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Original Articles

TRANSESTERIFICATION OF PALM OIL AT NEAR-CRITICAL CONDITIONS USING SULFONATED CARBON-BASED ACID CATALYST

, , , , , , & show all
Pages 1542-1552 | Published online: 19 Jun 2013

References

  • Abreu , F. R. , Lima , D. G. , Hamú , E. H. , Einloft , S. , Rubim , J. C. , and Suarez , P. A. Z. ( 2003 ). New metal catalysts for soybean oil transesterification , J. Am. Oil Chem. Soc. , 80 , 601 – 604 .
  • Ayhan , D. ( 2007 ). Biodiesel from sunflower oil in supercritical methanol with calcium oxide , Energy Convers. Manage. , 48 , 937 – 941 .
  • Boonnoun , P. , Laosiripojana , N. , Muangnapoh , C. , Jongsomjit , B. , Panpranot , J. , Mekasuwandumrong , O. , and Shotipruk , A. ( 2010 ). Application of sulfonated carbon-based catalyst for reactive extraction of 1,3-propanediol from model fermentation mixture , Ind. Eng. Chem. Res. , 49 , 12352 – 12357 .
  • Boz , N. , and Kara , M. ( 2008 ). Solid base catalyzed transesterification of canola oil , Chem. Eng. Commun. , 196 , 89 – 92 .
  • Chen , G. , and Fang , B. ( 2011 ). Preparation of solid acid catalyst from glucose-starch mixture for biodiesel production , Bioresour. Technol. , 102 , 2635 – 2640 .
  • Daengprasert , W. , Boonnoun , P. , Laosiripojana , N. , Goto , M. , and Shotipruk , A. ( 2011 ). Application of sulfonated carbon-based catalyst for solvothermal conversion of cassava waste to hydroxymethylfurfural and furfural , Ind. Eng. Chem. Res. , 50 ( 13 ), 7903 – 7910 .
  • Dehkhoda , A. M. , West , A. H. , and Ellis , N. ( 2010 ). Biochar based solid acid catalyst for biodiesel production , Appl. Catal. A , 382 , 197 – 204 .
  • Hara , M. , Yoshda , T. , and Takagaki , A. ( 2004 ). A carbon material as a strong protonic acid , Angew. Chem. Int. Ed. , 43 , 2955 – 2958 .
  • Iso , M. , Chen , B. , Eguchi , M. , Kudo , T. , and Shrestha , S. ( 2001 ). Production of biodiesel fuel from triglycerides and alcohol using immobilized lipase , J. Mol. Catal. B: Enzym. , 16 , 53 – 58 .
  • Janaun , J. , and Ellis , N. ( 2011 ). Role of silica template in the preparation of sulfonated mesoporous carbon catalysts , Appl. Catal. A , 394 , 25 – 31 .
  • Jitputti , J. , Kitiyanan , B. , Rangsunvigit , P. , Bunyakiat , K. , Attanatho , L. , and Jenvanitpanjakul , P. ( 2006 ). Transesterification of crude palm kernel oil and crude coconut oil by different solid catalysts , Chem. Eng. J. , 116 , 61 – 66 .
  • Liu , X. , Piao , X. , Wang , Y. , Zhu , S. , and He , H. (2008). Calcium methoxide as a solid base catalyst for the transesterification of soybean oil to biodiesel with methanol, Fuel , 87, 1076–1082.
  • López , D. E. , Goodwin , J. G. , Jr. , Bruce , D. A. , and Lotero , E. ( 2005 ). Transesterification of triacetin with methanol on solid acid and base catalysts , Appl. Catal. A , 295 , 97 – 105 .
  • López , D. E. , Goodwin , J. G. , Jr. , Bruce , D. A. , and Furuta , S. ( 2008 ). Esterification and transesterification using modified-zirconia catalysts , Appl. Catal. A , 339 , 76 – 83 .
  • Meher , L. C. , Vidya , S. D. , Dharmagadda , S. S. , and Naik , S. N. ( 2006 ). Optimization of alkali-catalyzed transesterification of Pongamia pinnata oil for production of biodiesel , Bioresour. Technol. , 97 , 1392 – 1397 .
  • Mo , X. , López , D. E. , Suwannakarn , K. , Liu , Y. , Lotero , E. , Goodwin , J. G. , Jr. , and Lu , C. ( 2008a ). Activation and deactivation characteristics of sulfonated carbon catalysts , J. Catal. , 254 , 332 – 338 .
  • Mo , X. , Lotero , E. , Lu , C. , Liu , Y. , and Goodwin , J. G. ( 2008a ). A novel sulfonated carbon composite solid acid catalyst for biodiesel synthesis , Catal. Lett. , 123 , 1 – 6 .
  • Petchmala , A. , Laosiripojana , N. , Jongsomjit , B. , Goto , M. , Panpranot , J. , Mekasuwandumrong , O. , and Shotipruk , A. ( 2010 ). Transesterification of palm oil and esterification of palm fatty acid in near- and super-critical methanol with SO4–ZrO2 catalysts , Fuel , 89 , 2387 – 2392 .
  • Saka , S. , and Kusdiana , D. ( 2001 ). Biodiesel fuel from rapeseed oil as prepared in supercritical methanol , Fuel , 80 , 225 – 231 .
  • Shu , Q. , Zhang , Q. , Xu , G. , Nawaz , Z. , Wang , D. , and Wang , J. ( 2009 ). Synthesis of biodiesel from cottonseed oil and methanol using a carbon-based solid acid catalyst , Fuel Process. Technol. , 90 , 1002 – 1008 .
  • Shu , Q. , Nawaz , Z. , Gao , J. , Liao , Y. , Zhang , Q. , Wang , D. , and Wang , J. ( 2010 ). Synthesis of biodiesel from a model waste oil feedstock using a carbon-based solid acid catalyst: Reaction and separation , Bioresour. Technol. , 101 , 5374 – 5384 .
  • Singh , S. P. , and Singh , D. ( 2010 ). Biodiesel production through the use of different sources and characterization of oils and their esters as the substitute of diesel: A review , Renew. Sustain. Energy Rev. , 14 , 200 – 216 .
  • Suwannakarn , K. , Lotero , E. , Goodwin , J. G. , Jr. , and Lu , C. ( 2008 ). Stability of sulfated zirconia and the nature of the catalytically active species in the transesterification of triglycerides , J. Catal. , 255 , 279 – 286 .
  • Wang , L. , and Yang , J. ( 2007 ). Transesterification of soybean oil with nano-MgO or not in supercritical and subcritical methanol , Fuel , 86 , 328 – 333 .
  • Wang , Y. , Ou , S. , Liu , P. , and Zhang , Z. ( 2007 ). Preparation of biodiesel from waste cooking oil via two-step catalyzed process , Energy Convers. Manage. , 48 , 184 – 188 .
  • Yoo , S. J. , Lee , H. S. , Veriansyah , B. , Kim , J. , Kim , J. D. , and Lee , Y. W. ( 2010 ). Synthesis of biodiesel from rapeseed oil using supercritical methanol with metal oxide catalysts , Bioresour. Technol. , 101 , 8686 – 8689 .
  • Zabeti , M. , Ashri , W. M. , Daud , W. , and Aroua , M. K. ( 2009 ). Activity of solid catalysts for biodiesel production: A review , Fuel Process. Technol. , 90 , 770 – 777 .

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