Mazioti Aikaterini A, Stasinakis Athanasios S, Gatidou Georgia, Thomaidis Nikolaos S, Andersen Henrik R
Department of Environment, University of the Aegean, Mytilene, Greece.
Department of Environment, University of the Aegean, Mytilene, Greece.
Chemosphere. 2015 Jul;131:117-23. doi: 10.1016/j.chemosphere.2015.03.029. Epub 2015 Mar 28.
Biodegradation of benzotriazole (BTR), 5-chlorobenzotriazole (CBTR), xylytriazole (XTR), 4-methyl-1H-benzotriazole (4TTR), 5-methy-1H-lbenzotriazole (5TTR) and 2-hydroxybenzothiazole (OHBTH) was studied in activated sludge batch experiments under aerobic and anoxic conditions, presence of organic substrate and different sludge residence times (SRTs). Their sludge-water distribution coefficients were also calculated in sorption experiments and ranged between 87 and 220 L kg(-1). Significant biodegradation of BTR, CBTR, XTR and OHBTH was observed in all biotic experiments. Half-life values ranged between 23 and 45 h (BTR), 18 and 47 h (CBTR), 14 and 26 h (XTR), 6.5 and 24 h (OHBTH). The addition of substrate did not suppress biodegradation kinetics; whereas in some cases accelerated biodegradation of microcontaminants. Except for CBTR, no effect of SRT on biodegradation constants was observed. Prediction of micropollutants removal in Sewage Treatment Plants (STPs) indicated that they will be partially removed, mainly due to aerobic biodegradation. Higher removal is expected at STPs operating at higher SRT and higher suspended solids concentrations.
在好氧和缺氧条件下,通过活性污泥批次实验,研究了苯并三唑(BTR)、5-氯苯并三唑(CBTR)、二甲苯三唑(XTR)、4-甲基-1H-苯并三唑(4TTR)、5-甲基-1H-苯并三唑(5TTR)和2-羟基苯并噻唑(OHBTH)的生物降解情况,实验涉及有机底物的存在以及不同的污泥停留时间(SRTs)。在吸附实验中还计算了它们的污泥-水分配系数,范围在87至220 L·kg⁻¹之间。在所有生物实验中均观察到BTR、CBTR、XTR和OHBTH有显著的生物降解。半衰期值在23至45小时(BTR)、18至47小时(CBTR)、14至26小时(XTR)、6.5至24小时(OHBTH)之间。底物的添加并未抑制生物降解动力学;而在某些情况下,还加速了微量污染物的生物降解。除CBTR外,未观察到SRT对生物降解常数有影响。对污水处理厂(STPs)中微量污染物去除的预测表明,它们将被部分去除,主要是由于好氧生物降解。预计在SRT较高且悬浮固体浓度较高的污水处理厂中去除率会更高。