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Thermal Transport and Rheological Properties of Hybrid Nanofluids Based on Vegetable Lubricants

  • Hélio Ribeiro
    ,
  • Jose Jaime Taha-Tijerina(corresponding author)
    ,
  • Ofelia Gomez
    ,
  • Ever Acosta
    ,
  • Gabriel M. Pinto
    ,
  • Lorena R.C. Moraes
*Corresponding author for this work
  • University of Texas Rio Grande Valley
    ,
  • Universidade Presbiteriana Mackenzie
    ,
  • Pontifícia Universidade Católica do Rio de Janeiro
Research Output:
Contribution to journal
Article
Peer-review

Open access

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SciVal
FWCI
0.67
SciVal
Author count
11
SciVal
Paper percentile
60
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Citations
10
Scopus
Citations

Abstract

Nanofluids based on vegetal oil with different wt.% of carbon nanotubes (CNT), hexagonal boron nitride (h-BN), and its hybrid (h-BN@CNT) were produced to investigate the effects of these nano-additives on the thermal conductivity and rheological properties of nanofluids. Stable suspensions of these oil/nanostructures were produced without the use of stabilizing agents. The dispersed nanostructures were investigated by SEM, EDS, XRD, and XPS, while the thermal conductivity and rheological characteristics were studied by a transient hot-wire method and steady-state flow tests, respectively. Increases in thermal conductivity of up to 39% were observed for fluids produced with 0.5 wt.% of the hybrid nanomaterials. As for the rheological properties, it was verified that both the base fluid and the h-BN suspensions exhibited Newtonian behavior, while the presence of CNT modified this tendency. This change in behavior is attributed to the hydrophobic character of both CNT and the base oil, while h-BN nanostructures have lip-lip “bonds”, giving it a partial ionic character. However, the combination of these nanostructures was fundamental for the synergistic effect on the increase of thermal conductivity with respect to their counterparts.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

2739

Journal (Volume, Issue Number)

Nanomaterials (Volume 13, Issue 20)

Publication milestones

  • Published - 10/2023

Publication status

Published - 10/2023

Publication IDs

  • Scopus: 85176281688

Funding Details

The authors would like to thank Cargill Industrial Specialties for supplying raw material used in this research. The authors also thank the Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) for the grant PRINT88887.310339/2018-00 and Mackenzie Research Fund (MackPesquisa, Project number 181009). The authors also acknowledge the collaboration between the University Texas Rio Grande Valley (TX-USA) and Mackenzie Presbyterian University (SP-Brazil).
FundersFunding numbers
Mackenzie Research Fund
181009
CAPES
PRINT88887.310339/2018-00
CAPES
-