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Characterisation study of a thermal oil-based carbon black solar nanofluid

机译:导热油基炭黑太阳能纳米流体的表征研究

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摘要

Carbon nanoparticles are very useful in solar thermal applications as they absorb much of the solar spectrum, are cheap and have excellent optical properties. Carbon nanoparticles-thermal oil-based nanofluid was prepared by a two-step method with diphenyl sulfone as the surfactant so that nano particles remained suspended even at high temperature. Particle size distribution was studied using two Dynamic Light Scattering systems at room and high temperature, which were also evaluated before and after exposing the nanofluid to thermal treatment so that conditions closer to those in real applications would be replicated. The morphological changes brought about by thermal treatment were observed by Transmission Electron Microscopy. Finally, optical properties, such as the ballistic transmittance, absorption coefficient and scattering albedo of both the base fluid and nanofluid, were measured by a spectrophotometer with and without integrating sphere. The results of this study contribute to knowledge about these solar nanofluids, which are promising alternatives to conventional solar collectors. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳纳米颗粒在太阳热应用中非常有用,因为它们吸收了许多太阳光谱,价格便宜并且具有出色的光学性能。以二苯砜为表面活性剂,通过两步法制备了碳纳米颗粒-热油基纳米流体,使得纳米颗粒即使在高温下也保持悬浮状态。使用两个动态光散射系统在室温和高温下研究了粒径分布,并在将纳米流体进行热处理之前和之后进行了评估,以便可以复制更接近实际应用的条件。用透射电子显微镜观察热处理引起的形态变化。最后,通过具有和不具有积分球的分光光度计测量光学性能,例如基础流体和纳米流体的弹道透射率,吸收系数和散射反照率。这项研究的结果有助于了解有关这些太阳能纳米流体的知识,这是常规太阳能收集器的有希望的替代品。 (C)2019 Elsevier Ltd.保留所有权利。

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