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首页> 外文期刊>Environmental Science and Pollution Research >Dinitrodiazophenol industrial wastewater treatment by a sequential ozone Fenton process
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Dinitrodiazophenol industrial wastewater treatment by a sequential ozone Fenton process

机译:二硝基噻苯酚工业废水通过顺序臭氧FENTON工艺进行处理

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摘要

The ozonation process is efficient in degrading aromatic substances and substances with unsaturated bonds, but cannot effectively destroy small-molecule organic compounds, which accumulate. Likewise, the Fenton process is a classic wastewater treatment method, but requires strict pH control and produces secondary pollution when the concentration of organic substances is high. In this study, we applied a 1stO(3)-2ndFenton sequential process to treat diazodinitrophenol (DDNP) industrial wastewater and provide suitable reaction conditions for Fenton process. For the 1stOzone process, organics removal increased as O-3 dosage increased. At optimized operation, the 1stO(3) process provided an acidic effluent (pH = 3) and reduced the organics concentration to a level suitable for the 2ndFenton process. Benzene ring substances as well as nitro group and diazo group compounds were greatly degraded in the 1stO(3) process and were further mineralized in the 2ndFenton process. Additionally, the biodegradability of DDNP industrial wastewater was greatly improved. This is the first reported time that ozonation and the Fenton process have been integrated sequentially to treat an explosive production wastewater. The study provides a feasible chemical oxidation method for treating DDNP industrial wastewater by simply combining two classic treatment processes.
机译:臭氧化方法有效地降解芳族物质和具有不饱和键的物质,但不能有效地破坏积聚的小分子有机化合物。同样,芬顿工艺是一种经典的废水处理方法,但需要严格的pH控制并在有机物质浓度高时产生二次污染。在这项研究中,我们应用了1sto(3)-2ndfenton顺序过程来治疗二氮硝基苯酚(DDNP)工业废水,并为Fenton工艺提供合适的反应条件。对于1stozone过程,随着O-3剂量的增加,有机物去除增加。在优化操作时,1sto(3)处理提供酸性流出物(pH = 3),并将有机物浓度降低至适于2ndenton方法的水平。苯环物质以及硝基和重氮群化合物在1sto(3)工艺中大大降解,并在2ndfenton工艺中进一步矿化。此外,DDNP工业废水的生物降解性大大提高。这是第一个报告的时间,臭氧处理和芬顿工艺已依次整合以治疗爆炸性生产废水。该研究提供了一种可行的化学氧化方法,用于通过简单地结合两个经典处理方法处理DDNP工业废水。

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