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Effect of morphology of carbon nanomaterials on thermo-physical characteristics, optical properties and photo-thermal conversion performance of nanofluids
被引:68
|作者:
Zhang, Long
[1
]
Chen, Leilei
[1
]
Liu, Jian
[1
]
Fang, Xiaoming
[1
]
Zhang, Zhengguo
[1
]
机构:
[1] South China Univ Technol, Key Lab Enhanced Heat Transfer & Energy Conservat, Minist Educ, Sch Chem & Chem Engn, Guangzhou 510640, Guangdong, Peoples R China
来源:
基金:
中国国家自然科学基金;
关键词:
Nanofluid;
Direct absorption solar collector;
Carbon nanomaterials;
Radiative property;
Photothermal conversion performance;
CONVECTIVE HEAT-TRANSFER;
HIGH-TEMPERATURE;
SOLAR;
ENHANCEMENT;
CONDUCTIVITY;
STABILITY;
GRAPHITE;
D O I:
10.1016/j.renene.2016.07.073
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Graphite nanoparticles (GNPs), single-wall carbon nanotubes (SWCNTs) and graphene (GE) were dispersed into an ionic liquid (IL) to prepare nanofluids at different mass fractions, respectively. The thermo-physical characteristics, radiative properties, and photo-thermal conversion performance of the IL-based nanofluids containing the carbon nanomaterials with different morphologies were investigated in details. It is shown that all the nanofluids exhibit an increase in thermal conductivity and a decrease in viscosity as composed with the base liquid, and the enhancement and reduction ratios varied with their morphologies. The GE-dispersed nanofluids exhibit the highest thermal conductivity enhancement ratios as compared to the GNPs- and SWCNTs-dispersed ones at the same mass fractions. Among the nanofluids containing different carbon nanomaterials, the GE-dispersed nanofluids show the lowest transmittance and possess the highest extinction coefficients. It is revealed that the photo-thermal conversion performance of the IL has been enhanced by the addition of the carbon nanomterials, and the GE-dispersed nanofluids exhibit the highest photo-thermal conversion efficiency among the nanofluids containing different carbon nanomaterials. The superiorities in thermal conductivity, optical property and photo thermal conversion efficiency make the GE-dispersed nanofluids show great potential for use as high-performance HTFs in solar thermal systems such as working fluids for DASCs. (C) 2016 Elsevier Ltd. All rights reserved.
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页码:888 / 897
页数:10
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