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Multidimensional monitoring of anaerobic/aerobic azo dye based wastewater treatments by hyphenated UPLC-ICP-MS/ESI-Q-TOF-MS techniques

机译:联用UPLC-ICP-MS / ESI-Q-TOF-MS技术对厌氧/好氧偶氮染料废水处理进行多维监测

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摘要

Sulfonated reactive azo dyes, such as Reactive Orange 107, are extensively used in textile industries. Conventional wastewater treatment systems are incapable of degrading and decolorizing reactive azo dyes completely from effluents, because of their stability and resistance to aerobic biodegradation. However, reactive azo dyes are degradable under anaerobic conditions by releasing toxic aromatic amines. To clarify reaction mechanisms and the present toxicity, the hydrolyzed Reactive Orange 107 was treated in anaerobic-aerobic two-step batch experiments. Sulfonated transformation products were identified employing coupled ICP-MS and Q-TOF-MS measurements. Suspected screening lists were generated using the EAWAG-BBD. The toxicity of the reactor content was determined utilizing online measurements of the inhibition of Vibrio fischeri. The OCHEM web platform for environmental modeling was instrumental in the estimations of the environmental impact of generated transformation products.
机译:磺化反应性偶氮染料,例如反应性橙107,已广泛用于纺织工业。常规的废水处理系统由于其稳定性和对需氧生物降解的抵抗力,因此无法完全从废水中降解和脱色活性偶氮染料。但是,活性偶氮染料在厌氧条件下可通过释放有毒的芳香胺来降解。为了阐明反应机理和目前的毒性,在厌氧-好氧两步分批实验中对水解的活性橙107进行了处理。使用耦合的ICP-MS和Q-TOF-MS测量确定了磺化转化产物。使用EAWAG-BBD生成了可疑的筛选清单。利用在线测量费氏弧菌的抑制作用来确定反应器内容物的毒性。用于环境建模的OCHEM Web平台有助于估算生成的转换产品对环境的影响。

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