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首页> 外文期刊>RSC Advances >A molybdovanadophosphate-based surfactant encapsulated heteropolyanion with multi-lamellar nano-structure for catalytic wet air oxidation of organic pollutants under ambient conditions
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A molybdovanadophosphate-based surfactant encapsulated heteropolyanion with multi-lamellar nano-structure for catalytic wet air oxidation of organic pollutants under ambient conditions

机译:一种基于钼钒钛磷酸盐的表面活性剂包封的具有多层纳米结构的杂多阴离子,可在环境条件下催化湿式氧化有机污染物

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摘要

A series of surfactant encapsulated heteropolyanions (SEH-n) based on molybdovanadophosphates (MVPs) was prepared. The morphological optimisation of the SEHs was studied by the control of solvent polarity and MVP to surfactant ratio used. Investigation by TEM revealed the formation of particles with multilamellar nano-structure in the SEHs. Characterization of the SEHs by XRD, TGA and FTIR indicated the successful encapsulation of the molybdovanadophosphates with the surfactant. The performance of SEHs as catalysts for the removal of bisphenol-A under ambient conditions was evaluated. Factors influencing the performance of the SEH-n are the relative stability of the Keggin structure and electron accepting property. The dissolved oxygen plays a crucial role in improving the BPA removal efficiency. The hydrophobic property of the nano-sized SEHs provides good aqueous stability and allows excellent recoverability of the catalyst from the aqueous solution after treatment.
机译:制备了一系列基于钼钒酸磷酸盐(MVPs)的表面活性剂封装的杂多阴离子(SEH-n)。通过控制溶剂极性和使用的MVP与表面活性剂比率来研究SEH的形态优化。 TEM的研究表明SEHs中形成了具有多层纳米结构的颗粒。用XRD,TGA和FTIR对SEHs进行表征,表明用表面活性剂成功包封了钼钒钒磷酸盐。评价了在环境条件下SEH作为催化剂去除双酚A的性能。影响SEH-n性能的因素是Keggin结构的相对稳定性和电子接受性能。溶解氧在提高BPA去除效率方面起着至关重要的作用。纳米级SEH的疏水性提供了良好的水稳定性,并允许在处理后从水溶液中回收催化剂。

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