Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model

As one of the sustainable food sources, papaya seed oil (PSO) has extraordinary health benefits with unsaturated fatty acids being the main components. In general, the PSO extraction can be accomplished by predetermining the thermophysical properties of the PSO, appropriate use of solvent, and opera...

Full description

Bibliographic Details
Main Authors: Alhanif, Misbahudin, Kumoro, Andri Cahyo, Wardhani, Dyah Hesti
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2023
Online Access:http://journalarticle.ukm.my/21538/
http://journalarticle.ukm.my/21538/1/S%209.pdf
_version_ 1848815375946350592
author Alhanif, Misbahudin
Kumoro, Andri Cahyo
Wardhani, Dyah Hesti
author_facet Alhanif, Misbahudin
Kumoro, Andri Cahyo
Wardhani, Dyah Hesti
author_sort Alhanif, Misbahudin
building UKM Institutional Repository
collection Online Access
description As one of the sustainable food sources, papaya seed oil (PSO) has extraordinary health benefits with unsaturated fatty acids being the main components. In general, the PSO extraction can be accomplished by predetermining the thermophysical properties of the PSO, appropriate use of solvent, and operating conditions. However, the thermophysical properties data of the PSO in the literature are quite scarce, while their quantitative measurements are expensive and time-consuming. For this reason, the group contribution models (GCMs) that have been developed over the last few decades can be essential tools for the estimation of the thermophysical properties of PSO. Moreover, this study also proposes a new GCM to predict PSO thermophysical properties based on its fatty acids composition and validate the accuracy using the experimental data available in the literature. The results showed that the new model has excellent accuracy in estimating the thermophysical properties of PSO at 298.15 K and normal boiling point (Tb). The average absolute relative deviation (AARD) for enthalpy of vaporization values at both temperatures were 2.09% and 2.04%, respectively. Meanwhile, the AARD values for molar volume at both temperatures were 0.48% and 0.86%, respectively. Accordingly, the estimated values of the Hansen’s solubility parameters and partition coefficients were very close to the experimental data with a distance (D) of 0.21 and AARD of 0.030%. Therefore, this model can be employed to quickly predict the important PSO properties and other its unknown properties based on its molecular structure for its extraction purpose.
first_indexed 2025-11-15T00:48:59Z
format Article
id oai:generic.eprints.org:21538
institution Universiti Kebangasaan Malaysia
institution_category Local University
language English
last_indexed 2025-11-15T00:48:59Z
publishDate 2023
publisher Penerbit Universiti Kebangsaan Malaysia
recordtype eprints
repository_type Digital Repository
spelling oai:generic.eprints.org:215382023-05-09T01:50:36Z http://journalarticle.ukm.my/21538/ Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model Alhanif, Misbahudin Kumoro, Andri Cahyo Wardhani, Dyah Hesti As one of the sustainable food sources, papaya seed oil (PSO) has extraordinary health benefits with unsaturated fatty acids being the main components. In general, the PSO extraction can be accomplished by predetermining the thermophysical properties of the PSO, appropriate use of solvent, and operating conditions. However, the thermophysical properties data of the PSO in the literature are quite scarce, while their quantitative measurements are expensive and time-consuming. For this reason, the group contribution models (GCMs) that have been developed over the last few decades can be essential tools for the estimation of the thermophysical properties of PSO. Moreover, this study also proposes a new GCM to predict PSO thermophysical properties based on its fatty acids composition and validate the accuracy using the experimental data available in the literature. The results showed that the new model has excellent accuracy in estimating the thermophysical properties of PSO at 298.15 K and normal boiling point (Tb). The average absolute relative deviation (AARD) for enthalpy of vaporization values at both temperatures were 2.09% and 2.04%, respectively. Meanwhile, the AARD values for molar volume at both temperatures were 0.48% and 0.86%, respectively. Accordingly, the estimated values of the Hansen’s solubility parameters and partition coefficients were very close to the experimental data with a distance (D) of 0.21 and AARD of 0.030%. Therefore, this model can be employed to quickly predict the important PSO properties and other its unknown properties based on its molecular structure for its extraction purpose. Penerbit Universiti Kebangsaan Malaysia 2023 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/21538/1/S%209.pdf Alhanif, Misbahudin and Kumoro, Andri Cahyo and Wardhani, Dyah Hesti (2023) Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model. Sains Malaysiana, 52 (1). pp. 107-127. ISSN 0126-6039 http://www.ukm.my/jsm/index.html
spellingShingle Alhanif, Misbahudin
Kumoro, Andri Cahyo
Wardhani, Dyah Hesti
Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title_full Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title_fullStr Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title_full_unstemmed Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title_short Prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
title_sort prediction of the thermophysical properties of papaya seed oil influencing solvent selection based on the new group contribution model
url http://journalarticle.ukm.my/21538/
http://journalarticle.ukm.my/21538/
http://journalarticle.ukm.my/21538/1/S%209.pdf