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Biodegradation of benzalkonium chlorides singly and in mixtures by a Pseudomonas sp isolated from returned activated sludge

机译:从返回的活性污泥中分离出的假单胞菌属物种对苯扎氯铵进行生物降解

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Bactericidal cationic surfactants such as quaternary ammonium compounds (QACs) are widely detected in the environment, and found at mg kg(-1) concentrations in biosolids. Although individual QACs are amenable to biodegradation, it is possible that persistence is increased for mixtures of QACs with varying structure. The present study evaluated the biodegradation of benzyl dimethyl dodecyl ammonium chloride (BDDA) singly and in the presence of benzyl dimethyl tetradecyl ammonium chloride (BDTA) using Pseudomonas sp., isolated from returned activated sludge. Growth was evaluated, as was biodegradation using C-14 and HPLC-MS methods. BDTA was more toxic to growth of Pseudomonas sp. compared to BDDA, and BDTA inhibited BDDA biodegradation. The benzyl ring of [U-C-14-benzyl] BDDA was readily and completely mineralized. The detection of the transformation products benzyl methyl amine and dodecyl dimethyl amine in spent culture liquid was consistent with literature. Overall, this study demonstrates the antagonistic effect of interactions on biodegradation of two widely used QACs suggesting further investigation on the degradation of mixture of QACs in wastewater effluents and biosolids (C) 2015 Elsevier B.V. All rights reserved.
机译:杀菌阳离子表面活性剂,如季铵化合物(QACs)在环境中被广泛检测到,并且在生物固体中的浓度为mg kg(-1)。尽管单个QAC易于生物降解,但对于结构变化的QAC混合物,持久性可能会增加。本研究单独评估了苄基二甲基十二烷基氯化铵(BDDA)的生物降解,并使用了假单胞菌属物种(Pseudomonas sp。)分离了苄基二甲基十四烷基氯化铵(BDTA),方法是从返回的活性污泥中分离。评估生长情况,使用C-14和HPLC-MS方法进行生物降解也是如此。 BDTA对假单胞菌的生长更具毒性。与BDDA相比,BDTA抑制BDDA的生物降解。 [U-C-14-苄基] BDDA的苄基环容易被完全矿化。在废培养液中检测到转化产物苄基甲胺和十二烷基二甲基胺与文献一致。总体而言,这项研究表明相互作用对两种广泛使用的QAC的生物降解具有拮抗作用,这表明需要进一步研究QAC混合物在废水和生物固体中的降解(C)2015 Elsevier B.V.保留所有权利。

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