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基于等离子体产生的ZnO-MgO混合纳米流体的热导率增强:一项实验研究。

Enhanced thermal conductivity of plasma generated ZnO-MgO based hybrid nanofluids: An experimental study.

作者信息

Nazir Aqsa, Qamar Adnan, Rafique Muhammad Shahid, Murtaza Ghulam, Arshad Tehreem, Muneeb Abdul, Jabeen Kanwal, Mujtaba M A, Fayaz H, Saleel C Ahamed

机构信息

Laser and Optronics Centre, Department of Physics, University of Engineering and Technology Lahore, Lahore, 54890, Pakistan.

Department of Mechanical, Mechatronics and Manufacturing Engineering, New Campus, University of Engineering and Technology Lahore, Lahore, Pakistan.

出版信息

Heliyon. 2024 Feb 16;10(4):e26396. doi: 10.1016/j.heliyon.2024.e26396. eCollection 2024 Feb 29.

Abstract

Hybrid nanofluids (HNFs) of metallic oxide-based nanoparticles (NPs) have been prepared in different basefluids (BFs) employing the thermal plasma technique. NPs of ZnO-MgO were directly dispersed into pristine coolant, engine oil, distilled water (DW), and coconut oil. Plasma was generated between two identical electrodes applying 8.0 kV at the ambient conditions and proved economically viable in preparing stable HNFs. X-ray Diffractometry (XRD) showed ZnO and MgO NPs possessed hexagonal and cubic crystal structures, respectively. The band gap is calculated through UV-visible spectroscopy. The thermal conductivity (TC) of the HNFs has been measured using a thermal conductivity analyzer based on the transient hot wire method. The band gaps of pristine coolant and its HNFs were obtained to be 3.35 eV and 3.33 eV, respectively. In engine oil and its HNFs, band gaps of 3.16 eV and 3.02 eV have been extracted. There appears to be a slight reduction in band gap for coolant and engine oil-based HNFs. The band gap value of coconut oil-based HNFs was 4.05 eV, which showed a higher value than the pristine coconut oil-based HNFs (3.95 eV). The band gap calculated in the case of DW-based HNFs was 3.79 eV. TC of HNFs with volume concentration of 0.019 % for DW, 0.020 % for coolant, 0.016 % for engine oil, and 0.017 % for coconut oil were tested between 20 and 60 °C. An increase in TC was observed with the rise in temperature of the HNFs. Maximum increment in TC was observed at 60 °C for coolant-based HNFs, which was 19 %, followed by DW (18%), coconut oil (18%), and engine oil (16%), respectively. DW-based HNFs can be used as a coolant and optical filter for optoelectronics devices like photovoltaic cells for better performance. The study underscores precise control of NPs size as pivotal for band gap influence. HNFs hold promise as the next-gen heat transfer fluids (HTFs), revolutionizing thermal conductivity across industries. This research lays a firm foundation for plasma-synthesized HNFs' application in enhanced heat transfer and optoelectronic devices. Coolant-based HNFs excel in thermal conductivity, addressing heat transfer challenges.

摘要

采用热等离子体技术,在不同的基础流体(BFs)中制备了金属氧化物基纳米颗粒(NPs)的混合纳米流体(HNFs)。将ZnO - MgO纳米颗粒直接分散到原始冷却剂、发动机油、蒸馏水(DW)和椰子油中。在环境条件下,在两个相同电极之间施加8.0 kV产生等离子体,并证明在制备稳定的HNFs方面具有经济可行性。X射线衍射(XRD)表明,ZnO和MgO纳米颗粒分别具有六方和立方晶体结构。通过紫外 - 可见光谱计算带隙。使用基于瞬态热线法的热导率分析仪测量了HNFs的热导率(TC)。原始冷却剂及其HNFs的带隙分别为3.35 eV和3.33 eV。在发动机油及其HNFs中,提取的带隙分别为3.16 eV和3.02 eV。基于冷却剂和发动机油的HNFs的带隙似乎略有降低。基于椰子油的HNFs的带隙值为4.05 eV,高于原始基于椰子油的HNFs(3.95 eV)。在基于DW的HNFs中计算出的带隙为3.79 eV。对体积浓度分别为0.019%(DW)、0.020%(冷却剂)、0.016%(发动机油)和0.017%(椰子油)的HNFs在20至60°C之间进行了热导率测试。随着HNFs温度的升高,观察到热导率增加。基于冷却剂的HNFs在60°C时热导率增加最大,为19%,其次分别是DW(增加18%)、椰子油(增加18%)和发动机油(增加16%)。基于DW的HNFs可用作冷却剂和用于光电器件(如光伏电池)的光学滤波器,以实现更好的性能。该研究强调精确控制纳米颗粒尺寸对带隙影响至关重要。HNFs有望成为下一代传热流体(HTFs),彻底改变各行业的热导率。这项研究为等离子体合成的HNFs在强化传热和光电器件中的应用奠定了坚实基础。基于冷却剂的HNFs在热导率方面表现出色,解决了传热挑战。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2241/10884918/f52c6de1ace7/ga1.jpg

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