SINTESIS BIOADITIF GASOLINE MELALUI KETALISASI GLISEROL MENGGUNAKAN KATALISATOR PADAT

Nuryoto Nuryoto, Hary Sulistyo, Wahyudi Budi Sediawan, Indra Perdana

Abstract

Utilization of glycerol side product from biodiesel as waste management application is required for reduced   negative effect which possible emerged. Glycerol  have three bond of hydroxyde, so its  opportunity  to utilize  to be solketal as bio-additive of gasoline. Indion 225 Na ion exchanger resin is strong acid cation category and low  prices, so  its potency to use alternatively of solid catalyst to get efficient and economic process. The purpose of this research was focussed to search  of the best condition by optimalization indion 225 Na performance as catalyst in glycerol ketalization reaction, by integrated of variables that have effected to reaction for maximize glycerol coversion. To get maximize of reactants molecular interaction and for  optimalization indion 255 Na performance, observation  conducted  in the  range variables which widely enough that were  reactant ratio of 5:1-6:1 mole of acetone mole/mole of glycerol, diameter size  catalyst of  20-40 mesh, catalyst concentration of 3-5% mass of acetone, and reaction temperature of 35-65oC. Result of the research showed that  indion 225 Na catalyst have good performance, by glycerol conversion to reach of 51.89%. Glycerol conversion mentioned was obtained at reactant ratio of 6:1 mole of acetone/mole of gycerol, diameter size catalyst of  40 mesh, catalyst concentration of 4%  mass of acetone, and  reaction temperature of  65oC.

Keywords

aseton, gliserol, indion 225 Na, ketalisasi

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References

Bashir, M.J.K., Azir, H.A., and Yusofi, M.S. 2012. Recycling of the Exhausted Cation Exchange Resin for Stabilized Landfill Leachate Treatment. Proceeding The 4th International Engineering Conference –Towards engineering of 21st Century.

Fernanda, D.L., Manezes, D.O., Guimaraes, and Da Silva, M.J. 2013. Highly Selective SnCl2-Catalyzed Solketal Syinthesis at Room Temperature. Journal of Industrial & Engineering Chemistry Research, 54, 16709-16713.

Fogler, S.H. 2006. Elements of Chemical Reaction Engineering. 4th Edition International Series in the Physical and Chemical Engineering Sciences, Prentice Hall, New Jersey, USA.

Gangadwala, J., Mankar, S., and Mahajani, S. 2003. Esterification of Acetic Acid with Butanol in the Presence of Ion Exchange Resins as Catalysts. Journal of Industrial & Engineering Chemistry Research, 42, 2146-2155.

Gelosa, D., Ramaioli, M., Valente, G., and Morbidelli, M. 2003. Chromatographic Reactors: Esterification of Glycerol with Acetic Acid Using Acidic Polymeric Resins. Journal of Industrial & Engineering Chemistry Research, 42, 6536-6544.

Khayoon, M.S., and Hameed, B.H. 2013. Solventless Acetalization of Glycerol with Acetone to Fuel Oxygenates over Ni–Zr Supported on Mesoporous Activated Carbon Catalyst. Journal of Catalysis: Applied Catalysis A, 464–465, 191– 199.

Krishna, R., Low, C.Y., Newsham, D.M.T., Olivera-Fuentes, C.G., and Paybarah, A. 1989. Liquid-Liquid Equilibrium in the System Glycerol-Water-Acetone at 25℃. Journal of Fluid Phase Equilibria, 45, 115-120.

Kirbaslar, S.I, Baykal Z.B., and Dramur, U. 2001. Esterification of Acetic Acid with Ethanol Catalysed by an Acidic Ion-Exchanger Resin. Journal of Engineering & Environmental Sciences, 25, 569-577.

Manjunathan, P., Sanjeev, P., Maradur, A.B, Halgeri, and Shanbhag, G.V. 2014. Room Temperature Synthesis of Solketal from Acetalization of Glycerol with Acetone: Effect of Crystallite Size and the Role of Acidity of Betazeolite. Journal of Molecular Catalysis A: Chemical, 396, 47–54 .

Mallesham, B., Sudarsanam, P., and Reddy, B.M. 2014. Eco-Friendly Synthesis of Bio-additive Fuels from Renewable Glycerol Using Nanocrystalline SnO2-Based Solid Acid. Journal of Catalysis Science & Technology,54, 803–813.

