首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Rapid removal of tetrabromobisphenol A by alpha-Fe2O3-x@Graphene@Montmorillonite catalyst with oxygen vacancies through peroxymonosulfate activation: Role of halogen and alpha-hydroxyalkyl radicals
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Rapid removal of tetrabromobisphenol A by alpha-Fe2O3-x@Graphene@Montmorillonite catalyst with oxygen vacancies through peroxymonosulfate activation: Role of halogen and alpha-hydroxyalkyl radicals

机译:通过过氧键硫酸盐活化的氧空位,通过过氧键硫酸盐活化快速除去四溴双酚A的α-Fe2O3-X @ Montmorillonite催化剂:卤素和α-羟烷基的作用

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摘要

We employed hydrolyzed iron-pillared montmorillonite/tetracycline complex (FeOOH-Mt-TC) as precursor to prepare iron oxide@Graphene@Montmorillonite composite (alpha-Fe2O3-x@Graphene@Mt) through pyrolysis strategy under nitrogen atmosphere. During the pyrolysis process, the involvement of hydrolyzed iron (FeOOH) and TC made the alpha-Fe2O3-x@Graphene@Mt 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, O-2(center dot-) played the leading role in the oxidation process when compared with (OH)-O-center dot, SO4 center dot- and O-1(2). In addition, the released Br- from TBBPA and the addition of alcohol led to the formation of reactive halogen and alpha-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 alpha-hydroxyalkyl radicals in the treatment of halogenated organic pollutants.
机译:我们使用水解的铁柱蒙脱石/四环素复合物(FeOOH-MT-Tc)作为前体,通过在氮气氛下通过热解策略制备氧化铁@ Graphene @ Montmorillonite复合物(Alpha-Fe2O3-X @ Graphene @ MT)。在热解过程中,水解铁(FeOOH)和Tc的参与使得α-Fe2O3-X @ Graphene @ Mt Composite具有优异的导电性,较高的结构Fe(II)的百分比和丰富的氧空位,导致高效的降解在PMS存在下四溴二苯酚A(TBBPA)。同时,与(OH)-O中心点,SO4中心点和O-1(2)相比,O-2(中心点)在氧化过程中起着主导作用。此外,释放的BR-来自TBBPA和醇的添加导致反应性卤素和α-羟基烷基的形成,这有助于快速去除TBBPA。本研究不仅提供了制备优异的铁基催化剂的新策略,还评估了反应性卤素和α-羟烷基的应用在治疗卤化有机污染物中的应用。

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