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The fate of azo dyes in aerobic microbial degradation systems: C.I. Acid Orange 7 and C.I. Acid Red 151.

机译:有氧微生物降解系统中偶氮染料的命运:C.I.酸性橙7和C.I.酸性红151。

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Azo dyes have been manufactured throughout the world for more than 120 years, and have been shown to be prevalent environmental contaminants. Recent estimates suggest greater than 15% of total world production of dyes, over 128 tons per day, are released into the environment through industrial discharges and improper waste disposal practices. The primary significance to human health of azo dyes is the carcinogenic potential of aromatic amines which arise as by-products during their manufacture, or as degradation products from reductive cleavage of the azo linkage in the environment via anaerobic microbial processes. The focus of this dissertation was to develop analytical methodologies to assess aerobic microbial degradation of azo dyes, as represented by C.I. Acid Orange 7 (AO7) and C.I. Acid Red 151 (AR151), in terms of metabolism of the dyes to innocuous products. Assessment was accomplished by an analytical approach involving the isolation, identification and quantitation of metabolites. The first step was to develop methods to first confirm the prevalence of dyestuffs in wastewaters at the Cincinnati Metropolitan Sewer District Mill Creek Treatment Facility and to evaluate these as a source of dye acclimated organisms for biodegradation studies. Following the inoculation of laboratory scale aerobic bioreactors, analytical and organic chemistry methodologies were developed to achieve the quantitative and qualitative identification of azo dyes and dye metabolites. These studies included chemical derivitization techniques which were used to simulate metabolism of dyes yielding products analogous to those observed from microbial metabolism, and to facilitate the acquisition of various spectroscopic data. Such information aided in the qualitative identification of unknown compounds.; The results of this dissertation research established the analytical methods developed and utilized during this investigation have general applicability to studies of dyes and related compounds in various matrices, and are suitable for use with biodegradation studies of other compounds. Data from this investigation suggest that azo bonds can be biochemically cleaved via processes yielding metabolites other than aromatic amines. In cases where azo bond cleavage lead to aromatic amines, the product isolated indicated that aerobic microbial systems investigated were found to further metabolize these potentially toxic intermediates to innocuous metabolic endpoints. This work has contributed to the understanding of the fate of representative azo dyes in aerobic microbial biodegradation systems, and has provided analytical techniques which can be utilized in further investigations. Consequently, the detoxification of azo dyes is accomplished by aerobic biodegradation processes, and through further research and technologic developments this approach can significantly impact the ultimate goal of remediation of hazardous wastes in man's environment.
机译:偶氮染料已经在世界范围内生产了120多年,并且已被证明是普遍的环境污染物。最近的估计表明,通过工业排放和不适当的废物处置做法,全世界每天总产量超过128吨的染料中有15%以上释放到了环境中。偶氮染料对人体健康的主要意义是芳香胺的致癌潜力,这些芳香胺在其制造过程中作为副产物或通过厌氧微生物过程在环境中还原性裂解偶氮键而降解。本论文的重点是开发分析方法,以评估由C.I.代表的偶氮染料的好氧微生物降解。酸性橙7(AO7)和C.I.酸性红151(AR151),从染料到无毒产品的新陈代谢方面而言。评估是通过涉及代谢物的分离,鉴定和定量的分析方法完成的。第一步是开发方法,以首先确认辛辛那提大城市下水道区米尔克里克处理设施中废水中染料的流行率,并将其评估为可进行染料降解的生物体,以进行生物降解研究。接种实验室规模的好氧生物反应器后,开发了分析和有机化学方法,以实现对偶氮染料和染料代谢产物的定量和定性鉴定。这些研究包括化学衍生​​技术,该技术用于模拟染料的代谢,产生与微生物代谢中观察到的产物相似的产物,并有助于获取各种光谱数据。这些信息有助于定性鉴定未知化合物。本论文的研究结果建立了在本研究过程中开发和使用的分析方法,可普遍用于各种基质中染料和相关化合物的研究,并适合与其他化合物的生物降解研究一起使用。这项研究的数据表明,偶氮键可以通过产生除芳族胺以外的代谢物的过程进行生物化学裂解。在偶氮键断裂导致芳香胺的情况下,分离出的产物表明,研究的需氧微生物系统进一步将这些潜在的毒性中间体代谢为无害的代谢终点。这项工作有助于了解有氧微生物降解系统中代表性偶氮染料的命运,并提供了可用于进一步研究的分析技术。因此,偶氮染料的解毒是通过需氧生物降解过程完成的,并且通过进一步的研究和技术发展,这种方法可以极大地影响人类环境中有害废物修复的最终目标。

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