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2,4-D-degrading bacterial consortium Isolation, kinetic characterization in batch and continuous culture and application for bioaugmenting an activated sludge microbial community

机译:2,4-D降解菌群的分离,分批和连续培养的动力学表征及其在生物活性污泥微生物群落中的应用

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Soil samples collected from the central region of Mexico were used as a source of microorganisms able to degrade 2,4-dichlorophenoxyacetic acid. These microorganisms were enriched by successive transfer of microbial cells batch cultivated in basal medium to which 2,4-D was added as the sole carbon and energy source. Five bacterial strains able to grow on 2,4-D were isolated and identified by sequencing fragments of their bacterial 16S rDNA. Those were Comamonas sp., Pseudomonas putida, Acinetobacter sp, Acinetobacter hvoffii and Klebsiella oxytoca. The effect of herbicide concentration on consortium's growth and 2,4-D degradation kinetics was studied in batch culture. By differential analysis of cell growth and 2,4-D depletion curves, the influence of 2,4-D concentration on instantaneous cell growth yield was quantified. Low growth yields in the culture's early phase could be attributed to metabolic uncoupling caused by the herbicide. In chemostat culture, 2,4-D removal efficiency was higher than 97% and global cell growth yields were lesser than those obtained in batch. Finally, in order to prevent a toxic shock provoked by the herbicide present in synthetic wastewater, the bacterial consortium was inoculated in a bench-scale wastewater treatment plant (WTP). However, the system was only temporally protected from an upset caused by 2,4-D. Hence, it was designed a system for continuous bacterial inoculation, allowing an undisturbed operation of the bench scale WTP.
机译:从墨西哥中部地区收集的土壤样品被用作能够降解2,4-二氯苯氧基乙酸的微生物来源。这些微生物通过在基础培养基中分批培养的微生物细胞的连续转移而富集,基础培养基中添加了2,4-D作为唯一的碳和能源。分离出五种能够在2,4-D上生长的细菌菌株,并通过对其细菌16S rDNA片段进行测序来鉴定。这些是Comamonas sp。,恶臭假单胞菌,不动杆菌属,hvoffii不动杆菌和产酸克雷伯菌。在分批培养中研究了除草剂浓度对联合体生长和2,4-D降解动力学的影响。通过细胞生长和2,4-D耗竭曲线的差异分析,定量了2,4-D浓度对瞬时细胞生长产量的影响。培养初期的低产量可能归因于除草剂引起的代谢解偶联。在化学恒温培养中,2,4-D去除效率高于97%,整体细胞生长产量低于分批获得的产量。最后,为了防止合成废水中存在的除草剂引起毒性中毒,将细菌联合体接种在台式废水处理厂(WTP)中。但是,该系统仅在时间上受到保护,免受2,4-D引起的干扰。因此,它被设计用于连续细菌接种的系统,允许台式WTP不受干扰地运行。

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