene-degrading bacterial strain was isolated from acclimated activated sludge from a coal gasification wastewater plant, and identified as a Streptomyces sp., designated as strain QWE-35. The optimal pH and temperature for naphthalene degradation were 7.0 and 35A degrees C. The presence of additional glucose and methanol significantly increased the degradation efficiency of naphthalene. The strain showed tolerance to the toxicity of naphthalene at a concentration as great as 200 mg/L. The Andrews mode could be fitted to the degradation kinetics data well over a wide range of initial naphthalene concentrations (10-200 mg/L), with kinetic values q (max) = 0.84 h(-1), K (s) = 40.39 mg/L, and K (i) = 193.76 mg/L. Metabolic intermediates were identified by gas chromatography and mass spectrometry, allowing a new degradation pathway for naphthalene to be proposed for the first time. Strain QWE-35 was added into a membrane bioreactor (MBR) to enhance the treatment of real coal gasification wastewater. The results showed that the removal of chemical oxygen demand and total nitrogen were similar between bioaugmented and non-bioaugmented MBRs, however, significant removal of naphthalene was obtained in the bioaugmented reactor. The findings suggest a potential bioremediation role of Streptomyces sp. QWE-35 in the removal of naphthalene from wastewaters.
机译:从煤气化废水处理厂的适应性活性污泥中分离出一种高效萘降解细菌菌株,并鉴定为链霉菌属菌种,命名为菌株QWE-35。萘降解的最佳p​​H和温度分别为7.0和35A℃。额外的葡萄糖和甲醇的存在显着提高了萘的降解效率。该菌株在浓度高达200 mg / L时表现出对萘毒性的耐受性。安德鲁斯模式可以在很宽的初始萘浓度范围(10-200 mg / L)上很好地拟合降解动力学数据,动力学值q(max)= 0.84 h(-1),K(s)= 40.39 mg / L,K(i)= 193.76 mg / L。通过气相色谱和质谱法鉴定了代谢中间体,从而首次提出了萘的新降解途径。将QWE-35菌株添加到膜生物反应器(MBR)中,以增强对真实煤气化废水的处理。结果表明,生物强化和非生物强化MBR的化学需氧量和总氮去除率相似,但是,生物强化反应器中萘的去除率很高。这些发现表明链霉菌的潜在生物修复作用。 QWE-35用于去除废水中的萘。

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