Department of Pure and Industrial Chemistry, University of Nigeria, Nsukka, Enugu State, Nigeria.
Department of Applied Science and Humanities, Galgotias College of Engineering & Technology, Greater Noida, Uttar Pradesh, 201310, India.
Environ Monit Assess. 2023 Dec 19;196(1):65. doi: 10.1007/s10661-023-12194-6.
In view of the widespread and distribution of several classes and types of organic contaminants, increased efforts are needed to reduce their spread and subsequent environmental contamination. Although several remediation approaches are available, adsorption and photodegradation technologies are presented in this review as one of the best options because of their environmental friendliness, cost-effectiveness, accessibility, less selectivity, and wider scope of applications among others. The bandgap, particle size, surface area, electrical properties, thermal stability, reusability, chemical stability, and other properties of silver nanoparticles (AgNPS) are highlighted to account for their suitability in adsorption and photocatalytic applications, concerning organic contaminants. Literatures have been reviewed on the application of various AgNPS as adsorbent and photocatalyst in the remediation of several classes of organic contaminants. Theories of adsorption have also been outlined while photocatalysis is seen to have adsorption as the initial mechanism. Challenges facing the application of silver nanoparticles have also been highlighted and possible solutions have been presented. However, current information is dominated by applications on dyes and the view of the authors supports the need to strengthen the usefulness of AgNPS in adsorption and photodegradation of more classes of organic contaminants, especially emerging contaminants. We also encourage the simultaneous applications of adsorption and photodegradation to completely convert toxic wastes to harmless forms.
鉴于几类和几类有机污染物的广泛分布和分布,需要加大努力减少其传播和随后的环境污染。尽管有几种修复方法可用,但在本文中,吸附和光降解技术被认为是最佳选择之一,因为它们具有环保、经济高效、易于获得、选择性低以及应用范围广等特点。银纳米粒子 (AgNPS) 的带隙、粒径、表面积、电特性、热稳定性、可重复使用性、化学稳定性和其他特性被强调,以说明它们在吸附和光催化应用中适用于有机污染物。本文综述了各种 AgNPS 作为吸附剂和光催化剂在修复几类有机污染物中的应用。吸附理论也进行了概述,而光催化被认为是吸附的初始机制。还强调了银纳米粒子应用面临的挑战,并提出了可能的解决方案。然而,目前的信息主要集中在染料的应用上,作者认为有必要加强 AgNPS 在吸附和光降解更多类有机污染物中的作用,特别是新兴污染物。我们还鼓励同时应用吸附和光降解,将有毒废物完全转化为无害形式。