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A study of toxicity, biodegradability, and some by-products of ozonised nitrophenols

机译:臭氧化硝基酚的毒性,生物降解性和一些副产物的研究

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摘要

Treatment performances of ozonation applied for the degradation of nitrophenols (NPs) were assessed in terms of biodegradability improvement, and toxicity reduction. Among the by-products formed during the ozonation of 4-nitrophenol and 2,4-dinitrophenol at initial pH 9.5 4-nitrocatechol, p-quinone, and hydroquinone were identified. The by-products of NPs ozonation were much more biodegradable than NPs. The degree of organically bounded nitrogen conversion to nitrate was 66-100% at pH 2.5 and 38-87% at initial pH 9.5. The reduction of ozone consumption and acceleration of NPs degradation rate was achieved during the ozonation of NP mixture at initial pH 9.5. According to Daphnia magna acute toxicity test, a complete detoxification of ozonised solutions was achieved. Thus, ozonation can be applied as a very effective treatment method for detoxification and biodegradability improvement of NPs containing wastewater. The achieved biodegradability improvement and detoxification of treated NPs supports the potential use of ozonation to improve the capacity of conventional biological treatment to remove these toxic and poorly biodegradable compounds.
机译:从生物降解性改善和毒性降低的角度评估了臭氧化处理硝基酚(NPs)的处理性能。在4-硝基苯酚和2,4-二硝基苯酚在初始pH 9.5的臭氧化过程中形成的副产物中,鉴定出4-硝基邻苯二酚,对醌和对苯二酚。 NPs臭氧化的副产物比NPs具有更高的生物降解性。在pH 2.5时有机结合的氮转化为硝酸盐的程度为66-100%,在初始pH 9.5时为38-87%。在初始pH值为9.5的NP混合物臭氧化过程中,实现了臭氧消耗量的减少和NPs降解速率的加速。根据大型蚤(Daphnia magna)的急性毒性试验,可以实现对臭氧溶液的完全排毒。因此,臭氧化可以用作非常有效的处理方法,用于对含NP的废水进行解毒和提高生物降解性。所处理的NP的生物降解性改善和解毒性能支持臭氧化技术的潜在应用,以提高传统生物处理去除这些有毒且难降解的化合物的能力。

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