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A formulation strategy for preparation of ZnO-Propylene glycol-water nanofluids with improved transport properties

机译:制备具有改善传输性能​​的ZnO-丙二醇-水纳米流体的配方策略

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Experiments were carried out on the influence of nanoparticle-liquid interactions on transport properties (viscosity and thermal conductivity) of ZnO-Propylene glycol-water nanofluids. Our experiments show that the preparation of ZnO-Propylene glycol-water nanofluid through addition of water to well-dispersed ZnO-Propylene glycol dispersion results in decreased viscosity and increased thermal conductivity, in comparison to that of propylene glycol-water mixture, due to favourable nanopartide-liquid interaction. Such nanofluids are stable even without addition of any stabilizing agent. The study of influence of nanoparticle concentration (≤2 vol%) and temperature (15-50 ℃) on thermal conductivity reveal higher thermal conductivity enhancements at lower temperatures. This could be attributed to layering of propylene glycol molecules on surface of ZnO nanoparticles. The presence of liquid layers was ascertained through thermal analysis and infrared spectroscopy.
机译:进行了纳米粒子-液体相互作用对ZnO-丙二醇-水纳米流体的传输性质(粘度和热导率)的影响的实验。我们的实验表明,通过将水添加到分散良好的ZnO-丙二醇分散体中来制备ZnO-丙二醇-水纳米流体,与丙二醇-水混合物相比,可降低粘度并提高热导率纳米粒子-液体相互作用。即使不添加任何稳定剂,此类纳米流体也是稳定的。纳米粒子浓度(≤2vol%)和温度(15-50℃)对热导率的影响研究表明,在较低温度下,热导率会提高。这可能归因于丙二醇分子在ZnO纳米颗粒表面的分层。通过热分析和红外光谱确定液体层的存在。

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