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抗生素生产废水厌氧处理出水的好氧抑制评估。

Aerobic inhibition assessment for anaerobic treatment effluent of antibiotic production wastewater.

机构信息

Environmental Engineering Department, Civil Engineering Faculty, Istanbul Technical University, 34469, Maslak, Istanbul, Turkey,

出版信息

Environ Sci Pollut Res Int. 2014 Feb;21(4):2856-64. doi: 10.1007/s11356-013-2243-3. Epub 2013 Oct 22.

Abstract

Biological treatment of antibiotic production effluents is an economical approach; however, there are still difficulties to overcome because of the recalcitrant characteristics of these compounds to biodegradation. This study aims to reveal that anaerobic treatment technology can be an option as pretreatment before the activated sludge system treatment to treat antibiotic production effluents. The ISO 8192 method was chosen to test the inhibitory effect of raw and treated antibiotic production effluents in this work. Inhibition tests, which were applied according to ISO 8192, highlighted that the anaerobic treatment effluent is less inhibitory than antibiotic production effluent for activated sludge system. Early EC50 concentrations (30-min values) of raw and treated wastewaters were lower than 180-min values. Also, triple effects (sulfamethoxazole-erythromycin-tetracycline) of antibiotics are more toxic than dual effects (sulfamethoxazole-tetracycline). In light of the experimental results obtained and their evaluation, it can be concluded that anaerobic digestion can be applied as a biological pretreatment method for pharmaceutical industry wastewater including antibiotic mixtures prior to aerobic treatment.

摘要

抗生素生产废水的生物处理是一种经济有效的方法;然而,由于这些化合物对生物降解的顽固性,仍然存在困难需要克服。本研究旨在表明,厌氧处理技术可以作为活性污泥系统处理之前的预处理选择,用于处理抗生素生产废水。在这项工作中,选择 ISO 8192 方法来测试原水和处理后的抗生素生产废水的抑制作用。根据 ISO 8192 应用的抑制试验表明,厌氧处理出水对活性污泥系统的抑制作用小于抗生素生产废水。原水和处理废水的早期 EC50 浓度(30 分钟值)低于 180 分钟值。此外,抗生素的三重效应(磺胺甲恶唑-红霉素-四环素)比双重效应(磺胺甲恶唑-四环素)更具毒性。根据获得的实验结果及其评价,可以得出结论,厌氧消化可以作为一种生物预处理方法,用于制药工业废水,包括抗生素混合物,然后进行好氧处理。

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