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首页> 外文期刊>International Communications in Heat and Mass Transfer >A comparative experimental study on the physical behavior of mono and hybrid RBD palm olein based nanofluids using CuO nanoparticles and PANI nanofibers
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A comparative experimental study on the physical behavior of mono and hybrid RBD palm olein based nanofluids using CuO nanoparticles and PANI nanofibers

机译:用CuO纳米粒子和PANI纳米纤维对单氢和杂交RBD棕榈油蛋白纳米流体物理行为的比较实验研究

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摘要

A new class nanofluid consisting of Copper Oxide (CuO) nanoparticles, Polyaniline Nanofibers (PANI), and CuO-PANI nanocomposites dispersed in refined, bleached, and deodorized palm olein (RBDL) base fluids have been successfully prepared. The prepared nanofluids were physically characterized to investigate the influence of different nanoparticles and nanocomposites on the dispersion behavior, thermal stability, and thermophysical properties. Physical characterization from TEM, EDX, XRD, TGA, and FT-IR analysis revealed that the CuO nanoparticles had been embedded in the PANI matrix. Sedimentation analysis revealed CuO/RBDL nanofluid achieved stability lesser than one month. Meanwhile, PANI/RBDL and CuO-PANI/RBDL showed there was no sedimentation for almost a month. UV-vis analysis further revealed that all PANI/RBDL and CuO-PANI/RBDL nanofluids samples achieved absorbance drop in the range of 4 to 12% after 30 days of evaluation. FT-IR analysis revealed that nanofluids are chemically stable. The thermal decomposition properties in the TG curve showed that the nanofluids could withstand high temperatures. Viscosity measurement revealed that all RBDL base nanofluids exhibited Newtonian behavior. The thermal conductivity measurement inferred that the most outstanding thermal conductivity was achieved by nanofluid with 10 wt% CuO-PANI nanocomposites with a 31.34% enhancement. While the least was shown by CuO/RBDL with 17.8% enhancement.
机译:已经成功制备了一种新的纳米流体,由氧化铜(CuO)纳米颗粒,聚苯胺纳米纤维(PANI)和分散在精制,漂白和除臭棕榈油蛋白(RBDL)基础流体中的聚苯胺纳米纤维(PANI)和Cuo-Pani纳米复合材料组成。物理表征制备的纳米流体以研究不同纳米颗粒和纳米复合材料对分散行为,热稳定性和热性性特性的影响。来自TEM,EDX,XRD,TGA和FT-IR分析的物理表征显示CUO纳米颗粒已嵌入PANI基质中。沉淀分析显示CuO / RBDL纳米流体达到稳定性小于一个月。同时,PANI / RBDL和CUO-PANI / RBDL显示几乎没有沉淀。 UV-VIS分析进一步揭示所有PANI / RBDL和CUO-PANI / RBDL纳米流体样品在评价30天后达到4%至12%的吸光度下降。 FT-IR分析显示纳米流体在化学上稳定。 Tg曲线中的热分解特性显示纳米流体可以承受高温。粘度测量表明,所有RBDL碱流体均表现出牛顿行为。导热率测量推断出通过纳米流体实现最突出的导热性,具有10wt%Cuo-Pani纳米复合材料,增强31.34%。虽然Cuo / RBDL的最低限增强了17.8%。

著录项

  • 来源
    《International Communications in Heat and Mass Transfer》 |2021年第1期|105006.1-105006.13|共13页
  • 作者单位

    College of Engineering Universiti Malaysia Pahang 26300 Gambang Kuantan Pahang Malaysia;

    College of Engineering Universiti Malaysia Pahang 26300 Gambang Kuantan Pahang Malaysia;

    Department of Science School of Technology Pandit Deendayal Petroleum University Knowledge Corridor Raisan Village Gandhinagar 382007 Gujarat India;

    Faculty of Mechanical & Automotive Engineering Technology Universiti Malaysia Pahang 26600 Pekan Pahang Malaysia;

    Research Centre for Nano-Materials and Energy Technology (RCNMET) School of Science and Technology Sunway University 47500 Selangor Darul Ehsan Malaysia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Nanofluid; Palm oil; Nanoparticles; Rheology; Thermal conductivity; Viscosity;

    机译:纳米流体;棕榈油;纳米粒子;流变学;导热系数;粘度;
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