Development of biobased synthetic fluids: Application of molecular modeling to structure-physical property relationship

被引:22
作者
Adhvaryu, A
Sharma, BK
Hwang, HS
Erhan, SZ
Perez, JM
机构
[1] USDA, Food & Ind Oil Res, Peoria, IL 61604 USA
[2] Penn State Univ, Dept Chem Engn, University Pk, PA 16802 USA
[3] Induim Corp Amer, Utica, NY 13502 USA
关键词
D O I
10.1021/ie0509185
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Biobased synthetic fluids are preferred alternatives to petroleum-based products due to their nontoxic and ecofriendly nature. Recent developments in biobased synthetic lubricants are a result of their comparable performance properties with mineral oils for industrial and automotive applications. These synthetic fluids can be chemically custom designed for a specific application. To develop an optimized molecule that can translate performance properties comparable to or at par with existing petroleum-based products, via chemical synthesis pathway alone, will be an expensive and time-consuming exercise. Molecular modeling of desired compounds and subsequent computation of their minimum energy profile, steric environment, and electron charge density distribution, etc., prior to actual synthesis, can shed valuable information on their physicochemical performance properties. Based on such information, chemical synthesis can be focused only on the promising molecules. Calculations based on equilibrium geometries were optimized using AMI semiempirical molecular orbital models. It was observed that ring opening of the triacylglycerol epoxy group and subsequent derivatization of the epoxy carbons can improve the oxidation and low-temperature stability of these synthetic lubricant base oils.
引用
收藏
页码:928 / 933
页数:6
相关论文
共 22 条
[1]   Epoxidized soybean oil as a potential source of high-temperature lubricants [J].
Adhvaryu, A ;
Erhan, SZ .
INDUSTRIAL CROPS AND PRODUCTS, 2002, 15 (03) :247-254
[2]  
Adhvaryu A, 2003, THERMOCHIM ACTA, V395, P191
[3]   Thermo-oxidative stability studies on some new generation API group II and III base oils [J].
Adhvaryu, A ;
Erhan, SZ ;
Sahoo, SK ;
Singh, ID .
FUEL, 2002, 81 (06) :785-791
[4]   Application of quantitative NMR spectroscopy to oxidation kinetics of base oils using a pressurized differential scanning calorimetry technique [J].
Adhvaryu, A ;
Perez, JM ;
Singh, ID .
ENERGY & FUELS, 1999, 13 (02) :493-498
[5]  
CLARK T, 1986, HDB COMPUTATIONAL CH
[6]   The effect of branching on slip and rheological properties of lubricants in molecular dynamics simulation of Couette shear flow [J].
Jabbarzadeh, A ;
Atkinson, JD ;
Tanner, RI .
TRIBOLOGY INTERNATIONAL, 2002, 35 (01) :35-46
[7]   The development of computational chemistry approach to predict the viscosity of lubricants [J].
Konno, K ;
Kamei, D ;
Yokosuka, T ;
Takami, S ;
Kubo, M ;
Miyamoto, A .
TRIBOLOGY INTERNATIONAL, 2003, 36 (4-6) :455-458
[9]   THERMAL-OXIDATIVE DECOMPOSITION OF EDIBLE OILS AND FATS - DSC STUDIES [J].
KOWALSKI, B .
THERMOCHIMICA ACTA, 1991, 184 (01) :49-57