Open Access

Simulation and sensitivity analysis for biodiesel production in a reactive distillation column


Cite

1. Fangrui, M. & Milford, A.H. (1999). Biodiesel production: a review. Bioresource Technology. 70 (1), 1-15. doi:10.1016/ S0960-8524(99)00025-5.Search in Google Scholar

2. Kiss, A.A., Dimian, A.C. & Rothenberg, G. (2008). Biodiesel by catalytic reactive distillation powered by metal oxides. Energy Fuels. 22 (1), 598-604.10.1021/ef700265ySearch in Google Scholar

3. Giessler, S., Danilov, R.Y., Pisarenko, R.Y., Serafi mov, L.A., Hasebe, S. & Hashimoto, I. (2001). Systematic structure generation for reactive distillation processes. Computers& Chemical Engineering. 25 (1), 49-60. doi:10.1016/S0098- 1354(00)00632-3.Search in Google Scholar

4. He, B.B., Singh, A.P. & Thompson, J.C. (2006). A novel continuous-fl ow reactor using reactive distillation for biodiesel production. Transactions of the ASABE. 49 (1), 107-112.Search in Google Scholar

5. Pai, R.A., Doherty, M.F. & Malone, M.F. (2002). Design of reactive extraction systems for bioproduct recovery. AIChEJournal. 48 (3), 514-526. DOI: 10.1002/aic.690480310.10.1002/aic.690480310Search in Google Scholar

6. Chin, S.Y., Mohamed, A.R., Ahmad, A.L. & Bhatia, S. (2006). Esterifi cation of palmitic acid with iso-propanol in a catalytic distillation column: Modeling and simulation studies. International Journal of Chemical Reactor Engineering. 4 (4), 32.10.2202/1542-6580.1235Search in Google Scholar

7. Kiss, A.A., Omota, F., Dimian, A.C. & Rothenberg, G. (2006). The heterogeneous advantage: biodiesel by catalytic reactive distillation. Topics in Catalysis. 40 (1), 141-150. DOI: 10.1007/s11244-006-0116-4.10.1007/s11244-006-0116-4Search in Google Scholar

8. Omota, F., Dimian, A.C. & Bliek, A. (2003). Fatty acid esterifi cation by reactive distillation. Chemical EngineeringScience. 58, 3159-3174. doi:10.1016/S0009-2509(03)00165-9.10.1016/S0009-2509(03)00165-9Search in Google Scholar

9. He, B.B., Singh, A.P. & Thompson, J.C. (2005). Experimental optimization of a continuous-fl ow reactive distillation reactor for biodiesel production. Transactions of the ASAE. 48 (6), 2237-2243.Search in Google Scholar

10. Bhatia, S., Ahmad, A.L., Mohamed, A.R. & Chin, S.Y. (2006). Production of isopropyl palmitate in a catalytic distillation column: Experimental studies. Chemical EngineeringScience. 61 (22), 7436-7447. doi:10.1016/j.ces.2006.08.039.10.1016/j.ces.2006.08.039Search in Google Scholar

11. Singh, A.P., Thompson, J.C. & He, B.B. In A continuous--fl ow reactive distillation reactor for biodiesel preparation fromseed oils, ASAE/CSAE Annual International Meeting, Ottawa, Ontario, Canada, 1-4 August, 2004; Ottawa, Ontario, Canada, 2004. Paper number 046071.Search in Google Scholar

12. Taylor, R. & Krishna, R. (2000). Modelling reactive distillation. Chemical Engineering Science. 55 (22), 5183-5229. doi:10.1016/S0009-2509(00)00120-2.10.1016/S0009-2509(00)00120-2Search in Google Scholar

13. Mattalana, L.G., Gutierrez, L.F. & Cardona C.A. In Biodiesel Production by reactive distillation, R Distillation - enpromer2005.eq.ufrj.br., 2005; 2005; pp 1-9.Search in Google Scholar

14. Thotla, S. & Mahajani, S. (2009). Reactive distillation with side draw. Chemical Engineering and Processing: ProcessIntensifi cation. 48 (4), 927-937. DOI: 10.1016/j.cep.2008.12.007.10.1016/j.cep.2008.12.007Search in Google Scholar

15. Steinigeweg, S. & Gmehling, J. (2003). Esterifi cation of a fatty acid by reactive distillation. Ind. Eng. Chem. Res. 42 (15), 3612-3619.10.1021/ie020925iSearch in Google Scholar

16. He, B. (2006.). A novel continuous-fl ow reactor using reactive distillation for biodiesel production. A report, National Institute of Advanced Transport Technology, University of Idaho.Search in Google Scholar

17. Santandera, C.M.G., Sandra Marcela Gómez Rueda, Nívea De, Lima da Silvaa, Aline Carvalho da Costa, Rubens Maciel Filhoa, Regina, M. & Maciela., W. (2010). Simulation of the reactive distillation process for biodiesel production. 20th European Symposium on Computer Aided Process Engineering- ESCAPE20.Search in Google Scholar

18. Bambase, M.E., Nakamura, N., Tanaka, J. & Matsumura, M. (2007). Kinetics of hydroxide-catalyzed methanolysis of crude sunfl ower oil for the production of fuel-grade methyl esters. Journal of Chemical Technology & Biotechnology. 82 (3), 273-280. DOI: 10.1002/jctb.1666.10.1002/jctb.1666Search in Google Scholar

19. Gupta, S.K., Numerical methods for engineers. New Age International: New Delhi, 2006; p 422.Search in Google Scholar

20. Noureddini, H. & Zhu, D. (1997). Kinetics of transesterifi cation of soybean oil. Journal of the American Oil Chemists’Society. 74 (11), 1457-1463. DOI: 10.1007/s11746-997-0254-2.10.1007/s11746-997-0254-2Search in Google Scholar

21. Freedman, B., Butterfi eld, R.O. & Pyrde, E. (1986). Transesterifi cationkinetics of soybean oil. J. Am. Oil Chem.Soc. 63, 1375-1380. DOI: 10.1007/BF02679606.10.1007/BF02679606Search in Google Scholar

22. Darnoko, D. & Cheryan, M. (2000). Kinetics of palm oil transesterifi cation in a batch reactor. Journal of the AmericanOil Chemists’ Society. 77 (12), 1263-1267. DOI: 10.1007/ s11746-000-0198-y.Search in Google Scholar

23. Simasatitkul, L., Siricharnsakunchai, P., Patcharavorachot, Y., Assabumrungrat, S. & Arpornwichanop, A. (2011). Reactive distillation for biodiesel production from soybean oil. Korean Journal of Chemical Engineering. 28 (3), 649-655. DOI: 10.1007/s11814-010-0440-z. 10.1007/s11814-010-0440-zSearch in Google Scholar

eISSN:
1899-4741
ISSN:
1509-8117
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Industrial Chemistry, Biotechnology, Chemical Engineering, Process Engineering