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首页> 外文期刊>Journal of nanomaterials >Fabrication of Core-Shell Structural SiO2@H3[PM12O40] Material and Its Catalytic Activity
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Fabrication of Core-Shell Structural SiO2@H3[PM12O40] Material and Its Catalytic Activity

机译:核-壳结构SiO2 @ H3 [PM12O40]材料的制备及其催化活性

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摘要

Through a natural tree grain template and sol-gel technology, the heterogeneous catalytic materials based on polyoxometalate compounds H3[PM12O40] encapsulating SiO2: SiO2@H3[PM12O40] (SiO2@PM12, M = W, Mo) with core-shell structure had been prepared. The structure and morphology of the core-shell microspheres were characterized by the XRD, IR spectroscopy, UV-Vis absorbance, and SEM. These microsphere materials can be used as heterogeneous catalysts with high activity and stability for catalytic wet air oxidation of pollutant dyes safranine T (ST) at room condition. The results show that the catalysts have excellent catalytic activity in treatment of wastewater containing 10 mg/L ST, and 94% of color can be removed within 60 min. Under different cycling runs, it is shown that the catalysts are stable under such operating conditions and the leaching tests show negligible leaching effect owing to the lesser dissolution.
机译:通过天然树纹模板和溶胶-凝胶技术,基于多金属氧酸盐化合物H3 [PM12O40]的多相催化材料包封了SiO2:SiO2 @ H3 [PM12O40](SiO2 @ PM12,M = W,Mo)具有核-壳结构准备好了。通过XRD,IR光谱,UV-Vis吸收和SEM来表征核-壳微球的结构和形态。这些微球材料可用作具有高活性和稳定性的非均相催化剂,用于在室温条件下对污染物染料藏红花T(ST)进行催化湿式空气氧化。结果表明,该催化剂在处理10μg/ L ST废水中具有优异的催化活性,在60μmin内可去除94%的颜色。在不同的循环运行下,表明催化剂在这样的操作条件下是稳定的,并且由于较少的溶解,浸出试验显示出可忽略的浸出效果。

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