Shah Kwok Wei, Li Wenxin
Department of Building, School of Design and Environment, National University of Singapore, 4 Architecture Drive, Singapore 117566, Singapore.
Nanomaterials (Basel). 2019 Jun 23;9(6):910. doi: 10.3390/nano9060910.
In order to improve the indoor air quality, volatile organic compounds (VOCs) can be removed via an efficient approach by using catalysts. This review proposed a comprehensive summary of various nanomaterials for thermal/photo-catalytic removal of VOCs. These representative materials are mainly categorized as carbon-based and metallic oxides materials, and their morphologies, synthesis techniques, and performances have been explained in detail. To improve the indoor and outdoor air quality, the catalytic nanomaterials can be utilized for emerging building applications such as VOC-reduction coatings, paints, air filters, and construction materials. Due to the characteristics of low cost, non-toxic and high chemical stability, metallic oxides such as TiO and ZnO have been widely investigated for decades and dominate the application market of VOC-removal catalyst in buildings. Since other catalysts also showed brilliant performance and have been theoretically researched, they can be potential candidates for applications in future healthy buildings. This review will contribute to further knowledge and greater potential applications of promising VOC-reducing catalytic nanomaterials on healthier buildings for a better indoor and outdoor environment well-being.
为了改善室内空气质量,挥发性有机化合物(VOCs)可以通过使用催化剂的有效方法来去除。本综述对用于热催化/光催化去除VOCs的各种纳米材料进行了全面总结。这些代表性材料主要分为碳基材料和金属氧化物材料,并详细解释了它们的形态、合成技术和性能。为了改善室内和室外空气质量,催化纳米材料可用于新兴的建筑应用,如VOC减排涂料、油漆、空气过滤器和建筑材料。由于具有低成本、无毒和高化学稳定性等特点,TiO和ZnO等金属氧化物已经被广泛研究了几十年,并主导了建筑中VOC去除催化剂的应用市场。由于其他催化剂也表现出优异的性能并已进行了理论研究,它们可能成为未来健康建筑应用的潜在候选材料。本综述将有助于进一步了解有前景的VOC减排催化纳米材料,并推动其在更健康建筑中的更大潜在应用,以实现更好的室内和室外环境福祉。