Page 160 AG112
P. 160
· B I o C om BUSTIB le S Y Com BUSTIB le S Al T e RNA TIV o S ·
Bibliografía from Biomass; Angew. Chem. Int. Ed. 46., 2007. and Sustainable Energy Reviews. New Delhi,
- Huber, G.W., Iborra, S., Corma A., Synthesis of India, 10(3), 248 – 268, 2006.
Transportation Fuels from Biomass: Chemistry, - Mrad, N., Paraschiv, M., Aloiu, F., Varuvel E.,
- Akoh, C., Chang, SW., Lee, G.C., Shaw, JF. Jor- Catalysts, and Engineering; Chem. Rev., 106:9, Tazerout M., Naseallah S. D.,Liquid hydrocarbon
nal of Agricultural and food Chemistry, 55, 8995 2006. fuels from fish oil industrial residues by catalytic
– 9005, 2007 - Idem, R.O., Katikaneni, S.P.R., Bakhshi N.N., cracking; Int. J. Energy Res., 37, 1036, 2013.
- Alaba, P.A., Sani, Y.M., Daud, W.M.A.W., Effi- Catalytic conversion of canola oil to fuels and - Mussatto S.I., Brewer´s spent grain: a valuable
cient biodiesel production via solid superacid chemicals: roles of catalyst acidity, basicity and feedstock for industrial applications. J. Sci. Food
catalysis: a critical review on recent breakthrough, shape selectivity on product distribution; Fuel Agric, 94, 1264, 2013.
RSC Advances, 6(82), 78351-78368, 2016. Proc. Tech., 51, 1997. - Nielsen, J., Villadsen, J., Lidén G., Bioreac-
- Albis, A., Parra, J., Sánchez, F. Revista de Inge- - Iqbal, H., Kyazze, G., Keshavarz, T., Advances in tion engineering principles, Kluwer Academia,
niería e Investigación, 25(2), 71–77, 2005. the Valorization of Lignocellulosic Materials by Second Edition, 2003.
- Ameen, M., Azizan, M.T., Yusup, S., Ramli, Biotechnology: An Overview, Bioresources, 8(2), - Nieves-Soto, M., Hernández-Calderón, O., Gue-
A., Yasir, M., Catalytic hydrodeoxygenation of 3157, 2013. rrero-Fajardo, C., Sánchez-Castillo, M. A., Vive-
triglycerides: An approach to clean diesel fuel - Katikaneni, S.P.R., Adjaye, J.D., Bakhshi N.N., ros-García, T., and Contreras-Andrade, I., Bio-
production, Renewable & Sustainable Energy Performance of aluminophosphate molecular sie- diesel Current Technology: Ultrasonic Process a
Reviews, 80, 1072-1088, 2017. ve catalysts for the production of hydrocarbons Realistic Industrial Application, Book Chapter in
- Arun, N. Sharma, R.V., Dalai, A.K., Green diesel from wood-derived and vegetable oils; Energy & Biodiesel - Feedstocks, Production and Applica-
synthesis by hydrodeoxygenation of bio-based Fuels, 9, 1995. tions, Ed. Zhen Fang, INTECH., 2012.
feedstocks: Strategies for catalyst design and - Katikaneni, S.P.R., Adjaye, J.D., Bakhshi N.N., - Oh, Y.K., Hwang, K.R., Kim, C., Kim, J.R., Lee,
development, Renewable & Sustainable Energy Catalytic Conversion of Canola Oil to Fuels and J.S., Recent Developments and Key Barriers to
Reviews, 48, 240-255, 2015. Chemicals Over Various Cracking Catalysts; Advanced Biofuels: A Short Review, Bioresource
- Benson, T.J., Hernandez, R., White, MG., French, Canadian J. of Chem. Eng., 73, 1995. Technology, 257, 320-333, 2018.
WT., Alley, EE., Holmes, WE., Thompson B. - Katikaneni, S.P.R., Adjaye, J.D., Idem, R.O., - Ong, YK., Bhatia S.,The current status and perspec-
Heterogeneous cracking of unsaturated fatty acid Bakhshi N.N., Catalytic Conversion of Cano- tives of biofuel production via catalytic cracking
and reaction intermediates on HZSM-5 catalyst; la Oil over Potassium-Impregnated HZSM-5 of edible and non-edible oils; Energy, 35, 2010.