Menezes, F.D.I., Guimaraes, M.D.O., and Da Silva, M.J. 2013. Highly Selective SnCl2 – Catalyzed Solketal Synthesis at Room Temperature. Journal of Industrial & Engineering Chemistry Research, 52, 16709-16713.

Mota, C.J.A., Carolina, X.A., Da Silva, C.X.A., Nilton Rosenbach Jr., N., Costa, J., and Da Silva, F. 2010. Glycerin Derivatives as Fuel Additives: The Addition of Glycerol/ Acetone Ketal (Solketal) in Gasolines. Journal of Energy & Fuel, 24, 2733-2736.

Nanda, M.R., Yuan, Z., Qin, W., Ghaziaskar, H.S., Poirier, M.A., and Xu, C.C. 2014. Thermodynamic and Kinetic Studies of a Catalytic Process to Convert Glycerol into Solketal as an Oxygenated Fuel Additive. Journal of Fuel, 117, 470-477.

Ni Fan, C., Hua Xu, C., Qi Liu, C., Yu Huang, Z., Ying Liu, J., and Xiang Ye, Z. 2012. Catalytic Acetalization of Biomass Glycerol with Acetone over TiO2–SiO2 Mixed Oxides. Journal of Reaction Kinetics, Mechanisms & Catalysis,107, 189–202.

Nuryoto, Sulistyo, H., Rahayu, S.S., dan Sutijan. 2010. Kinetika Reaksi Esterifikasi Gliserol dengan Asam Asetat Menggunakan Katalisator Indion 225 Na. Jurnal Rekayasa Proses, 5 (2), 35-39.

Nuryoto. 2010. Kinetika Reaksi Esterifikasi antara Gliserol dan Asam Asetat Dengan Katalisator Indion 225 Na. Tesis. Teknik Kimia. Fakultas Teknik. Universitas Gadjah Mada.

Nuryoto, Jayanudin, Fahlawan, H., Sulistyo, H., dan Sediawan, W.B. 2012. Optimalisasi Kinerja Katalisator Padat Indion 225 Na Pada Proses Pembuatan Gliserol Karbonat. Prosiding Seminar Nasional Rekayasa Sains dan Teknologi, FT. Universitas Bung Hatta. Padang.

Nuryoto, Sulistyo, H., Sediawan, W. B, dan Perdana, I. 2015. Optimalisasi Kinerja Zeolit Alam Bayah Sebagai Katalisator Pada Reaksi Ketalisasi Gliserol Menjadi Solketal. Prosiding Seminar Nasional Teknik Kimia Indonesia V. Yogyakarta.

Nuryoto, Sulistyo, H., Sediawan, W.B, dan Perdana, I. 2016. Modifikasi Zeolit Alam Mordenit Sebagai Katalisator Ketalisasi dan Esterifikasi. Jurnal Reaktor,16 (2), 72-80.

Ozorio, P.L., Pianzolli, R., Mota, M.B.S., and Mota, J.A. 2012. Reactivity of Glycerol/Acetone Ketal (Solketal) and Glycerol/Formaldehyde Acetals toward Acid-Catalyzed Hydrolysis. J. Brazilian Chemical Society, 23 (5), 931-937.

Rhode, M. 2008. Introduction to Particle Technology. 2nd Edition, John Wiley & Sons Lt, Chichester, England.

Royon, D., Locatelli, S., and Gonzo, E.E. 2011. Ketalization of Glycerol to Solketal in Supercritical Acetone. Journal of Supercritical Fluids,58, 88– 92.

Reddy, P.S., Sudarsanam, P., Mallesham. B., Raju. G., and Reddy, B.M. 2011. Acetalisation of Glycerol with Acetone over Zirconia and Promoted Zirconia Catalysts under Mild Reaction Conditions. Journal of Industrial and Engineering Chemistry,17, 377–381.

Vicente, G., Melero, J.A., Morales, G., Paniagua, M., and Mart´ın, E. 2010. Acetalisation of Bio-Glycerol with Acetone to Produce Solketal over Sulfonic Mesostructured Silicas. Journal of Green Chemistry ,12, 899-907.

Worapun, I., Pianthong, K., and Thaiyasuit, P. 2012. Optimization of Biodiesel Production from Crude Palm Oil Using Ultrasonic Irradiation Assistance and Response Surface Methodology. Journal of Chemical Technol & Biotechnology, 87, 189–197.

Yee, K.F, Jeffrey, C.S., Wub, J.C.S., and Lee, K.T. 2011. A Green Catalyst for Biodiesel Production from Jatropha Oil: Optimization Study. Journal of biomass and bioenergy, 35, 1739-1746.

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