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Biodegradation Products of a Sulfonated Azo Dye in Aerobic Granular Sludge Sequencing Batch Reactors Treating Simulated Textile Wastewater

机译:一种磺化AZO染料的生物降解产物,有氧颗粒污泥测序分批反应器处理模拟纺织废水

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This study focused on the biodegradation of an azo dye (Acid Red 14, AR14) in two anaerobic-aerobic sequencing batch reactors (SBRs) treating synthetic textile wastewater, operated with aerobic granular sludge under different hydrodynamic regimens. The aim was to investigate the fate of the anaerobic AR14 breakdown products (aromatic amines) during the SBRs' aerobic reaction phase. Specifically, liquid chromatography coupled with electrospray ionization tandem mass spectrometry (LC-ESI-MS/MS) was used for structural characterization of AR14 biodegradation metabolites, their molecular formulas being confirmed by accurate mass measurements. Nineteen molecules potentially related to AR14 were detected in the SBRs, and their relative abundances were followed along the aerobic stage of treatment cycles. The two SBRs shared most of the identified compounds but with differences in their metabolite profiles. Biodecolorization through AR14 anaerobic azo bond reduction was confirmed by the identification of the aromatic amine 4-amino-naphthalene-l-sulfonic acid, which was further aerobically biodegraded, involving deamination and hydroxylation of the aromatic ring. The other aromatic amine (1-naphthol-2-amino-4sulfonic acid) was not detected, being suggested to undergo autoxidation reactions forming dimeric, stable products. A different AR14 biodegradation pathway was observed when nitrate was added to the feed, a new intermediate product being detected (naphthalene-1-sulfonate).
机译:该研究的重点是在两种厌氧 - 有氧测序分批反应器(SBR)处理合成纺织废水中的偶氮染料(酸红14,AR14)的生物降解,在不同的流体动力学方案下用好氧颗粒污泥操作。目的是在SBRS的好氧反应相期间探讨厌氧AR14分解产物(芳族胺)的命运。具体地,与电喷雾电离串联质谱(LC-ESI-MS / MS)偶联的液相色谱法用于AR14生物降解代谢物的结构表征,其分子公式通过精确的质量测量来证实。在SBR中检测到潜在与AR14有关的19分子,并且它们的相对丰度沿着治疗循环的有氧阶段。两种SBRS共享了大多数已识别的化合物,但它们的代谢物轮廓差异。通过AR14通过AR14厌氧偶氮键的生物浓度通过鉴定芳族胺4-氨基 - 萘-L-磺酸来证实,其进一步有氧生物降解,涉及芳环的脱氨基和羟基化。未检测到其他芳族胺(1-萘酚-2-氨基-4-磺酸),建议经过形成二聚体,稳定产物的自动氧化反应。观察到硝酸盐在进料中时观察到不同的Ar14生物降解途径,检测到一种新的中间产物(萘-1-磺酸盐)。

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