Environmental Engineering Department, Istanbul Technical University, Maslak, Istanbul, Turkey.
Institutes of Environmental Sciences, Bogazici University, Bebek, Istanbul, Turkey.
Bioresour Technol. 2015 Jun;186:207-214. doi: 10.1016/j.biortech.2015.03.043. Epub 2015 Mar 14.
The combined effects of erythromycin-tetracycline-sulfamethoxazole (ETS) and sulfamethoxazole-tetracycline (ST) antibiotics on the performance of anaerobic sequencing batch reactors were studied. A control reactor was fed with wastewater that was free of antibiotics, while two additional reactors were fed with ETS and ST. The way in which the ETS and ST mixtures impact COD removal, VFA production, antibiotic degradation, biogas production and composition were investigated. The effects of the ETS mixtures were different from the ST mixtures, erythromycin can have an antagonistic effect on sulfamethoxazole and tetracycline. The anaerobic pre-treatment of these antibiotics can represent a suitable alternative to the use of chemical treatments for concentrations at 10 mg/L of S and 1 mg/L of T; 2 mg/L of E, 2 mg/L of T and 20 mg/L of S for the ST and ETS reactors respectively, which corresponds to min 70% COD removal efficiency.
研究了红霉素-四环素-磺胺甲恶唑(ETS)和磺胺甲恶唑-四环素(ST)抗生素联合对厌氧序批式反应器性能的影响。一个对照反应器用不含抗生素的废水进料,而另外两个反应器则用 ETS 和 ST 进料。研究了 ETS 和 ST 混合物对 COD 去除、VFA 生成、抗生素降解、沼气生成和组成的影响。ETS 混合物的影响与 ST 混合物不同,红霉素对磺胺甲恶唑和四环素有拮抗作用。这些抗生素的厌氧预处理可以替代化学处理,适用于浓度为 10mg/L 的 S 和 1mg/L 的 T;2mg/L 的 E、2mg/L 的 T 和 20mg/L 的 S 分别用于 ST 和 ETS 反应器,对应于至少 70%的 COD 去除效率。