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Isolation and characterization of phenol degrading bacteria immobilized onto cyclodextrin-hydrogel particles within a draft tube spouted bed bioreactor

机译:固定在引流管喷床生物反应器内环化糊精-水凝胶颗粒上的降解酚的细菌的分离和表征

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摘要

A draft-tube spouted bed bioreactor was developed to investigate the microbial degradation of aqueous phenol using a cyclodextrin-based support material. Bacteria from activated sludge were acclimated to phenol in a continuous stirred tank bioreactor, and then immobilized onto the hydrogel particles within the spouted bed bioreactor. Microorganisms obtained under different operating conditions in both biore-actors were isolated and characterized. Batch phenol degradation assays performed on isolated dominant strains showed that Acinetobacter baumannii was the most resistant to phenol. Microbial population distribution in bioreactors was not only affected by phenol concentration, but also by oxygen availability, the system configuration and the presence of intermediates formed during phenol metabolization. A maximum elimination capacity of 2.79 kg-phenol/m~3 d was achieved in the spouted bed bioreactor, with Comamonas acidovorans being the dominant strain during high degradation periods.
机译:研发出了引流管喷淋床生物反应器,以研究使用环糊精基支撑材料对苯酚水溶液进行微生物降解的方法。在连续搅拌的槽式生物反应器中,将活性污泥中的细菌驯化为苯酚,然后将其固定在喷嘴床生物反应器内的水凝胶颗粒上。分离并表征了在两种生物反应器中在不同操作条件下获得的微生物。对分离的优势菌株进行的分批苯酚降解试验表明,鲍曼不动杆菌对苯酚的耐药性最高。生物反应器中的微生物种群分布不仅受到苯酚浓度的影响,而且还受到氧的可利用性,系统构型以及苯酚代谢过程中形成的中间体的存在的影响。喷床生物反应器的最大消除能力为2.79 kg-苯酚/ m〜3 d,其中高酸降解期的Comamonas acidovorans为优势菌株。

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