Kim Taegyu, Yoo Kunsang, Kim Myung-Gil, Kim Yong-Hoon
School of Advanced Materials Science and Engineering, Sungkyunkwan University, Suwon 16419, Korea.
Nanomaterials (Basel). 2022 Aug 26;12(17):2959. doi: 10.3390/nano12172959.
Indoor air filtration received significant attention owing to the growing threat to the environment and human health caused by air pollutants such as volatile organic compound (VOC) gases. However, owing to the limited adsorption capacity of VOC adsorbents, such as activated carbon, a rapid breakthrough can occur, reducing the service life of the filter. Therefore, TiO2-coated zeolite (TiO2/zeolite) was utilized as a photo-regenerative VOC adsorbent to increase the service life of VOC filters. In particular, with photoactive TiO2 forms on zeolite, efficient and repetitive photo-regeneration is attainable through the dissociation of VOC molecules by the photocatalytic reaction. We optimized the TiO2 coating amount to obtain TiO2/zeolite particles with a high surface area (BET surface area > 500 m2/g) and high adsorption capacity. A VOC filter with an adsorption efficiency of 72.1% for formaldehyde was realized using TiO2/zeolite as the adsorbent. Furthermore, the TiO2/zeolite filter exhibits a photo-regeneration efficiency of >90% for the initial two regeneration cycles using ultraviolet illumination, and >60% up to five cycles. Based on these observations, we consider that TiO2/zeolite is a potential adsorbent candidate for photo-regenerative VOC filters.
由于挥发性有机化合物(VOC)气体等空气污染物对环境和人类健康造成的威胁日益增加,室内空气过滤受到了广泛关注。然而,由于活性炭等VOC吸附剂的吸附能力有限,可能会迅速出现穿透现象,从而缩短过滤器的使用寿命。因此,二氧化钛包覆的沸石(TiO2/沸石)被用作光再生VOC吸附剂,以延长VOC过滤器的使用寿命。特别是,在沸石上形成光活性TiO2后,通过光催化反应使VOC分子解离,可以实现高效且重复的光再生。我们优化了TiO2的包覆量,以获得具有高表面积(BET表面积>500 m2/g)和高吸附能力的TiO2/沸石颗粒。使用TiO2/沸石作为吸附剂,实现了对甲醛吸附效率为72.1%的VOC过滤器。此外,TiO2/沸石过滤器在使用紫外线照射的最初两个再生循环中,光再生效率>90%,在多达五个循环中>60%。基于这些观察结果,我们认为TiO2/沸石是光再生VOC过滤器的潜在吸附剂候选材料。