四溴双酚A
激进的
蒙脱石
化学
催化作用
卤素
石墨烯
氧气
光化学
高分子化学
有机化学
材料科学
纳米技术
阻燃剂
烷基
作者
Shanshan Yang,Zhiyan Huang,Pingxiao Wu,Yihao Li,Xiongbo Dong,Chunquan Li,Ningyuan Zhu,Xiaodi Duan,Dionysios D. Dionysiou
标识
DOI:10.1016/j.apcatb.2019.118129
摘要
We employed hydrolyzed iron-pillared montmorillonite/tetracycline complex (FeOOH-Mt-TC) as precursor to prepare iron [email protected]@Montmorillonite composite (α-Fe2O3-x@[email protected]) through pyrolysis strategy under nitrogen atmosphere. During the pyrolysis process, the involvement of hydrolyzed iron (FeOOH) and TC made the α-Fe2O3-x@[email protected] composite have superior conductivity, higher percent of structural Fe(II) and abundant oxygen vacancies, resulting in highly-efficient degradation of tetrabromobisphenol A (TBBPA) in the presence of PMS. Meanwhile, O2•− played the leading role in the oxidation process when compared with •OH, SO4•− and 1O2. In addition, the released Br− from TBBPA and the addition of alcohol led to the formation of reactive halogen and α-hydroxyalkyl radicals, which contributed to the rapid removal of TBBPA. This study not only provided a novel strategy to prepare excellent iron-based catalysts for PMS activation, but also evaluated the application of reactive halogen and α-hydroxyalkyl radicals in the treatment of halogenated organic pollutants.
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