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Biotechnological tools to improve bioremediation of phenol by Acinetobacter sp RTE1.4

机译:通过不动杆菌RTE1.4改善苯酚生物修复的生物技术工具

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The use of native bacteria is a useful strategy to decontaminate industrial effluents as well as the environment. Acinetobacter sp. RTE1.4 was previously isolated from polluted environments and constitutes a promising alternative for this purpose due to its capability to remove phenol from synthetic solutions and industrial effluents. In this work, this strain was identified at species level as A. tandoii RTE1.4. Phenol degradation pathway was studied and some reaction intermediates were detected, confirming that this strain degraded phenol through ortho-cleavage of the aromatic ring. Phenol removal assays were carried out in a stirred tank bioreactor and a complete degradation of the contaminant was achieved after only 7h, at an aeration rate of 3vvm and at agitation of 600rpm. Moreover, this bacterium was immobilized into calcium alginate beads and an increase in phenol biodegradation with respect to free cells was observed. The immobilized cells were reused for four consecutive cycles and stored at 4 degrees C for 9 months, during which phenol removal efficiency was maintained. Post-removal solutions were evaluated by Microtox (R) test, showing a toxicity reduction after bacterial treatment. These findings demonstrated that A. tandoii RTE1.4 might be considered as a useful biotechnological tool for an efficient treatment of different solutions contaminated with phenol in bioreactors, using either free or immobilized cells.
机译:使用天然细菌是对工业废水和环境进行净化的有用策略。不动杆菌属RTE1.4以前是从污染的环境中分离出来的,并且由于具有从合成溶液和工业废水中去除苯酚的能力,因此构成了一个有前途的替代方案。在这项工作中,该菌株在物种水平上被鉴定为tan.ii RTE1.4。研究了苯酚的降解途径,并检测了一些反应中间体,证实该菌株通过芳环的邻位裂解降解了苯酚。在搅拌釜式生物反应器中进行苯酚去除分析,仅3小时后,充气速度为3vvm,搅拌速度为600rpm,污染物的完全降解得以实现。此外,该细菌被固定在藻酸钙珠粒中,并且观察到酚相对于游离细胞的生物降解增加。固定的细胞可重复使用四个连续的周期,并在4摄氏度下保存9个月,在此期间苯酚的去除效率得以维持。通过Microtox(R)测试评估去除后的溶液,显示细菌处理后毒性降低。这些发现表明,A.tandoii RTE1.4可能被视为有用的生物技术工具,可使用游离细胞或固定化细胞有效处理生物反应器中受苯酚污染的不同溶液。

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