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Thermal stability and conductivity of carbon nanotube udnanofluid using xanthan gum as surfactant

机译:碳纳米管的热稳定性和导电性以黄原胶为表面活性剂的纳米流体

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摘要

A nanofluid is a suspension of nano-sized particles dispersed in a base fluid. It is very much obligatory to know more about stability and thermal characteristics of such a nanofluid for their further use in practical applications. In this research, multiwalled carbon nanotubes (CNT) is dispersed in water. CNT dispersed in water is highly unstable and it sediments rapidly due to the Vander Waals force of attraction. Therefore, to overcome this limitation, xanthan gum (XG) was added which behave as a promising dispersant followed by 4 h water bath sonication. Experimental work includes stability studies using UV Vis spectroscopy with respect to CNT concentration (0.01 and 0.1 wt. %) and XG concentration (0.04 and 0.2 wt. %). The thermal conductivity of the most stable suspensions was measured using KD 2 Pro as a function of temperature (25-70°C) and CNT concentration. The optimum XG concentration was found for each CNT concentration studied. Thermal conductivity was observed to be strongly dependent on temperature and CNT concentration. The dispersion state of the CNT-water nanofluid is further examined using scanning electron microscope (SEM). In short, CNT nanofluids are found to be more suitable for heat transfer applications in many industries due to their enhanced thermal conductivity property. This work provides useful insight on the behavior of CNT nanofluids.
机译:纳米流体是分散在基础流体中的纳米级颗粒的悬浮液。非常有必要更多地了解这种纳米流体的稳定性和热特性,以便在实际应用中进一步使用它们。在这项研究中,多壁碳纳米管(CNT)分散在水中。分散在水中的CNT非常不稳定,由于范德华力的吸引,它迅速沉降。因此,为克​​服这一限制,加入了黄原胶(XG),其表现出良好的分散作用,随后进行4 h水浴超声处理。实验工作包括使用UV可见光谱对CNT浓度(0.01和0.1 wt。%)和XG浓度(0.04和0.2 wt。%)进行稳定性研究。使用KD 2 Pro根据温度(25-70°C)和CNT浓度测量最稳定的悬浮液的导热系数。找到每种研究的CNT浓度的最佳XG浓度。观察到热导率强烈依赖于温度和CNT浓度。 CNT-水纳米流体的分散状态使用扫描电子显微镜(SEM)进一步检查。简而言之,发现CNT纳米流体由于其增强的导热性而更适合于许多行业中的传热应用。这项工作为CNT纳米流体的行为提供了有用的见解。

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