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Nanotechnology in Wastewater Management: A New Paradigm Towards Wastewater Treatment

机译:废水管理中的纳米技术:一种朝着废水处理的新范式

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摘要

Clean and safe water is a fundamental human need for multi-faceted development of society and a thriving economy. Brisk rises in populations, expanding industrialization, urbanization and extensive agriculture practices have resulted in the generation of wastewater which have not only made the water dirty or polluted, but also deadly. Millions of people die every year due to diseases communicated through consumption of water contaminated by deleterious pathogens. Although various methods for wastewater treatment have been explored in the last few decades but their use is restrained by many limitations including use of chemicals, formation of disinfection by-products (DBPs), time consumption and expensiveness. Nanotechnology, manipulation of matter at a molecular or an atomic level to craft new structures, devices and systems having superior electronic, optical, magnetic, conductive and mechanical properties, is emerging as a promising technology, which has demonstrated remarkable feats in various fields including wastewater treatment. Nanomaterials encompass a high surface to volume ratio, a high sensitivity and reactivity, a high adsorption capacity, and ease of functionalization which makes them suitable for application in wastewater treatment. In this article we have reviewed the techniques being developed for wastewater treatment using nanotechnology based on adsorption and biosorption, nanofiltration, photocatalysis, disinfection and sensing technology. Furthermore, this review also highlights the fate of the nanomaterials in wastewater treatment as well as risks associated with their use.
机译:清洁和安全的水是一种基本的人类需求,对社会和繁荣经济的多方面发展。在人口中轻快地升起,扩大产业化,城市化和广泛的农业实践导致了一代不仅使水肮脏或污染的废水产生,而且致命。每年数百万人死于通过消费因受害病原体污染的水而传达的疾病。虽然在过去的几十年中已经探讨了各种用于废水处理的方法,但它们的使用受到许多限制,包括使用化学品,消毒副产物(DBPS),时间消耗和销量的使用。纳米技术,在分子或原子水平上操纵物质以制作具有优异的电子,光学,磁,导电和机械性能的新结构,装置和系统,作为一个有前途的技术,这在包括废水的各个领域展现出显着的壮举治疗。纳米材料包括高度的体积比,高灵敏度和反应性,高吸附容量和易于官能化,这使得它们适用于废水处理中的应用。在本文中,我们已经审查了基于吸附和生物吸附,纳米滤光,光催化,消毒和传感技术,使用纳米技术使用纳米技术进行废水处理开发的技术。此外,该综述还突出了废水处理中纳米材料的命运以及与其使用相关的风险。

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