Science and Math Program, Asian University for Women, Chattogram, 4000, Bangladesh.
Centre for Technology in Water and Wastewater, School of Civil and Environmental Engineering, University of Technology Sydney, Ultimo, NSW, 2007, Australia; Mechanical Engineering Department, Prince Mohammad Bin Fahd University, Al Khobar, 31952, Saudi Arabia.
Environ Res. 2022 Nov;214(Pt 1):113807. doi: 10.1016/j.envres.2022.113807. Epub 2022 Jul 4.
Wastewater containing toxic substances is a major threat to the health of both aquatic and terrestrial ecosystems. In order to treat wastewater, nanomaterials are currently being studied intensively due to their unprecedented properties. The unique features of nanoparticles are prompting an increasing number of studies into their use in wastewater treatment. Although several studies have been undertaken in recent years, most of them did not focus on some of the nanomaterials that are now often utilized for wastewater treatment. It is essential to investigate the most recent advances in all the types of nanomaterials that are now frequently employed for wastewater treatment. The recent advancements in common nanomaterials used for sustainable wastewater treatment is comprehensively reviewed in this paper. This paper also thoroughly assesses unique features, proper utilization, future prospects, and current limitations of green nanotechnology in wastewater treatment. Zero-valent metal and metal oxide nanoparticles, especially iron oxides were shown to be more effective than traditional carbon nanotubes (CNTs) for recovering heavy metals in wastewater. Iron oxide achieved 75.9% COD (chemical oxygen demand) removal efficiency while titanium oxide (TiO) achieved 75.5% COD. Iron nanoparticles attained 72.1% methyl blue removal efficiency. However, since only a few types of nanomaterials have been commercialized, it is important to also focus on the economic feasibility of each nanomaterial. This study found that the large surface area, high reactivity, and strong mechanical properties of nanoparticles means they can be considered as a promising option for successful wastewater treatment.
含有有毒物质的废水是水生和陆地生态系统健康的主要威胁。为了处理废水,由于纳米材料具有前所未有的特性,目前正在对其进行深入研究。纳米颗粒的独特特性促使越来越多的研究将其用于废水处理。尽管近年来进行了多项研究,但其中大多数并未关注现在常用于废水处理的一些纳米材料。有必要研究现在常用于废水处理的所有类型纳米材料的最新进展。本文全面综述了常用于可持续废水处理的常见纳米材料的最新进展。本文还彻底评估了绿色纳米技术在废水处理中的独特特点、合理利用、未来前景和当前局限性。零价金属和金属氧化物纳米颗粒,特别是氧化铁,在从废水中回收重金属方面比传统的碳纳米管(CNT)更有效。氧化铁的 COD(化学需氧量)去除效率达到 75.9%,而氧化钛(TiO)达到 75.5%。铁纳米颗粒的亚甲基蓝去除效率达到 72.1%。然而,由于只有少数几种类型的纳米材料已经商业化,因此关注每种纳米材料的经济可行性也很重要。本研究发现,纳米颗粒的大表面积、高反应性和强机械性能意味着它们可以被认为是成功处理废水的有前途的选择。