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Facile Synthesis of Hierarchically Structured Magnetic MnO2/ZnFe2O4 Hybrid Materials and Their Performance in Heterogeneous Activation of Peroxymonosulfate

机译:分层结构磁性MnO2 / ZnFe2O4杂化材料的简便合成及其在过氧单硫酸盐非均相活化中的性能

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In heterogeneous catalysis for water treatment, feasible recovery of nanocatalysts is crucial to make the process cost-effective and environmentally benign. In this study, we applied two strategies, for example, magnetic separation and hierarchical structure of solid catalysts, to ensure manganese catalysts are readily separable, meanwhile their catalytic performance was retained by the nanosized structure of MnO2 nanosheets or nanorods. ZnFe2O4 was used as the magnetic core and MnO2 corolla-like sphere consisting of nanosheets, and sea-urchin shaped structure made of nanorods, were fabricated by a hydrothermal method at 100 and 140 degrees C, respectively. Crystalline structure, morphology and textural property of the materials were investigated. The prepared catalysts were able to effectively activate peroxymonosulfate (PMS) to generate sulfate radicals for catalytic oxidation of a typical organic pollutant of phenol. After the heterogeneous catalysis, the catalysts were easily recovered by applying an external magnetic field. The effects of temperature and repeated use on the degradation efficiencies were evaluated. The generation and evolution of sulfate radicals and phenol oxidation were studied using both competitive radical tests and electron paramagnetic resonance (EPR).
机译:在用于水处理的非均相催化中,可行的纳米催化剂的回收对于使该方法具有成本效益和环境友好性至关重要。在这项研究中,我们应用了两种策略,例如磁性分离和固体催化剂的分级结构,以确保锰催化剂易于分离,同时它们的催化性能被MnO2纳米片或纳米棒的纳米尺寸结构所保留。 ZnFe2O4用作磁芯,由纳米片组成的MnO2花冠状球体,由纳米棒制成的海胆形结构,分别通过水热法在100和140摄氏度下制造。研究了材料的晶体结构,形态和结构性能。制备的催化剂能够有效地活化过氧单硫酸盐(PMS)生成硫酸根,用于催化氧化典型的苯酚有机污染物。在非均相催化之后,通过施加外部磁场容易地回收催化剂。评估了温度和重复使用对降解效率的影响。使用竞争性自由基测试和电子顺磁共振(EPR)研究了硫酸根自由基的产生和演化以及苯酚的氧化。

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