TY - JOUR
T1 - Developing predictive model for the critical properties of fuels containing esters based on the experimental study of methyl butanoate + alcohols + n-alkanes mixtures
AU - Wang, Chengjie
AU - Lan, Tian
AU - Liu, Xiangyang
AU - Zhang, Ying
AU - He, Maogang
N1 - Publisher Copyright:
© 2020 Elsevier Ltd
PY - 2020/10/15
Y1 - 2020/10/15
N2 - Critical properties which are the basis for the calculation of other thermophysical properties, are required to evaluate the fuel performance during the process of fuel design. A predictive model, which does not require critical temperature (Tc) and critical pressure (pc) of each component, is further developed for Tc and pc for the fuel blends containing esters based on the new measured data for the mixtures of biodiesel surrogate methyl butanoate, alcohols and n-alkanes (methyl butanoate + n-alkanes (C = 6, 7, 8), methyl butanoate + n-alcohols (C = 3, 4), methyl butanoate + n-hexane + n-propanol). The accuracy of this modified model is proved by the comparison with Li model, Chueh–Prausnitz model and He–Liu model. All the critical curves of the mixtures experimentally studied in this work show good linearity except the mixture of methyl butanoate + n-alkanes due to different characteristics between two components. The performances of Redlich–Kister model, PR–WS model, Cibulka model and Singh–Sharma model in correlating the measured data are also verified.
AB - Critical properties which are the basis for the calculation of other thermophysical properties, are required to evaluate the fuel performance during the process of fuel design. A predictive model, which does not require critical temperature (Tc) and critical pressure (pc) of each component, is further developed for Tc and pc for the fuel blends containing esters based on the new measured data for the mixtures of biodiesel surrogate methyl butanoate, alcohols and n-alkanes (methyl butanoate + n-alkanes (C = 6, 7, 8), methyl butanoate + n-alcohols (C = 3, 4), methyl butanoate + n-hexane + n-propanol). The accuracy of this modified model is proved by the comparison with Li model, Chueh–Prausnitz model and He–Liu model. All the critical curves of the mixtures experimentally studied in this work show good linearity except the mixture of methyl butanoate + n-alkanes due to different characteristics between two components. The performances of Redlich–Kister model, PR–WS model, Cibulka model and Singh–Sharma model in correlating the measured data are also verified.
KW - Biodiesel surrogates
KW - Critical properties
KW - Fuel blends
KW - Fuel design
UR - http://www.scopus.com/inward/record.url?scp=85086737221&partnerID=8YFLogxK
U2 - 10.1016/j.fuel.2020.118306
DO - 10.1016/j.fuel.2020.118306
M3 - Article
AN - SCOPUS:85086737221
SN - 0016-2361
VL - 278
JO - Fuel
JF - Fuel
M1 - 118306
ER -