首页> 美国卫生研究院文献>Nanomaterials >Highly Robust and Selective System for Water Pollutants Removal: How to Transform a Traditional Photocatalyst into a Highly Robust and Selective System for Water Pollutants Removal
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Highly Robust and Selective System for Water Pollutants Removal: How to Transform a Traditional Photocatalyst into a Highly Robust and Selective System for Water Pollutants Removal

机译:高效选择性强的水污染物去除系统:如何将传统的光催化剂转化为高效选择性强的水污染物去除系统

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摘要

Highly porous monolithic aerogels based on ZnO photocatalyst and syndiotactic polystyrene (s-PS) were obtained by supercritical CO treatment of ZnO/s-PS gels. The prepared aerogels were characterized and their photocatalytic activity was evaluated using phenol and toluene as water pollutant models. The s-PS nanoporous crystalline phase, able to absorb pollutant molecules, was proven to be necessary to ensure high photocatalytic efficiency as the aerogel acts not only as a support, but also as pollutant pre-concentrator. The reusability of ZnO/s-PS aerogels is also strong showing no decrease in photocatalytic activity after six consecutive degradation trials. Finally, the aerogel matrix prevents ZnO dissolution occurring under acidic conditions and promotes a selective removal of the pollutants. The synergy between the photocatalyst and the innovative polymeric support provides the composite system with robustness, chemical stability, easy recovery after treatment, high efficiency of pollutant removal with a marked selectivity which make these materials promising for large scale applications.
机译:通过ZnO / s-PS凝胶的超临界CO处理,获得了基于ZnO光催化剂和间规聚苯乙烯(s-PS)的高度多孔的整体气凝胶。表征了所制备的气凝胶,并使用苯酚和甲苯作为水污染物模型评估了它们的光催化活性。事实证明,能够吸收污染物分子的s-PS纳米多孔晶体相对于确保高的光催化效率是必需的,因为气凝胶不仅充当载体,而且充当污染物的预浓缩器。连续六次降解试验后,ZnO / s-PS气凝胶的可重复使用性也很强,显示光催化活性没有降低。最后,气凝胶基质可防止ZnO在酸性条件下发生溶解,并促进选择性去除污染物。光催化剂和创新的聚合物载体之间的协同作用为复合系统提供了坚固性,化学稳定性,处理后易于回收,高效的污染物去除效率和显着的选择性,这些材料有望在大规模应用中得到应用。

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