Research article
Vol 3 No 1 (2009): Volume 3, Number 1, 2009
Kinetika reaksi heterogen etanolisis minyak jarak kepyar (Ricinus communis) dengan katalisator zeolit klinoptilolit
Politeknik LPP Yogyakarta
Jurusan Teknik Kimia, Fakultas Teknik, Universitas Gadjah Mada, Yogyakarta
Abstract
Castor oil of Ricinus communis has potential as a raw material for biodiesel synthesis through catalytic alcoholysis process. Clinoptilolite type natural zeolite is one of solid catalysts that can be used in the alcoholysis process. In the present work, the alcoholysis was carried out in an autoclave reactor equipped with manometer, thermometer, sampling valve, and heating element. The reaction occurred at elevated temperatures with the use of clinoptilolite as a solid catalyst. The experimental data indicated that in a certain reaction time range, an increase in temperature and autoclave rotation speed lead to the increase of reaction conversion. Calculation results showed that the overall reaction rate was controlled by chemical reaction at the catalyst surface. The optimum condition of the alcoholysis process was obtained at reaction time of 60 minutes, temperature of 120C and autoclave rotation of 110 rpm with the use of alcohol-oil ratio of 12.56 mgek / mgek and 2.56% (w/w) catalyst. At the optimum condition, the conversion could reach as high as 0.73. The obtaining esters had a viscosity of 8.0 cst, -16.6°F pour point, 215°F flash point, ASTM color of 1, and heating value of 19,119 Btu/lb.
References
Andaka, G., 1990. "Alkoholisis Minyak Biji Karet dengan Etanol pada Tekanan lebih dari Satu Atmosfer memakai Katalisator Asam Khlorid," Laporan Penelitian, Laboratorium Proses Kimia, Jurusan Teknik Kimia, Fakultas Teknik, Universitas Gadjah Mada, Yogyakarta.
Encinar, J.M., Gonzales, J.F., and Rodriguez, A., 2005. "Biodiesel from Used Frying Oil," Ind. Eng. Chem. Res. 44, 5491-5499.
Farouq, U., 1995. "Alkoholisis Minyak Biji Nyamplung dengan Etanol memakai Katalisator Amberlyst-15 pada Suhu di Atas Titik Didih Normal," Laporan Penelitian, Laboratorium Proses Kimia, Jurusan Teknik Kimia, Fakultas Teknik, Universitas Gadjah Mada, Yogyakarta.
Griffin, R.C., 1995. "Technical Methods of Analysis," seconded., pp. 107-110, Mc Graw Hill Book Company, Inc., New York.
Hambali, E., dkk., 2006. "Jarak Pagar Tanaman Penghasil Biodiesel," Penebar Swadaya, Jakarta.
Haslego, C., 1999. "Green Chemistry with Zeolite Catalyst," www.cheresources.com.
Johnston, R.E., dan Thring, M.W., 1957. "Pilot Plan Models and Scale UpMethode in Chemical Engineering," pp. 66-67, McGraw Hill Book Company, Inc., New York.
Junaedi, P., 1995. "Alkoholisis Minyak Jarak dengan Katalisator Natrium Hidroksid pada Tekanan di Atas Satu Atmosfer," Laporan Penelitian, Laboratorium Proses Kimia, Fakultas Teknik, Universitas Gadjah Mada, Yogyakarta.
Kirk, R.E. dan Othmer, D.F., 1979. "Encyclopedia of Chemical Thecnology vol. 5," pp. 817-819, Interscience Encyclopedia, Inc., New York.
Lestari, 1997. "Kinetika Reaksi Alkoholisis Minyak Goreng Bekas dengan Katalisator Zeolit," Tesis diajukan kepada Sekolah Pasca Sarjana, Universitas Gadjah Mada, Yogyakarta.
Roni, K.A., 1998. "Alkoholisis Minyak Biji Kepuh pada Tekanan Lebih dari Satu Atmosfer dengan Katalisator Buangan Perengkahan Minyak Bumi Pertamina Unit II Palembang," Tesis diajukan kepada Sekolah Pasca Sarjana, Universitas Gadjah Mada, Yogyakarta.
Saka dan Kusdiana, 2001. "Kinetics of Transesterification in Rapeseed Oil to Biodiesel Fuel as Treated in Supercritical Methanol," Fuel 80, 693-698.
Serio, M.D., Teseer, R., Pengmei, and Santacesaria, 2008. "Heterogeneous Catalyst for Biodiesel Production," Energy & Fuel 22, 207-217.
Smith, J.M., 1981. "Chemical Engineering Kinetics," pp. 298-301, Mc Graw Hill International Book Co., Singapore.
Sofiyah, 1995. "Kinetika Reaksi Etanolisis Minyak Biji Kapuk dengan Katalisator Natrium Hidroksid dan Penambahan Garam Dapur pada Tekanan di Atas Satu Atmosfer," Forum Teknik 22, 11-20.
Westerterp, K.R., dkk., 1984. "Chemical Reactor Design and Operation," p.16, John Willey and Sons, New York.