Clean 36(8), 2008. Catalysts: C2-C4 Olefin Production and Model - Ooi, YS., Zakaria, R., Mohamed, AR., Bhatia
- Benson, T.J., Hernandez, R., French, W.T., Alley, Reaction; Ind. Eng. Chem. Res., 35, 1996. S., Catalytic conversion of fatty acids mixture to
E.E., Holmes, W.E., Elucidation of the catalytic - Knothe, G. Journal of American Oil Chemists liquid fuels over mesoporous materials; React.
cracking pathway for unsaturated mono-, di-, and Society, 83 (10), 823 – 833. 2006. Kinet, Catal. Lett. 84(2), 2005.
triacylglycerides on solid acid catalysts; J. Molec. - Kordulis, C., Bourikas, K., Gousi, M., Kordou- - Othman, M.F., Adam, A., Najafi, G., Mamat,
Catalysis, 303 (1-2), 2009. li, E., Lycourghiotis, A., Development of nickel R., Green fuel as alternative fuel for diesel engi-
- Chen, D., Tracy, N.I., Crunkleton, D.W., Price based catalysts for the transformation of natural ne: A review, Renewable & Sustainable Energy
G.L., Comparison of canola oil conversion over triglycerides and related compounds into green Reviews, 80, 694-709, 2017.
MFI, BEA, and FAU; App. Cat. A, 384, 2010. diesel: a critical review, Applied Catalysis B, - Prasad, YS., Bakhshi NN., Mathews., JF., Eager,
- Díaz de León Cabrero, M. Sánchez-Castillo, Environmental, 181, 156-196, 2016. L., Catalytic Conversion of Canola Oil to Fuels
M.A., Bases para la Conversión de Trigliceridos - Kubicková, I., Kubicka D., Utilization of trigly- and Chemical Feedstocks Part II Effect of Co-
y Fosfolípidos en Combustibles Verdes usando cerides and related feedstocks for production of feeding Steam on the Performance of HZSM-5
catalizadores mesoporosos, Revista Mexicana de clean hydrocarbon fuels and petrochemicals: A Catalyst; Canadian J. Chem. Eng., 04, 1986.
Ingeniería Química, 15(1), 111-128, 2016. review; Waste Biomass Valor, 1, 2010. - Rao, TV., Clavero, MM., Makkee M., Effective
- Durisic-Mladenovic, N.L., Predojevic, Z.J., Skr- - Lee, I., Johnson, L.A., Hammond, E.G. Journal gasoline production strategies by catalytic crac-
bic, B.D., Conventional and advanced liquid bio- of American Oil Chemists Society, 72 (10),1155- king of rapeseed vegetable oil in refinery condi-
fuels, Hemijska Industrija, 70 (3), 225-241, 2016. 1160, 1995. tions; ChemSusChem, 3, 2010.
- Eller, Z., Varga, Z., Hancsok, J., Advanced pro- - Li, X., Luo, X.Y., Jin, Y.B., Li, J.Y., Zhang, H.D., - Red Mexicana De Bioenergía, A.C, La Bioener-
duction process of jet fuel components from tech- Zhang, A.P., Xie, J., Heterogeneous sulfur-free gía en México: Situación actual y perspectivas,
nical grade coconut oil with special hydrocrac- hydrodeoxygenation catalysts for selectively Cuaderno Temático, 4, 2011.
king, Fuel, 182, 713-720, 2016. upgrading the renewable bio-oils to second gene- - Schuchardt, U., Serchelf, R., Vargas, R.M. Jour-
- Fennema, O. Food Chemistry, 2nd Edition. Edito- ration biofuels, Renewable & Sustainable Energy nal of Brazilian Chemists Society,9 (1)., 199 –
rial Acribia, 230 – 238. 1993. Reviews, 82, 3762-3797, 2018. 210, 1998.
