Department of Environmental Engineering, Kahramanmaras Sütçü mam University, Kahramanmaras, Turkey.
Bioprocess Biosyst Eng. 2012 Mar;35(3):449-57. doi: 10.1007/s00449-011-0584-1. Epub 2011 Aug 21.
The effect of cyclic anaerobic-aerobic conditions on the biodegradative capability of the mixed microbial culture for the azo dye Remazol Brilliant Violet 5R (RBV-5R) was investigated in the sequencing batch reactor (SBR) fed with a synthetic textile wastewater. The SBR had a 12-h cycle time with anaerobic-aerobic periods of 3/9, 6/6 and 9/3 h. General SBR performance was assessed by measurement of catabolic enzymes (catechol 2,3-dioxygenase, azo reductase), chemical oxygen demand (COD), color and amount of aromatic amines. In this study, under steady-state conditions, the anaerobic period of the cyclic SBR was found to allow the reductive decolorization of azo dye. Longer anaerobic periods resulted in higher color removal efficiencies, approximately 71% for the 3-h, 87% for 6-h and 92% for the 9-h duration. Total COD removal efficiencies were over 84% under each of the cyclic conditions and increased as the length of the anaerobic period was increased; however, the highest color removal rate was attained for the cycle with the shortest anaerobic period of 3 h. During the decolorization of RBV-5R, two sulfonated aromatic amines (benzene based and naphthalene based) were formed. Additionally, anaerobic azo reductase enzyme was found to be positively affected with the increasing duration of the anaerobic period; however; it was vice versa for the aerobic catechol 2,3-dioxygenase (C23DO) enzyme.
在采用合成纺织废水的序批式反应器(SBR)中,研究了循环厌氧-好氧条件对用于偶氮染料 Remazol Brilliant Violet 5R(RBV-5R)的混合微生物培养物的生物降解能力的影响。SBR 的周期时间为 12 小时,厌氧-好氧期分别为 3/9、6/6 和 9/3 小时。通过测量代谢酶(儿茶酚 2,3-双加氧酶、偶氮还原酶)、化学需氧量(COD)、颜色和芳香胺的量来评估一般的 SBR 性能。在这项研究中,在稳定状态下,循环 SBR 的厌氧期被发现允许偶氮染料的还原脱色。较长的厌氧期导致更高的脱色效率,3 小时、6 小时和 9 小时的脱色效率分别约为 71%、87%和 92%。在每种循环条件下,总 COD 去除效率均超过 84%,并且随着厌氧期长度的增加而增加;然而,对于 3 小时的最短厌氧期,达到了最高的脱色率。在 RBV-5R 的脱色过程中,形成了两种磺化芳香胺(基于苯和基于萘)。此外,发现厌氧偶氮还原酶酶随着厌氧期的延长而受到积极影响;然而,对于好氧儿茶酚 2,3-双加氧酶(C23DO)酶则相反。