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Bioaugmentation for treatment of full-scale diethylene glycol monobutyl ether (DGBE) wastewater by Serratia sp BDG-2

机译:Serratia sp BDG-2生物强化处理满规模的二甘醇单丁醚(DGBE)废水

摘要

A novel bacterial strain BDG-2 was isolated and used to augment the treatment of silicon plate manufacturing wastewater that primarily contains diethylene glycol monobutyl ether (DGBE). BDG-2 was identified as a Serratia sp. Under the optimal conditions of 30 degrees C, pH 9 and DGBE concentration of 2000 mg L-1, the bioaugmented system achieved 96.92% COD removal after 39.9 h. Laboratory-scale technological matching results indicated that, in a biofilm process with the addition of 100 mg L-1 ammonia and 5 mg L-1 total phosphorus (TP),.70.61% COD removal efficiency could be obtained in 46 h. Addition of polyaluminium chloride (PAC) to the reactors during the suspension process enhanced the settleability of the BDG-2 culture. Subsequently, successful start-up and stable operation of a full-scale bioaugmented treatment facilities were accomplished, and the volumetric organic load in the plug-flow aeration tank was 2.17 +/- 0.81 kg m(-3) d(-1). The effluent COD of the facilities was stable and always below 100 mg L-1. (C) 2016 Elsevier B.V. All rights reserved.
机译:分离出一种新型细菌菌株BDG-2,并将其用于增强硅板制造废水的处理,该废水主要包含二甘醇单丁醚(DGBE)。 BDG-2被鉴定为沙雷氏菌。在30摄氏度,pH 9和DGBE浓度为2000 mg L-1的最佳条件下,该生物增强系统在39.9 h后实现了96.92%的COD去除率。实验室规模的技术匹配结果表明,在生物膜工艺中,添加100 mg L-1氨和5 mg L-1总磷(TP),可在46小时内获得70.61%的COD去除效率。在悬浮过程中向反应器中添加聚氯化铝(PAC)可提高BDG-2培养物的沉降性。随后,完成了大规模生物强化处理设备的成功启动和稳定运行,活塞流曝气池中的有机有机物体积为2.17 +/- 0.81 kg m(-3)d(-1)。设施的出水COD稳定且始终低于100 mg L-1。 (C)2016 Elsevier B.V.保留所有权利。

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