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TiO2-Based Photocatalytic Geopolymers for Nitric Oxide Degradation

机译:TiO2基光催化地聚合物用于一氧化氮的降解

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摘要

This study presents an experimental overview for the development of photocatalytic materials based on geopolymer binders as catalyst support matrices. Particularly, geopolymer matrices obtained from different solid precursors (fly ash and metakaolin), composite systems (siloxane-hybrid, foamed hybrid), and curing temperatures (room temperature and 60 °C) were investigated for the same photocatalyst content (i.e., 3% TiO2 by weight of paste). The geopolymer matrices were previously designed for different applications, ranging from insulating (foam) to structural materials. The photocatalytic activity was evaluated as NO degradation in air, and the results were compared with an ordinary Portland cement reference. The studied matrices demonstrated highly variable photocatalytic performance depending on both matrix constituents and the curing temperature, with promising activity revealed by the geopolymers based on fly ash and metakaolin. Furthermore, microstructural features and titania dispersion in the matrices were assessed by scanning electron microscopy (SEM) and energy dispersive X-ray (EDS) analyses. Particularly, EDS analyses of sample sections indicated segregation effects of titania in the surface layer, with consequent enhancement or depletion of the catalyst concentration in the active sample region, suggesting non-negligible transport phenomena during the curing process. The described results demonstrated that geopolymer binders can be interesting catalyst support matrices for the development of photocatalytic materials and indicated a large potential for the exploitation of their peculiar features.
机译:这项研究为开发基于地质聚合物粘合剂作为催化剂载体的光催化材料提供了实验概述。特别是,对于相同的光催化剂含量(即3%),研究了从不同的固体前体(粉煤灰和偏高岭土),复合体系(硅氧烷杂化,泡沫杂化)和固化温度(室温和60°C)获得的地聚合物基质。 TiO2(按糊料重量计)。地质聚合物基体以前设计用于不同的应用,范围从绝缘(泡沫)到结构材料。评估光催化活性为空气中的NO降解,并将结果与​​普通波特兰水泥参考进行比较。所研究的基质表现出高度可变的光催化性能,取决于基质成分和固化温度,基于粉煤灰和偏高岭土的地聚合物显示出令人鼓舞的活性。此外,通过扫描电子显微镜(SEM)和能量色散X射线(EDS)分析评估了基体中的微结构特征和二氧化钛分散。特别地,样品部分的EDS分析表明二氧化钛在表面层中的偏析作用,从而导致活性样品区域中催化剂浓度的增加或减少,表明在固化过程中的迁移现象不可忽略。所描述的结果表明,地聚合物粘合剂可能是用于开发光催化材料的有趣的催化剂载体基质,并显示出开发其独特功能的巨大潜力。

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