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Nanoparticles: Synthesis application in catalysis effluent treatment

机译:纳米粒子:合成及其在催化和废水处理中的应用

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The effectiveness of a catalyst when worked at nanoscale dimensions give rise to an area of study known as Nanocatalysis which on meticulous research can provide path-breaking results. A nanocatalyst is one which has the ability to perform at atomic scale with one of its internal structure having nanoscale dimensions. This paper is an elementary work and focuses on the preparation, practical application and the substantial changes that occur when a conventional catalyst is replaced by Zn/Ni/Ti/Ce/Fe/Co nanocatalysts in the energy production sector aiming to decrease the consumption of conventional sources and harnessing energy from unexplored sources and also providing cleaner and greener fuel which is of current necessity. Among the substantial changes, it provides a very high surface to volume ratio which results into faster reaction and significantly reduces the catalyst activation energy thus providing better stability to the product and yielding an improved quality of fuel along with increased efficiency of the process. Moreover essential physical and chemical properties of a catalyst in the nano scale can be tailored according to need to achieve specific properties like strength, weight and reactivity and its geometry can be altered to fit into the substrate facilitating better affinity for reaction. It has been proven experimentally that those properties of a catalyst in macro form which are of not much significance show a tremendous activity in the nano scale. This paper also focuses on the synthesis of iron nanoparticles and its use in waste water treatment. Comparative studies of manufacture of a nanocatalyst on different substrates under different reaction conditions have been provided in this paper and there is huge scope of future work in this area due to the current energy demand resulting in the detrimental state of natural resources due to incessant exploitation and any positive result towards improvement of this will be highly beneficial for mankin- .
机译:在纳米尺度上工作时,催化剂的有效性引起了一个被称为纳米催化的研究领域,通过细致的研究可以提供突破性的结果。纳米催化剂是一种能够以原子级的性能,其内部结构之一具有纳米级的尺寸。本文是一项基础性工作,着重于在能源生产领域中用Zn / Ni / Ti / Ce / Fe / Co纳米催化剂代替常规催化剂以减少二氧化锡的消耗时的制备,实际应用和实际变化。传统能源,并利用未开发能源的能源,还提供了目前迫切需要的更清洁,更环保的燃料。在重大变化中,它提供了非常高的表面积与体积比,从而导致更快的反应并显着降低了催化剂活化能,从而为产品提供了更好的稳定性,并提高了燃料质量,同时提高了工艺效率。此外,可以根据需要来实现纳米级催化剂的基本物理和化学性质,以实现诸如强度,重量和反应性之类的特定性质,并且可以改变其几何形状以适合基底,从而促进对反应的更好的亲和力。实验已经证明,宏观形式的催化剂的那些不太重要的性能在纳米级显示出巨大的活性。本文还着重于铁纳米颗粒的合成及其在废水处理中的用途。本文提供了在不同反应条件下在不同基材上制备纳米催化剂的比较研究,由于当前的能源需求,由于不断开发和利用而导致自然资源处于不利状态,因此该领域的未来工作范围很大。改善这一点的任何积极成果将对人类非常有益。

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