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Detection and remediation of pollutants to maintain ecosustainability employing nanotechnology: A review

机译:污染物的检测和修复维持纳米技术的生态学性能:综述

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摘要

Environmental deterioration due to anthropogenic activities is a threat to sustainable, clean and green environment. Accumulation of hazardous chemicals pollutes soil, water and air and thus significantly affects all the ecosystems. This article highlight the challenges associated with various conventional techniques such as filtration, absorption, flocculation, coagulation, chromatographic and mass spectroscopic techniques. Environmental nanotechnology has provided an innovative frontier to combat the aforesaid issues of sustainable environment by reducing the non-requisite use of raw materials, electricity, excessive use of agrochemicals and release of industrial effluents into water bodies. Various nanotechnology based approaches including surface enhance scattering, surface plasmon resonance; and distinct types of nanoparticles like silver, silicon oxide and zinc oxide have contributed significantly in detection of environmental pollutants. Biosensing technology has also gained significant attention for detection and remediation of pollutants. Furthermore, nanoparticles of gold, ferric oxide and manganese oxide have been used for the on-site remediation of antibiotics, organic dyes, pesticides, and heavy metals. Recently, green nanomaterials have been given more attention to address toxicity issues of chemically synthesized nanomaterials. Hence, nanotechnology has provided a platform with tremendous applications to have sustainable environment for present as well as future generations. This review article will help to understand the fundamentals for achieving the goals of sustainable development, and healthy environment.
机译:由于人为活动导致的环境恶化是可持续,清洁和绿色环境的威胁。危险化学品的积累污染土壤,水和空气,从而显着影响所有生态系统。本文突出了与各种常规技术相关的挑战,例如过滤,吸收,絮凝,凝结,色谱和质谱技术。环境纳米技术提供了一种创新的前沿,通过减少原材料,电力,过量使用农业化学物质和工业污水释放到水体中的非必要使用,为可持续环境的上述问题进行打击。基于各种纳米技术的方法,包括表面增强散射,表面等离子体共振;在检测环境污染物的检测中,如银,氧化硅和氧化锌如银,氧化硅和氧化锌如银,氧化硅和氧化锌的不同类型。生物传感技术也得到了对污染物的检测和修复的重要关注。此外,纳米颗粒,氧化铁和锰氧化物已被用于现场修复抗生素,有机染料,农药和重金属。最近,绿色纳米材料更加注重化学合成纳米材料的毒性问题。因此,纳米技术提供了一个具有巨大应用程序的平台,以具有可持续的环境以及未来几代人。本综述文章将有助于了解实现可持续发展目标和健康环境的基本面。

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