Experimental investigation on the dispersion stability of Al2O3-CuO hybrid nanofluid using ultraviolet (UV)-visible spectroscopy and Zeta potential analyzer

R. Zulkafli, V. V. Wanatasanappan
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引用次数: 1

Abstract

This paper focuses on an experimental investigation on the dispersion stability of 60:40 water and ethylene glycol based Al2O3−CuO hybrid nanofluids. The volume and concentration of hybrid nanofluids were set to be 30 ml and 0.5%. Three different surfactants (PVP, CTAB, and SLS) with different surfactant ratios (1:10 and 5:10) were used to ensure the nanofluids remained homogenous for a longer period. Dispersion stability is studied using several methods such as sedimentation observation, zeta potential, and UV-Vis. FESEM testing is conducted to study the morphological behavior of the nanoparticles powder, including particle size and structure. Visual inspection showed that only pure Al2O3-CuO and Al2O3-CuO-PVP (1:10) remained homogenous without any visible separation layer. As for UV-Vis spectroscopy, the absorbance value for all samples was below than 1%. Thus, to further investigate the stability Al2O3-CuO hybrid nanofluid, the Zeta potential test is also conducted. Analysis of Zeta potential indicated that PVP with surfactant ratio 1:10 provided better result on the nanofluid stability. The pH value for sample with the PVP dispersant is then measured to be 7.7 which is slightly further from the IEP (pH 9.7-10)
利用紫外-可见光谱和Zeta电位分析仪对Al2O3-CuO杂化纳米流体的分散稳定性进行实验研究
本文主要研究了60:40水和乙二醇基Al2O3 - CuO杂化纳米流体的分散稳定性。混合纳米流体的体积和浓度分别为30 ml和0.5%。使用了三种不同的表面活性剂(PVP、CTAB和SLS)和不同的表面活性剂比例(1:10和5:10),以确保纳米流体在较长时间内保持均匀。采用沉降观察、zeta电位和UV-Vis等方法研究了分散稳定性。通过FESEM测试研究了纳米颗粒粉末的形态行为,包括粒径和结构。目测结果显示,只有纯Al2O3-CuO和Al2O3-CuO- pvp(1:10)保持均匀,没有明显的分离层。紫外可见光谱分析,所有样品的吸光度值均小于1%。因此,为了进一步考察Al2O3-CuO杂化纳米流体的稳定性,我们还进行了Zeta电位测试。Zeta电位分析表明,表面活性剂比为1:10的PVP具有较好的纳米流体稳定性。然后测量PVP分散剂样品的pH值为7.7,略高于IEP (pH值9.7-10)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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