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Current Trends in the Application of Nanomaterials for the Removal of Emerging Micropollutants and Pathogens from Water

机译:纳米材料在去除水中新兴的微污染物和病原体中的应用趋势

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摘要

Water resources contamination has a worldwide impact and is a cause of global concern. The need for provision of clean water is becoming more and more demanding. Nanotechnology may support effective strategies for the treatment, use and reuse of water and the development of next-generation water supply systems. The excellent properties and effectiveness of nanomaterials make them particularly suitable for water/wastewater treatment. This review provides a comprehensive overview of the main categories of nanomaterials used in catalytic processes (carbon nanotubes/graphitic carbon nitride (CNT/g-C N ) composites/graphene-based composites, metal oxides and composites, metal–organic framework and commercially available nanomaterials). These materials have found application in the removal of different categories of pollutants, including pharmaceutically active compounds, personal care products, organic micropollutants, as well as for the disinfection of bacterial, viral and protozoa microbial targets, in water and wastewater matrices. Apart from reviewing the characteristics and efficacy of the aforementioned nanoengineered materials for the removal of different pollutants, we have also recorded performance limitations issues (e.g., toxicity, operating conditions and reuse) for their practical application in water and wastewater treatment on large scale. Research efforts and continuous production are expected to support the development of eco-friendly, economic and efficient nanomaterials for real life applications in the near future.
机译:水资源污染在世界范围内产生影响,并引起全球关注。提供清洁水的需求变得越来越苛刻。纳米技术可以支持有效的水处理,使用和回用战略以及下一代供水系统的开发。纳米材料的优异性能和有效性使其特别适合于水/废水处理。这篇综述全面概述了催化过程中使用的纳米材料的主要类别(碳纳米管/石墨碳氮化物(CNT / gC N)复合材料/石墨烯基复合材料,金属氧化物和复合材料,金属有机骨架和可商购的纳米材料) 。这些材料已发现可用于去除不同类别的污染物,包括药物活性化合物,个人护理产品,有机微污染物,以及用于对水和废水基质中的细菌,病毒和原生动物微生物目标进行消毒。除了审查上述纳米工程材料用于去除不同污染物的特性和功效外,我们还记录了其在水和废水大规模处理中的实际应用的性能限制问题(例如,毒性,操作条件和重复使用)。预计研究工作和连续生产将在不久的将来支持开发用于现实生活中的环保,经济和高效的纳米材料。

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