Experimental investigation on thermophysical properties of iobiofluids

被引:2
作者
Radojcin, Milivoj [1 ]
Bikic, Sinisa [2 ]
Pavkov, Ivan [1 ]
Bukurov, Masa [2 ]
Despotovic, Bojana [2 ]
Stamenkovic, Zoran [1 ]
Oluski, Nikola [2 ]
机构
[1] Univ Novi Sad, Fac Agr, Novi Sad, Serbia
[2] Univ Novi Sad, Fac Tech Sci, Trg Dositeja Obradovica 6, Novi Sad 21000, Serbia
关键词
Iobiofluids; ionic liquids; nanofluids; nanoparticles; biomass; agricultural waste; ALKYL CHAIN-LENGTH; IONIC LIQUIDS; THERMAL-CONDUCTIVITY; HEAT-TRANSFER; ETHYLENE-GLYCOL; IMIDAZOLIUM; IONANOFLUIDS; VISCOSITY; TEMPERATURE; NANOFLUIDS;
D O I
10.1177/16878140221075457
中图分类号
O414.1 [热力学];
学科分类号
摘要
The aim of this research was to investigate the density, thermal conductivity, and viscosity of dispersions of agricultural biomass particles in ionic liquid [HMIM][NTf2] used as a base fluid. This research is a continuation of the development of IoBioFluids, a new class of dispersions obtained by suspending particles produced from agricultural biomass, as a sustainable alternative to IoNanoFluids. Dispersions with different mass concentration of particles (0, 0.5, 1, 2.5, and 5 wt%) were studied at different temperatures (20 degrees C, 30 degrees C, 40 degrees C, and 50 degrees C). Agricultural biomass, namely sunflower stalks, was used for particle production. The dispersion was prepared by applying the commonly used two-step method. In the first step, particles were produced as dry powder from hydrothermal carbonization and heat treatment in the inert atmosphere oven. In the second step, the particles were dispersed into ionic liquid. A rheological investigation showed that dispersions exhibited Newtonian behavior for shear rates over 10 s(-1). Density, thermal conductivity, and dynamic viscosity of dispersions increased with greater mass concentration of particles. Two applied merit criteria suggested a lack of any currently benefit of using the dispersions for heat transfer in the laminar flow regime due to high viscosity of dispersion. The results of criterial analysis showed that experimental data are relatively close to the limit values. Indications are suggesting the possibility of further improvement of IoBioFluid properties as a new heat transfer fluid.
引用
收藏
页数:15
相关论文
共 43 条
[1]   Computational Study of Flow and Heat Transfer Characteristics of EG-Si3N4 Nanofluid in Laminar Flow in a Pipe in Forced Convection Regime [J].
Berberovic, Edin ;
Bikic, Sinisa .
ENERGIES, 2020, 13 (01)
[2]   An investigation into the thermophysical and optical properties of SiC/ionic liquid nanofluid for direct absorption solar collector [J].
Chen, Wenjing ;
Zou, Changjun ;
Li, Xiaoke .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2017, 163 :157-163
[3]   Experimental study on thermophysical properties of alumina nanoparticle enhanced ionic liquids [J].
Chereches, Elena Ionela ;
Prado, Jose I. ;
Chereches, Marius ;
Minea, Alina Adriana ;
Lugo, Luis .
JOURNAL OF MOLECULAR LIQUIDS, 2019, 291
[4]   Thermophysical and thermodynamic properties of ionic liquids over an extended pressure range:: [bmim][NTf2] and [hmim][NTf2] [J].
de Azevedo, RG ;
Esperança, JMSS ;
Szydlowski, J ;
Visak, ZP ;
Pires, PF ;
Guedes, HJR ;
Rebelo, LPN .
JOURNAL OF CHEMICAL THERMODYNAMICS, 2005, 37 (09) :888-899
[5]   Transport and thermal properties of quaternary phosphonium ionic liquids and IoNanofluids [J].
Ferreira, A. G. M. ;
Simoes, P. N. ;
Ferreira, A. F. ;
Fonseca, M. A. ;
Oliveira, M. S. A. ;
Trino, A. S. M. .
JOURNAL OF CHEMICAL THERMODYNAMICS, 2013, 64 :80-92
[6]   Thermophysical Properties of Nanoparticle-Enhanced Ionic Liquids (NEILs) Heat-Transfer Fluids [J].
Fox, Elise B. ;
Visser, Ann E. ;
Bridges, Nicholas J. ;
Amoroso, Jake W. .
ENERGY & FUELS, 2013, 27 (06) :3385-3393
[7]   Thermal Conductivity of [C4mim][(CF3SO2)2N] and [C2mim][EtSO4] and Their IoNanofluids with Carbon Nanotubes: Experiment and Theory [J].
Franca, J. M. P. ;
Vieira, S. I. C. ;
Lourenco, M. J. V. ;
Murshed, S. M. S. ;
Nieto de Castro, C. A. .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2013, 58 (02) :467-476
[8]   Thermal Conductivity of Ionic Liquids: Measurement and Prediction [J].
Froeba, A. P. ;
Rausch, M. H. ;
Krzeminski, K. ;
Assenbaum, D. ;
Wasserscheid, P. ;
Leipertz, A. .
INTERNATIONAL JOURNAL OF THERMOPHYSICS, 2010, 31 (11-12) :2059-2077
[9]   Thermal conductivities of ionic liquids over the temperature range from 293 K to 353 K [J].
Ge, Rile ;
Hardacre, Christopher ;
Nancarrow, Paul ;
Rooney, David W. .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2007, 52 (05) :1819-1823
[10]   Preparation and photo-thermal conversion performance of modified graphene/ionic liquid nanofluids with excellent dispersion stability [J].
Liu, Jian ;
Xu, Chao ;
Chen, LeiLei ;
Fang, Xiaoming ;
Zhang, Zhengguo .
SOLAR ENERGY MATERIALS AND SOLAR CELLS, 2017, 170 :219-232