Chauhan Gaurav, González-González Reyna Berenice, Iqbal Hafiz M N
Tecnologico de Monterrey, School of Engineering and Sciences, Monterrey, 64849, Mexico.
Tecnologico de Monterrey, School of Engineering and Sciences, Monterrey, 64849, Mexico.
Environ Res. 2022 Mar;204(Pt D):112407. doi: 10.1016/j.envres.2021.112407. Epub 2021 Nov 18.
The current nanotechnological advancements provide an astonishing insight to fabricate nanomaterials for nano-bioremediation purposes. Exciting characteristics possessed by hybrid matrices at the nanoscale knock endless opportunities to nano-remediate environmentally-related pollunanomaterials tants of emerging concern. Nanometals are considered among the oldest generation of the world has ever noticed. These tiny nanometals and nanometal oxides showed enormous potential in almost every extent of industrial and biotechnological domains, including their potential multipurpose approach to deal with water impurities. In this manuscript, we discussed their role in the diversity of water treatment technologies used to remove bacteria, viruses, heavy metals, pesticides, and organic impurities, providing an ample perspective on their recent advances in terms of their characteristics, attachment strategies, performance, and their scale-up challenges. Finally, we tried to explore their futuristic contribution to nano-remediate environmentally-related pollutants of emerging concern aiming to collect treated yet safe water that can be reused for multipurpose.
当前的纳米技术进展为制造用于纳米生物修复目的的纳米材料提供了惊人的见解。纳米级混合基质所具有的令人兴奋的特性为纳米修复新出现的环境相关污染物带来了无数机会。纳米金属被认为是世界上最早出现的一代。这些微小的纳米金属和纳米金属氧化物在几乎所有工业和生物技术领域都显示出巨大潜力,包括它们处理水中杂质的潜在多用途方法。在本手稿中,我们讨论了它们在用于去除细菌、病毒、重金属、农药和有机杂质的各种水处理技术中的作用,从其特性、附着策略、性能及其放大挑战方面对其最新进展提供了充分的视角。最后,我们试图探索它们对纳米修复新出现的环境相关污染物的未来贡献,旨在收集经过处理且安全的水,以便能够用于多种用途。