- Ge, J.C., Yoon, S.K., Choi, N.J., Using Canola - Liu, G.R., Yan, B.B., Chen, G.Y., Technical - Shaw, J-F., Chang, S.W., Wu, T.T., Ju, H.Y.,
Oil Biodiesel as an Alternative Fuel in Diesel review on jet fuel production, Renewable & Sus- Akoh, C.C., Chang, R.H. Energy and fuels.,
Engines: A Review, Applied Sciences-Basel, 7 tainable Energy Reviews, 25, 59-70, 2013. 22(1), 840 – 844, 2008.
(9), 881, 2017. - Luo, Y., Zheng, Y., Jiang, Z., Ma, Y.,Wei, D. - Service R. F., Science, 32 (5901), 522 – 523, 2008.
- Gumba, R.E., Saallah, S., Misson, M., Ongku- Applied microbial biotechnology, 73 (2), 349 – - Sousa, F.P., Silva, L.N., de Rezende, D.B., de Oli-
don, C.M., Anton, A., Green biodiesel produc- 355, 2006. veira, L.C.A., Pasa, V.M.D., Simultaneous deo-
tion: a review on feedstock, catalyst, monolithic - Mangesh, G., Dalai A.K. Industrial and Chemical xygenation, cracking and isomerization of palm
reactor, and supercritical fluid technology, Bio- Research, 45(9), 2901-2913, 2006. kernel oil and palm olein over beta zeolite to
fuel Research Journal, 3 (3), 431-447, 2016. - Mansir, N., Teo, S.H., Rashid, U., Saiman, M.I., produce biogasoline, green diesel and biojet-fuel,
- Gutierrez-Antonio, C., Gomez-Castro, F.I., de Lira- Tan, Y.P., Alsultan, G.A., Taufiq-Yap, Y.H., Fuel, 223, 149-156, 2018.
Flores, J.A., Hernandez, S., A review on the pro- Modified waste egg shell derived bifunctional - Sanchez-Castillo, Marco A.; Agarwal, Nitin;
duction processes of renewable jet fuel, Renewable catalyst for biodiesel production from high FFA Miller, Christian; Cortright, Randy D.; Madon,
& Sustainable Energy Reviews, 79, 709-729, 2017. waste cooking oil. A review, Renewable & Sus- Rostam J.; Dumesic, J. A., Reaction Kinetics
- Jamil, F., Al-Haj, L., Al-Muhtaseb, A.H., Al- tainable Energy Reviews, 82, 3645-3655, 2016. Study and Analysis of Reaction Schemes for Iso-
Hinai, M.A., Baawain, M., Rashid, U., Ahmad, - Mardhiah, H.H., Ong, H.C., Masjuki, H.H., Lim, butane Conversion over USY Zeolite, J. Catal.,
M.N.M., Current scenario of catalysts for biodie- S., Lee, H.V., A review on latest developments 205(1), 67, 2002.
sel production: a critical review, Reviews In Che- and future prospects of heterogeneous catalyst - Sanchez-Castillo, Marco A.; Agarwal, Nitin;
mical Engineering, 34(2), 267-297, 2018. in biodiesel production from non-edible oils, Bartsch, A; Cortright, Randy D.; Madon Rostam
- Graça, I., Lopes, J.M., Cerqueira, H.S., Ribeiro, Renewable & Sustainable Energy Reviews, 67, J.; Dumesic, J. A., Reaction Kinetics Studies and
M.F., Bio-oils upgrading for second generation 1225-1236, 2017. Análisis of Isobutane Conversión over H-Morde-
biofuels. Ind Eng Chem Res, 52,275–87, 2012. - Mazo, P., Galeano, L., Restrepo, G., Ríos, L. nite and b-zeolite, J. Catal., 218 (1), 88, 2003.
- Huber, GW., Corma A., Synergies between Bio- Scientia et Tecnica. No. 35, 461 – 465. 2007. - Sanchez-Castillo, M. A.; Madon, R. J.; Dumesic
and Oil Refineries for the Production of Fuels - Meher, L.C.; Vidya S.,D; Naik, S.N., Revewable J. A. Role of Rare Earth Cations in Y Zeolite for
482 A&G 112 • Tomo XXVIII • Vol. 3 • 472-483 • (2018)