ROLE OF NANOTECHNOLOGY IN REDUCING POLLUTION

R. C. Paramanik, A. Paramanik
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引用次数: 1

Abstract

Looking at the Nano scale has stimulated the development and use of novel and costeffective technologies for remediation, pollution detection, catalysis and others. Nanotechnology is defined as the creation of functional materials, devices and systems through control of matter on the nanometer (1-100 nm) length scale and the exploitation of novel properties and phenomena developed at that scale. Environmental nanotechnology is considered to play a key role in the shaping of current environmental engineering and science. Nanotechnology is an upcoming technology that can provide solution for combating pollution by controlling shape and size of materials at the Nano scale. This review provides comprehensive information regarding the role of nanotechnology in pollution control at three different steps viz. Source reduction or pollution prevention, remediation or degradation of pollutants and sensing of pollutants. Due to its large surface area and high surface energy, the nanoparticles have the ability to absorb large amount of pollutants or catalyze reactions at a much faster rate, thus reducing energy consumption during degradation or helps in preventing release of contaminants. Pollution prevention by nanotechnology refers on the one hand to a reduction in the use of raw materials, water or other resources and the elimination or reduction of waste and on the other hand to more efficient use of energy or involvement in energy production. The Nano size of the particles also make it possible to reach otherwise inaccessible areas and hence promote in-situ remediation rather than ex-situ remediation. The ability of the nanoparticles to be coated with various ligands and control of surface area to volume ratio by changing the shape of the nanoparticle Nanotechnology and the environment – is it therefore a Janus-faced relationship. There is the huge hope that Nano technological applications and products will lead to a cleaner and healthier environmentrticles enables the design of sensors with high selectivity, sensitivity and specificity.
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纳米技术在减少污染方面的作用
对纳米尺度的关注刺激了在修复、污染检测、催化和其他方面开发和使用新颖且具有成本效益的技术。纳米技术被定义为通过在纳米(1-100纳米)长度尺度上控制物质来创造功能材料、设备和系统,并利用在该尺度上开发的新特性和现象。环境纳米技术被认为在塑造当前的环境工程和科学中起着关键作用。纳米技术是一种新兴的技术,它可以通过在纳米尺度上控制材料的形状和尺寸来解决污染问题。这篇综述全面介绍了纳米技术在三个不同步骤的污染控制中的作用,即减少污染源或防止污染、修复或降解污染物和监测污染物。由于其大表面积和高表面能,纳米颗粒具有吸收大量污染物或以更快的速度催化反应的能力,从而减少降解过程中的能量消耗或有助于防止污染物的释放。利用纳米技术防止污染,一方面是指减少使用原材料、水或其他资源,消除或减少废物,另一方面是指更有效地利用能源或参与能源生产。颗粒的纳米尺寸也使其有可能到达否则无法到达的区域,从而促进原位修复而不是非原位修复。纳米粒子被各种配体包裹的能力,以及通过改变纳米粒子的形状来控制表面积与体积比的能力——纳米技术和环境——因此是一种双面关系。纳米技术的应用和产品将带来一个更清洁、更健康的环境,这是一个巨大的希望。纳米技术使设计具有高选择性、灵敏度和特异性的传感器成为可能。
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