TY - JOUR ID - 161758 TI - Volumetric Properties of Nanofluids by a Perturbed Hard-sphere Chain Equation of State JO - Physical Chemistry Research JA - PCR LA - en SN - 2322-5521 AU - Sharafi, Zahra AU - Mozaffari, Farkhondeh AD - Department of Chemistry, Faculty of Nano and Bio Science and Technology, Persian Gulf University, Bushehr, 75168, Iran AD - Department of Chemistry, Marvdasht Branch, Islamic Azad University, Marvdasht, Iran Y1 - 2023 PY - 2023 VL - 11 IS - 4 SP - 735 EP - 745 KW - Equation of state KW - Modeling KW - Nanofluids KW - Density DO - 10.22036/pcr.2022.356470.2168 N2 - A perturbed hard-sphere chain equation of state (PHSC) is employed to predict the volumetric properties of some nanofluids containing Co3O4 in ethylene glycol (EG), SnO2 in EG, TiO2-anatase (-A) in EG, TiO2-rutile (-R) in EG, Al2O3 in EG/H2O, Sb2O5-SnO2 in EG/H2O, ZnO in polyethylene glycol (PEG)/H2O and CuO in H2O. Two temperature-dependent parameters in the proposed EoS were expressed in terms of molecular scaling constants  effective hard-sphere diameter, and ε; non-bonded interaction energy. The mentioned scaling constants were correlated with melting temperatures and densities which show the rationality of them. It is also indicated in this study without knowledge of potential energy function can able to illustrate the volumetric properties of nanofluids. Comparisons between the calculated liquid densities and the experimental values over the temperature range from 273.15 to 363.15 K and the pressure range from 0.1 to 45 MPa show that the average absolute deviation is 1.49%. UR - https://www.physchemres.org/article_161758.html L1 - https://www.physchemres.org/article_161758_2d5a594f60cc2b52a1f276fb14c78555.pdf ER -