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Combined anaerobic-aerobic treatment of azo dyes—A short review of bioreactor studies

机译:厌氧-好氧联合处理偶氮染料—生物反应器研究简述

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The most logical concept for the removal of azo dyes in biological wastewater treatment systems is based on anaerobic treatment, for the reductive cleavage of the dyes' azo linkages, in combination with aerobic treatment, for the degradation of the products from azo dye cleavage, aromatic amines. Since the 1990s, several research papers have been published on combined, sequential or integrated, anaerobic-aerobic bioreactor treatment of azo dye-containing wastewater. The extent of azo dye reduction in the anaerobic phase of those bioreactor systems was generally high, albeit the process often required long reaction times, a limitation that can easily be remedied by making use of the property of redox mediators to speed up the process. The consequent removal of aromatic amines under aerobic conditions was less unequivocal. Although analytical data indicate that many of the aromatic amines were removed from the wastewater. and although the limited amount of available toxicity data all show far-reaching detoxification during aerobic treatment, it is clear that not all aromatic amines can be completely mineralized.
机译:在生物废水处理系统中去除偶氮染料的最合乎逻辑的概念是基于厌氧处理,用于还原性还原染料的偶氮键,并与好氧处理相结合,以降解偶氮染料,芳香族化合物。胺类。自1990年代以来,已经发表了几篇有关结合,顺序或集成厌氧-好氧生物反应器处理含偶氮染料废水的研究论文。在那些生物反应器系统的厌氧相中,偶氮染料的还原程度通常很高,尽管该过程通常需要较长的反应时间,这一限制可以通过利用氧化还原介体的性质来加速该过程而容易地弥补。因此在有氧条件下除去芳族胺的确定性较差。尽管分析数据表明许多芳香胺已从废水中去除。尽管有限的可用毒性数据都显示出有氧处理过程中的深层排毒作用,但很明显并非所有的芳香胺都能被完全矿化。

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