208
47. Shin HY, Lim SM, Bae SY, Oh SC (2011) Thermal decomposition and stability of fatty acid
methyl esters in supercritical methanol. J Anal Appl Pyrolysis 92:332–338
48. Quesada-Medina J, Olivares-Carrillo P (2011) Evidence of thermal decomposition of fatty
acid methyl esters during the synthesis of biodiesel with supercritical methanol. J Supercrit
Fluids 56:56–63
49. Minami E, Saka S (2006) Kinetics of hydrolysis and methyl esterification for biodiesel production in two-step supercritical methanol process. Fuel 85:2479–2483
50. Melo-Júnior CAR, Albuquerque CER, Fortuny M, Dariva C, Egues S, Santos AF, Ramos
ALD (2009) Use of microwave irradiation in the noncatalytic esterification of C18 fatty acids.
Energy Fuel 23:580–585
51. Rani KNP, Neeharika TSVR, Kumar TP, Satyavathi B, Chintha S (2016) Kinetics of noncatalytic esterification of free fatty acids present in Jatropha oil. J Oleo Sci 65:441–445
52. Cho HJ, Kim SH, Hong SW, Yeo YK (2012) A single step non-catalytic esterification of palm
fatty acid distillate (PFAD) for biodiesel production. Fuel 93:373–380
53. Haas MJ, McAloon AJ, Yee WC, Foglia TA (2006) A process model to estimate biodiesel
production costs. Bioresour Technol 97:671–678
54. West AH, Posarac D, Ellis N (2008) Assessment of four biodiesel production processes using
HYSYS. plant. Bioresour Technol 99:6587–6601
55. Lee S, Posarac D, Ellis N (2011) Process simulation and economic analysis of biodiesel production processes using fresh and waste vegetable oil and supercritical methanol. Chem Eng
Res Design 89:2626–2642
56. Lou WY, Guo Q, Chen WJ, Zong MH, Wu H, Smith TJ (2012) A highly active bagassederived solid acid catalyst with properties suitable for production of biodiesel. ChemSusChem
5:1533–1541
Z. Hussain et al.
47. Shin HY, Lim SM, Bae SY, Oh SC (2011) Thermal decomposition and stability of fatty acid
methyl esters in supercritical methanol. J Anal Appl Pyrolysis 92:332–338
48. Quesada-Medina J, Olivares-Carrillo P (2011) Evidence of thermal decomposition of fatty
acid methyl esters during the synthesis of biodiesel with supercritical methanol. J Supercrit
Fluids 56:56–63
49. Minami E, Saka S (2006) Kinetics of hydrolysis and methyl esterification for biodiesel production in two-step supercritical methanol process. Fuel 85:2479–2483
50. Melo-Júnior CAR, Albuquerque CER, Fortuny M, Dariva C, Egues S, Santos AF, Ramos
ALD (2009) Use of microwave irradiation in the noncatalytic esterification of C18 fatty acids.
Energy Fuel 23:580–585
51. Rani KNP, Neeharika TSVR, Kumar TP, Satyavathi B, Chintha S (2016) Kinetics of noncatalytic esterification of free fatty acids present in Jatropha oil. J Oleo Sci 65:441–445
52. Cho HJ, Kim SH, Hong SW, Yeo YK (2012) A single step non-catalytic esterification of palm
fatty acid distillate (PFAD) for biodiesel production. Fuel 93:373–380
53. Haas MJ, McAloon AJ, Yee WC, Foglia TA (2006) A process model to estimate biodiesel
production costs. Bioresour Technol 97:671–678
54. West AH, Posarac D, Ellis N (2008) Assessment of four biodiesel production processes using
HYSYS. plant. Bioresour Technol 99:6587–6601
55. Lee S, Posarac D, Ellis N (2011) Process simulation and economic analysis of biodiesel production processes using fresh and waste vegetable oil and supercritical methanol. Chem Eng
Res Design 89:2626–2642
56. Lou WY, Guo Q, Chen WJ, Zong MH, Wu H, Smith TJ (2012) A highly active bagassederived solid acid catalyst with properties suitable for production of biodiesel. ChemSusChem
5:1533–1541
Z. Hussain et al.
