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首页> 外文期刊>Archives of Animal Nutrition >Multistage ozone and biological treatment system for real wastewater containing antibiotics
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Multistage ozone and biological treatment system for real wastewater containing antibiotics

机译:含抗生素真正废水的多级臭氧和生物处理系统

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In this study, a multistage treatment system was proposed to treat real pharmaceutical wastewater containing the antibiotic amoxicillin. Ozonation (O-3), and ozonation combined with aerobic biodegradation, were performed. The real pharmaceutical wastewater presented a high concentration of organic matter (TOC: 803 mg C.L-1 and COD: 2775 mg O-2.L-1), significant amoxicillin content (50 mg L-1) and acute ecotoxicity (Aliivibrio fischeri aTU: 48.22). Ozonation proved to be effective for amoxicillin degradation (up to 99%) and the results also indicated the removal of the original colour of the wastewater, with average consumption of 1 g of ozone. However, the ozonation system alone could not achieve complete mineralization. Therefore, a combination of ozonation and biodegradation in a multistage system was proposed in order to improve cost and treatment efficiency. The multistage treatment system presented promising results, achieving degradation of more than 99% of the amoxicillin, more than 98% of the original chemical oxygen demand (COD), and 90% of initial toxicity, with the consumption of approximately 500 mg of ozone. This indicates that this system could prevent dangerous and biorecalcitrant antibiotics from entering water resources. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在该研究中,提出了一种多级处理系统来治疗含有抗生素阿莫西林的真正药物废水。进行臭氧(O-3)和臭氧化合物与有氧生物降解结合。真正的药物废水呈现出高浓度的有机物质(TOC:803mg C11和COD:2775mg O-2.L-1),显着的阿莫西林含量(50mg L-1)和急性生态毒性(Aliivibrio Fischeri Atu :48.22)。被证明是对阿莫西林的降解(高达99%)有效的臭氧化合物,结果还表明除去废水的原始颜色,平均消耗1g臭氧。然而,单独的臭氧系统无法实现完全的矿化。因此,提出了多级系统中的臭氧化和生物降解的组合,以提高成本和治疗效率。多级治疗系统提出了有前途的结果,实现了99%以上的阿莫西林的降解,超过原始化学需氧量(COD)的98%,初始毒性的90%,消耗约500毫克臭氧。这表明该系统可以防止危险和生物酸的抗生素进入水资源。 (c)2016 Elsevier Ltd.保留所有权利。

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