State Key Laboratory of Urban Water Resource and Environment, Harbin Institute of Technology , Harbin, 150090, China.
College of Chemical and Environmental Engineering, Harbin University of Science and Technology , Harbin 150040, China.
Environ Sci Technol. 2017 Sep 19;51(18):10718-10728. doi: 10.1021/acs.est.7b02271. Epub 2017 Aug 30.
This work demonstrated that bromophenols (BrPs) could be readily oxidized by peroxydisulfate (PDS) activated by a commercial carbon nanotube (CNT), while furfuryl alcohol (a chemical probe for singlet oxygen (O)) was quite refractory. Results obtained by radical quenching experiments, electron paramagnetic resonance spectroscopy, and Fourier transform infrared spectroscopy further confirmed the involvement of nonradical PDS-CNT complexes rather than O. Bicarbonate and chloride ion exhibited negligible impacts on BrPs degradation by the PDS/CNT system, while a significant inhibitory effect was observed for natural organic matter. The oxidation of BrPs was influenced by solution pH with maximum rates occurring at neutral pH. Linear free energy relationships (LFERs) were established between the observed pseudo-first-order oxidation rates of various substituted phenols and the classical descriptor variables (i.e., Hammett constant σ, and half-wave oxidation potential E). Products analyses by liquid chromatography tandem mass spectrometry clearly showed the formation of hydroxylated polybrominated diphenyl ethers and hydroxylated polybrominated biphenyls on CNT surface. Their formation pathway possibly involved the generation of bromophenoxyl radicals from BrPs one-electron oxidation and their subsequent coupling reactions. These results suggest that the novel nonradical PDS/CNT oxidation technology is a good alternative for selectively eliminating BrPs with alleviating toxic byproducts in treated water effluent.
这项工作表明,溴酚(BrP)可被过一硫酸盐(PDS)容易地氧化,而过一硫酸盐是由商业碳纳米管(CNT)激活的,而糠醇(单线态氧(O)的化学探针)则相当难被氧化。自由基淬灭实验、电子顺磁共振波谱和傅里叶变换红外光谱的结果进一步证实了非自由基 PDS-CNT 配合物的参与,而不是 O。碳酸氢根和氯离子对 PDS/CNT 体系中 BrP 的降解几乎没有影响,而天然有机物则表现出明显的抑制作用。BrP 的氧化受溶液 pH 的影响,在中性 pH 下达到最大速率。通过建立各种取代酚的观察到的准一级氧化速率与经典描述符变量(即,Hammett 常数σ和半波氧化电势 E)之间的线性自由能关系(LFER),可以看出它们之间的关系。通过液相色谱串联质谱分析表明,在 CNT 表面上形成了多溴化二苯醚和多溴化联苯的羟基化产物。它们的形成途径可能涉及从 BrP 的单电子氧化生成溴酚氧基自由基及其随后的偶联反应。这些结果表明,新型非自由基 PDS/CNT 氧化技术是选择性消除 BrP 并减轻处理水废水中有毒副产物的一种很好的替代方法。