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Year 2018, Volume: 2 Issue: 1, 34 - 43, 12.05.2018
https://doi.org/10.32571/ijct.347670

Abstract

References

  • 1. Gandini, A. Green Chem. 2011, 13 (5), 1061-1083.
  • 2. European Coutings Handbook, Brock., T.; Groteklaes, M.; Mischke, P. 2000, 16-85.
  • 3. Erhan, S.Z. .Indnstrial uses of vegetable oil. AOCS publishing, 2005.
  • 4. Tuck, N. Wiley, CV. \sit A ser. Technol. 2000.
  • 5. Gaykar, D.V. Paint India 7. 2001, 55-60.
  • 6. Pramanik, S.; Sagar, K.; Konwar, B.K.; Karak, N. Prog. Org. Coat .2012, 75 (4), 569-578.
  • 7. Turner, G.P.A. Introduction to paint chemistry and principles of paint technology, 3rd ed.; Champman and Hall, London, 1988.
  • 8. Kyenge, B.A.; Anhwange, B.A.; Ageh, J.T.; Igbum, G.O. Int .J. Mod. Org Chem. 2012, 1 (2), 66-71.
  • 9. Solomon, D.H.; Swift, J.D. J. Oil Colour Chem. Assoc. 1966, 49, 915-927.
  • 10. Aydin, S.; Akcay, H.; Evren, O.; Seniha Guner, F.; Tuncer Erciyes, A. Prog. Org. Coats. 2004, 51(4), 273-279.
  • 11. Wholf, R.H. Coconut oil modified alkyd reirns and copolymers There of witl an alkyl acrylate. U.S. Patent 3, 374, 194, Mar. 19, 1968.
  • 12. Wicks, Z.; Jones, F.; Pappas, S.P. Organic Coating Science and Technology. John Wiley & Sons, New York, 1999.
  • 13. Taft Jr, R.W.; Newman, M.S.; Verhoek, F.H. .J. Am. Chem. Soc. 1950, 72, 4511-4519.
  • 15. Lazzari, M.; Chiantore, O. Polym. Degrad. Stabil. 1999, 65 (2), 303-313.
  • 16. Köckritz, A.; Martin, A. Eur. J. Lipid Sci. Tecnol. 2008, 110, 812-824.
  • 17. Warwel, S. Rusch gen Klass, M. Lipid Technol. 1997, 9, 10-14.
  • 18. Dobson, G.; Christie, W.W.; Sebedio, J.L. J. Chromatogr. 1996, 723, 349-354.
  • 19. Asemani, H.R.; Ahmadi, P.; Sarabi, A.A.; Eivaz Mohammadloo, H. Prog. Org. Coat. 2016, 94, 18-27.
  • 20. Singha Mahapatra, S.; Karak, N. Prog. Org. Coat. 2004, 51, 103-108.
  • 21. Deligny, P.K.T.; Tuck, N. Alkyds and polyesters. In Resins for Surface Coatings; Oldring, P.K.T., Ed.; John Wiley & Sons, New York, 2000. Vol 2, p. 15. 22. Sharma, B.; Dolui, S.K.; Sharma, A.K.. J. Sci. Ind. Res.. 2001, 60, 153-158.
  • 23. Privett, O.S. J. Am. Oil Chem. Soc. 1959, 36 (10), 507-512.
  • 24. Porter, N.A.; Wujek, D.G. J. Am. Chem. Soc. 1984, 106 (9), 2626-2629.
  • 25. R usina, A.; Vlcek, A.A. Nature 1965, 206, 295-296.
  • 26. Stenberg, C.; Svensson, M.; Johansson, M. Ind. Crop. Prod. .2005, 21 (2), 263-272.
  • 27. Russell, G.A. J. .Am. Chem. Soc. 1957, 79 (14), 3871-3877.

Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst

Year 2018, Volume: 2 Issue: 1, 34 - 43, 12.05.2018
https://doi.org/10.32571/ijct.347670

Abstract

    A one
pot synthesis of alkyd resins based on the soybean oil and glycerin with  the zirconium octoate (zirconium 2-ethyl
hexanoate) as a new renewable raw material was performed. The alcoholysis
reaction of soybean oil and glycerin carried out in absence of nitrogen gas
inlet in the presence of zirconium octoate. The alkyd resin was obtained from polycondensation
of the alcoholysis products with phthalic anhydrid at 250 °C. The structure
confirmed by FT-IR and H1-NMR spectroscopy. Flexibility, drying
time, hardness, adhesion test, impact resistance, gloss test and chemical
resistance of synthesized alkyd resins was invesitigated. The prepared resin
was formulated in white lacqure and yellowing resistance
tested with commercial resins.

