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评价由分离的假单胞菌和罗克环菌组成的细菌混合物对污泥和污水中苯、甲苯和苯乙烯的生物强化潜力。

Bioaugmentation potential evaluation of a bacterial consortium composed of isolated Pseudomonas and Rhodococcus for degrading benzene, toluene and styrene in sludge and sewage.

机构信息

Key Laboratory of Industrial Biotechnology, Ministry of Education, School of Biotechnology, Jiangnan University, Wuxi, 1800 Lihu Road, China.

Department of Biological Engineering, College of Life Science, Yantai University, Shandong 408100, China.

出版信息

Bioresour Technol. 2021 Jan;320(Pt A):124329. doi: 10.1016/j.biortech.2020.124329. Epub 2020 Oct 28.

Abstract

Bioaugmentation was conducted using a bacterial consortium of Pseudomonas putida SW-3 and Rhodococcus ruber SS-4, to test their ability to degrade benzene, toluene, and styrene (BTS). SW-3 and SS-4 were isolated from domestic sludge and sewage samples to establish a synthetic consortium with an optimized ratio of 2:1 to reach a degradation efficiency of 82.5-89.8% of BTS. The bacterial consortium was inoculated with sludge and sewage samples at a ratio of 2:1, resulting in a degradation efficiency of 97.9% and 92.7%, respectively, at a BTS concentration of 1800 mg·L. Analysis of bacterial community structure following bioaugmentation indicated an increase in abundance of BTS-degrading bacteria, particularly Acinetobacter and Pseudoxanthomonas in sludge and Pseudomonas in sewage, enhancing the collective BTS degradation ability of the bacterial community. Principal component analysis demonstrated that a more balanced bacterial community structure was established following intervention. This indicated that the selected bacteria are excellent candidates for bioaugmentation.

摘要

采用 Pseudomonas putida SW-3 和 Rhodococcus ruber SS-4 细菌联合体进行生物增强,以测试它们降解苯、甲苯和苯乙烯(BTS)的能力。SW-3 和 SS-4 是从生活污泥和污水样本中分离出来的,以建立一个优化比例为 2:1 的合成联合体,达到 82.5-89.8%的 BTS 降解效率。将细菌联合体以 2:1 的比例接种到污泥和污水样本中,在 BTS 浓度为 1800mg·L 时,分别达到 97.9%和 92.7%的降解效率。生物增强后对细菌群落结构的分析表明,BTS 降解菌的丰度增加,特别是污泥中的不动杆菌属和假单胞菌属,污水中的假单胞菌属,增强了细菌群落的集体 BTS 降解能力。主成分分析表明,干预后建立了更平衡的细菌群落结构。这表明所选细菌是生物增强的优秀候选物。

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