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Degradation of azo dye acid orange 7 in a membrane bioreactor by pellets and attached growth of Coriolus versicolour

机译:颗粒沉淀法在膜生物反应器中降解偶氮染料酸性橙7并导致其生长

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摘要

The aim of this study was to systematically compare the degradation of azo dye acid orange 7 by spongy pellets and attached biofilm of Coriolus versicolour (NBRC 9791) in a membrane bioreactor (MBR) under non-sterile conditions. Mild stirring (35 rpm) resulted in spherical (φ = 0.5 cm), spongy pellets and concomitantly triggered high enzymatic activity of the fungus, allowing for excellent decolouration (\u3e99%) of a synthetic wastewater containing the dye. However, bacterial contamination eventually damaged the fungus pellets, leading to decreased decolouration efficiency. Promotion of attached growth on a plastic support along with formation of spherical spongy pellets allowed maintenance of high enzymatic activity and decolouration/degradation for an extended period. Hydraulic retention time (HRT) could influence the level of enzymatic activity and decolouration; however, even at the shortest HRT (1 day) examined, the MBR could accomplish \u3e95% decolouration. © 2013 Elsevier Ltd.
机译:这项研究的目的是系统地比较在无菌条件下,膜生物反应器(MBR)中海绵状颗粒和杂色科里奥蓝(NBRC 9791)的海绵状颗粒和附着的生物膜对偶氮染料酸性橙7的降解作用。缓慢搅拌(35 rpm)会导致球形(φ= 0.5 cm)海绵状沉淀,并随之引发真菌的高酶促活性,从而使含有该染料的合成废水具有出色的脱色性(99%)。但是,细菌污染最终损坏了真菌沉淀,导致脱色效率降低。促进在塑料载体上的附着生长以及球形海绵状小球的形成,可以长时间维持高酶活性和脱色/降解。水力停留时间(HRT)可能会影响酶活性和脱色的水平;但是,即使在最短的HRT(1天)下,MBR仍可完成95%的脱色。 ©2013爱思唯尔有限公司。

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