References

  • 1. Gandini, A. Green Chem. 2011, 13 (5), 1061-1083.
  • 2. European Coutings Handbook, Brock., T.; Groteklaes, M.; Mischke, P. 2000, 16-85.
  • 3. Erhan, S.Z. .Indnstrial uses of vegetable oil. AOCS publishing, 2005.
  • 4. Tuck, N. Wiley, CV. \sit A ser. Technol. 2000.
  • 5. Gaykar, D.V. Paint India 7. 2001, 55-60.
  • 6. Pramanik, S.; Sagar, K.; Konwar, B.K.; Karak, N. Prog. Org. Coat .2012, 75 (4), 569-578.
  • 7. Turner, G.P.A. Introduction to paint chemistry and principles of paint technology, 3rd ed.; Champman and Hall, London, 1988.
  • 8. Kyenge, B.A.; Anhwange, B.A.; Ageh, J.T.; Igbum, G.O. Int .J. Mod. Org Chem. 2012, 1 (2), 66-71.
  • 9. Solomon, D.H.; Swift, J.D. J. Oil Colour Chem. Assoc. 1966, 49, 915-927.
  • 10. Aydin, S.; Akcay, H.; Evren, O.; Seniha Guner, F.; Tuncer Erciyes, A. Prog. Org. Coats. 2004, 51(4), 273-279.
  • 11. Wholf, R.H. Coconut oil modified alkyd reirns and copolymers There of witl an alkyl acrylate. U.S. Patent 3, 374, 194, Mar. 19, 1968.
  • 12. Wicks, Z.; Jones, F.; Pappas, S.P. Organic Coating Science and Technology. John Wiley & Sons, New York, 1999.
  • 13. Taft Jr, R.W.; Newman, M.S.; Verhoek, F.H. .J. Am. Chem. Soc. 1950, 72, 4511-4519.
  • 15. Lazzari, M.; Chiantore, O. Polym. Degrad. Stabil. 1999, 65 (2), 303-313.
  • 16. Köckritz, A.; Martin, A. Eur. J. Lipid Sci. Tecnol. 2008, 110, 812-824.
  • 17. Warwel, S. Rusch gen Klass, M. Lipid Technol. 1997, 9, 10-14.
  • 18. Dobson, G.; Christie, W.W.; Sebedio, J.L. J. Chromatogr. 1996, 723, 349-354.
  • 19. Asemani, H.R.; Ahmadi, P.; Sarabi, A.A.; Eivaz Mohammadloo, H. Prog. Org. Coat. 2016, 94, 18-27.
  • 20. Singha Mahapatra, S.; Karak, N. Prog. Org. Coat. 2004, 51, 103-108.
  • 21. Deligny, P.K.T.; Tuck, N. Alkyds and polyesters. In Resins for Surface Coatings; Oldring, P.K.T., Ed.; John Wiley & Sons, New York, 2000. Vol 2, p. 15. 22. Sharma, B.; Dolui, S.K.; Sharma, A.K.. J. Sci. Ind. Res.. 2001, 60, 153-158.
  • 23. Privett, O.S. J. Am. Oil Chem. Soc. 1959, 36 (10), 507-512.
  • 24. Porter, N.A.; Wujek, D.G. J. Am. Chem. Soc. 1984, 106 (9), 2626-2629.
  • 25. R usina, A.; Vlcek, A.A. Nature 1965, 206, 295-296.
  • 26. Stenberg, C.; Svensson, M.; Johansson, M. Ind. Crop. Prod. .2005, 21 (2), 263-272.
  • 27. Russell, G.A. J. .Am. Chem. Soc. 1957, 79 (14), 3871-3877.
There are 25 citations in total.

Details

Primary Language English
Subjects Chemical Engineering
Journal Section Research Articles
Authors

Mohamed E. Elba This is me

Elsayed M. Abdel Rehim This is me

Ramadan E. Ashery

Publication Date May 12, 2018
Published in Issue Year 2018 Volume: 2 Issue: 1

Cite

APA Elba, M. E., Abdel Rehim, E. M., & Ashery, R. E. (2018). Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst. International Journal of Chemistry and Technology, 2(1), 34-43. https://doi.org/10.32571/ijct.347670
AMA Elba ME, Abdel Rehim EM, Ashery RE. Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst. Int. J. Chem. Technol. June 2018;2(1):34-43. doi:10.32571/ijct.347670
Chicago Elba, Mohamed E., Elsayed M. Abdel Rehim, and Ramadan E. Ashery. “Synthesis and Characterization of Alkyd Resin Based on Soybean Oil and Glycerin Using Zirconium Octoate As Catalyst”. International Journal of Chemistry and Technology 2, no. 1 (June 2018): 34-43. https://doi.org/10.32571/ijct.347670.
EndNote Elba ME, Abdel Rehim EM, Ashery RE (June 1, 2018) Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst. International Journal of Chemistry and Technology 2 1 34–43.
IEEE M. E. Elba, E. M. Abdel Rehim, and R. E. Ashery, “Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst”, Int. J. Chem. Technol., vol. 2, no. 1, pp. 34–43, 2018, doi: 10.32571/ijct.347670.
ISNAD Elba, Mohamed E. et al. “Synthesis and Characterization of Alkyd Resin Based on Soybean Oil and Glycerin Using Zirconium Octoate As Catalyst”. International Journal of Chemistry and Technology 2/1 (June 2018), 34-43. https://doi.org/10.32571/ijct.347670.
JAMA Elba ME, Abdel Rehim EM, Ashery RE. Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst. Int. J. Chem. Technol. 2018;2:34–43.
MLA Elba, Mohamed E. et al. “Synthesis and Characterization of Alkyd Resin Based on Soybean Oil and Glycerin Using Zirconium Octoate As Catalyst”. International Journal of Chemistry and Technology, vol. 2, no. 1, 2018, pp. 34-43, doi:10.32571/ijct.347670.
Vancouver Elba ME, Abdel Rehim EM, Ashery RE. Synthesis and characterization of alkyd resin based on soybean oil and glycerin using zirconium octoate as catalyst. Int. J. Chem. Technol. 2018;2(1):34-43.

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