Zhu Yating, Nie Jianxin, Yang Xin, Guan Xiaohong
State Key Laboratory of Pollution Control and Resources Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, PR China.
Department of Environmental Science & Engineering, Fudan University, Shanghai 200438, PR China.
J Hazard Mater. 2021 Jun 15;412:125297. doi: 10.1016/j.jhazmat.2021.125297. Epub 2021 Feb 3.
Tetrabromobisphenol A (TBBPA) is one of the most widely applied brominated flame retardants and has been widely detected in water environment, which might pose risks of brominated disinfection by-products formation in water treatment system. Ferrate(VI)-CaSO (Fe(VI)-CaSO) system could effectively degrade TBBPA at pH 7.0-9.0 but the decomposition rate of TBBPA dropped with increasing pH. The presence of 0.5 mg C/L humic acid (HA) had negligible impact on TBBPA removal, but the removal of TBBPA decreased to ~87% and 80% at pH 7.0 and 8.0, respectively, in the presence of 5.0 mg C/L HA. The transformation products of TBBPA detected in Fe(VI)-CaSO process revealed that TBBPA degradation mainly proceeded via electron abstraction, debromination, and ring-opening pathways and Br was released. In the presence of TBBPA, Fe(VI)-CaSO pre-oxidation decreased the generation of all determined DBPs during chlorination at pH 8.0 but it lessened the generation of some DBPs and slightly increased the formation of the other DBPs at pH 7.0. The toxic risk analysis showed that Fe(VI)-CaSO pre-oxidation of TBBPA could reduce the toxic risk of DBPs in both synthetic water and natural water at pH 8.0, indicating that Fe(VI)-CaSO process has the potential to be applied in practical water treatment.
四溴双酚A(TBBPA)是应用最广泛的溴化阻燃剂之一,已在水环境中被广泛检测到,这可能会在水处理系统中带来形成溴化消毒副产物的风险。高铁酸盐(VI)-硫酸钙(Fe(VI)-CaSO)体系在pH 7.0-9.0时能有效降解TBBPA,但TBBPA的分解速率随pH升高而下降。0.5 mg C/L腐殖酸(HA)的存在对TBBPA的去除影响可忽略不计,但在5.0 mg C/L HA存在下,在pH 7.0和8.0时TBBPA的去除率分别降至约87%和80%。在Fe(VI)-CaSO工艺中检测到的TBBPA转化产物表明,TBBPA的降解主要通过脱溴、开环途径进行,溴被释放出来。在TBBPA存在下,Fe(VI)-CaSO预氧化在pH 8.0的氯化过程中减少了所有测定的消毒副产物的生成,但在pH 7.0时减少了一些消毒副产物的生成,并略微增加了其他消毒副产物的形成。毒性风险分析表明,TBBPA的Fe(VI)-CaSO预氧化可以降低pH 8.0时合成水和天然水中消毒副产物的毒性风险,这表明Fe(VI)-CaSO工艺有应用于实际水处理的潜力。