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钛改性的LaFeO/β-SiC肺泡泡沫作为具有光芬顿和光催化活性组合的固定化双催化剂。

Ti-Modified LaFeO/β-SiC Alveolar Foams as Immobilized Dual Catalysts with Combined Photo-Fenton and Photocatalytic Activity.

作者信息

García-Muñoz Patricia, Fresno Fernando, Lefevre Christophe, Robert Didier, Keller Nicolas

机构信息

Institut de Chimie et Procédés pour l'Energie, l'Environnement et la Santé (ICPEES), CNRS/University of Strasbourg, 25 rue Becquerel, 67087 Strasbourg, France.

Photoactivated Processes Unit, IMDEA Energy, Móstoles, 28935 Madrid, Spain.

出版信息

ACS Appl Mater Interfaces. 2020 Dec 23;12(51):57025-57037. doi: 10.1021/acsami.0c16647. Epub 2020 Dec 9.

Abstract

Ti-modified LaFeO/β-SiC alveolar foams were used as immobilized, highly robust dual catalysts with combined photocatalytic wet peroxide oxidation and photocatalytic activity under UV-A light. They were prepared by incipient wetness impregnation of a β-SiC foam support, by implementing a sol-gel Pechini synthesis at the foam surface in the presence of dried amorphous sol-gel titania as a titanium source. The physicochemical and catalytic features suggest the stabilization at the foam surface of a substituted LaTiFeO catalyst analogous to its powdery counterpart. Taking 4-chlorophenol removal in water as a model reaction, its dual nature enables both high reaction rates and full total organic carbon (TOC) conversion because of a synergy effect, while its macroscopic structure overcomes the drawback of working with powdery catalysts. Further, it yields photonic efficiencies for degradation and mineralization of 9.4 and 38%, respectively, that strongly outperform those obtained with a reference TiO P25/β-SiC foam photocatalyst. The enhancement of the catalyst robustness upon Ti modification prevents any Fe leaching to the solution, and therefore, the optimized macroscopic foam catalyst with 10 wt % catalyst loading operates through pure heterogeneous surface reactions, without any activity loss during reusability test cycles.

摘要

钛改性的LaFeO/β-SiC泡沫被用作固定化、高度稳健的双功能催化剂,在紫外光A下兼具光催化湿式过氧化物氧化和光催化活性。它们是通过初湿浸渍β-SiC泡沫载体,在泡沫表面以干燥的无定形溶胶-凝胶二氧化钛为钛源,采用溶胶-凝胶佩琴尼合成法制备的。物理化学和催化特性表明,在泡沫表面稳定存在一种类似于其粉末对应物的取代型LaTiFeO催化剂。以水中4-氯苯酚的去除作为模型反应,由于协同效应,其双功能性质使得反应速率高且总有机碳(TOC)完全转化,同时其宏观结构克服了使用粉末催化剂的缺点。此外,其降解和矿化的光子效率分别为9.4%和38%,大大优于参考TiO₂ P25/β-SiC泡沫光催化剂。钛改性后催化剂稳健性的增强可防止任何铁浸出到溶液中,因此,催化剂负载量为10 wt%的优化宏观泡沫催化剂通过纯多相表面反应运行,在可重复使用测试循环中没有任何活性损失。

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