Exigency for the Control and Upgradation of Indoor Air Quality—Forefront Advancements Using Nanomaterials

Ayesha Kausar, I. Ahmad, Tianle Zhu, Hassan Shahzad, M. H. Eisa
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引用次数: 2

Abstract

Due to increasing health and environmental issues, indoor air quality (IAQ) has garnered much research attention with regard to incorporating advanced clean air technologies. Various physicochemical air treatments have been used to monitor, control, and manage air contaminants, such as monitoring devices (gas sensors and internet of things-based systems), filtration (mechanical and electrical), adsorption, UV disinfection, UV photocatalysts, a non-thermal plasma approach, air conditioning systems, and green technologies (green plants and algae). This article reviews presently viable technologies for cleaning indoor air and enhancing IAQ. However, regarding the integration of each technology, there are certain limitations to these methods, including the types of pollutants released. As a result, advanced nanomaterials have been applied to monitoring sensors, filtration and adsorption media, and UV photocatalysts to improve IAQ values. The most important nanomaterials used in this regard include polymeric nanofibrous membranes, nanoporous nanomaterials, nanocomposite hydrogels, polymer/nanocarbon nanocomposite, polymer/metal oxide nanocomposite, polymeric nanohybrids, etc. Accordingly, through the use of nanotechnology, optimal solutions linking IAQ regulation techniques to novel nanomaterials can be achieved to attain safe IAQ levels.
室内空气质量控制与提升的迫切性——纳米材料应用的前沿进展
由于日益严重的健康和环境问题,室内空气质量(IAQ)引起了越来越多的研究关注,包括采用先进的清洁空气技术。各种物理化学空气处理已被用于监测、控制和管理空气污染物,如监测设备(气体传感器和基于物联网的系统)、过滤(机械和电气)、吸附、紫外线消毒、紫外线光催化剂、非热等离子体方法、空调系统和绿色技术(绿色植物和藻类)。本文综述了目前可行的净化室内空气和提高室内空气质量的技术。但是,对于每种技术的整合,这些方法都有一定的局限性,包括释放的污染物类型。因此,先进的纳米材料已被应用于监测传感器、过滤和吸附介质以及UV光催化剂,以提高室内空气质量值。在这方面最重要的纳米材料包括聚合物纳米纤维膜、纳米多孔纳米材料、纳米复合水凝胶、聚合物/纳米碳纳米复合材料、聚合物/金属氧化物纳米复合材料、聚合物纳米杂化材料等。因此,通过使用纳米技术,可以实现将室内空气质量调节技术与新型纳米材料相结合的最佳解决方案,以达到安全的室内空气质量水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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