Reaksi Transesterifikasi Degummed Palm Oil(DPO) untuk Menghasilkan Biodiesel Sawit Menggunakan Lipozyme TL IM sebagai Biokatalis

  [1] Florensia Indah Stepani, “Produksi Metil Ester dengan Menggunakan Lipase Amobil dari Burkholderia cepacia pada Membran Polyesthersulfone”, Prodram Studi Teknologi Bioproses, Fakultas Teknik, Universitas Indonesia, Depok, Skripsi, 2012.

  [2] Wulan, Praswasti PDK, Muhammad Titis Rejoso, Heri Hermansyah, “Reaksi Hidrolisis Minyak Zaitun Menggunakan Lipase Rhizopus oryzae yang Diammobilisasi Melalui Metode Adsorpsi”, Departemen Teknik Kimia, Fakultas Teknik, Universitas Indonesia, Depok, Laporan Penelitian, 2011.

  [3] Siswa Setyahadi, Achmadin Luthfi Machsum, Renny S Mokondangan. “Kitin sebagai Penopang untuk Amobilisasi Lipase pada Proses Transesterifikasi Trigliserida”, Kedeputian Teknologi Agroindustri dan Bioteknologi, Badan Pengkajian dan Penerapan Teknologi, Jakarta, 2011.

  [4] Belafibako K, Kova’cs F, Gubicza L, Hancso’ K J., “Enzymatic Biodiesel Production From Sunflower Oil by Candida antartica Lipase In A Solvent- Free System”, Biocatal Biotransform Vol. 20 (6) No. 437-439, 2002.

  [5] Soumanou MM, Bornscheuer UT., “Improvement In Lipase Catalyzed Synthesis Of Fatty Acid Mthyl Esters From Sunflower Oil”, Enzyme Microb Technol, Vol 33 (1) No. 97-103, 2003.

  [6] Ghaly, A.E, D. Dave, M.S. Brooks, S. Budge, “Production of Biodiesel by Enzymatic Transesterification: Review”. American Journal of Biochemistry and Biotechnology, Vol. 6, No. 54-76, 2010.

  [7] Kumari V, Shah S, Gupta MN. “Preparation Of Biodiesel By Lipasecatalyzed Transesterification Of High Free Fatty Acid Containing Oil From Madhuca indica”. Energy Fuels Vol. 21 (1) No. 368-372, 2007.

  Shah, S., M. N. Gupta,“ Lipase Catalyzed Preparation of Biodiesel from Jatropha

  [8] Oil In A Solvent Free System”, Process Biochem, 42: 409-414, 2007. [9] Heri Hermansyah, Septhian Marno, Rita Arbianti, Tania Surya Utami,

  Anondho Wijanarko, “Interesterifikasi Minyak Kelapa Sawit dengan Metil Asetat untuk Sintesis Biodiesel Menggunakan Candida rugosa Lipase Terimobilisasi”, Departemen Teknik Kimia, Fakultas Teknik, Universitas Indonesia. Depok, Vol 8 No. 24-32, 2009.

  [10] Ahmad Hafiidz Mohammad Fauzi, Nor Aishah Saidina Amin, “An Overview of Ionic Liquids as Solvents in Biodiesel Synthesis”, Faculty of Chamical Engineering, University of Teknologi Malaysia, Malaysia, Vol 16 No. 5770- 5786, 2012.

  Kumari, A., P. Mahapatra, V. K. Garlapati, R. Banerjee, “Enzymatic

  [11]

  Transesterification of Jatropha oil”, Biotechnol, Biofuels, 2: 1-7. DOI: 10.1186/1754- 6834-2-1, 2009

  [12] Watanabe, Y., Y. Shimada, A. Sugihara, H. Noda, H. Fukuda, and Y.

  Tominaga, “Continuous Production of Biodiesel Fuel fromVegetable Oil Using Immobilized Candida Antarctica Lipase”, JAOCS 77(4): 355 – 360, 2000.

  [13] Irma Rita, “Proses Emulsifikasi dan Analisis Biaya Produksi Minuman Emulsi Minyak Sawit Merah”, Sekolah Pascasarjana, Institut Pertanian Bogor, Thesis, 2012.

  [14] Prima Luna, “Optimasi Sintesis Monolaurin Menggunakan Katalis Enzim Lipase Imobil Pada Circulated Packed Bed Reaktor”, Sekolah Pascasarjana.

  Institut Pertanian Bogor, Thesis, 2011. [15] Suherwin, “Analisis Faktor-Faktor yang Mempengaruhi Harga Crude Palm

  Oil (CPO) Dunia”, Sekolah Pascasarjana, Universitas Sumatera Utara, Medan, Thesis, 2012. [16] Wahyu Aryawan, Ir. Setijoprajudo M.SE., “Model Pengangkutan Crude Palm

  Oil (CPO) Untuk Domestik”, Jurusan Teknik Perkapalan, Fakultas Teknologi Kelautan, Institut Teknologi Sepuluh Nopember, 2011. [17] Yuni Maya Sari. “Potensi Minyak Kelapa Sawit (CPO) sebagai Biodiesel Alternatif Pengganti Minyak Solar di Provinsi Riau”, Jurnal Penelitian, 2013. [18] Yuli Ristianingsih, Sutijan, Arief Budiman, “Studi Kinetika Proses Kimia

  Dan Fisika Penghilangan Getah Crude Palm Oil (CPO) Dengan Asam

  Fosfat” , Jurusan Teknik Kimia, Fakultas Teknik, Universitas Gajah Mada, Jurnal Penelitian, Vol 13 No. 4 : 242-247, 2011.

  [19] Deny Sumarna, “Keuntungan Proses Wet Degumming Dibanding Dry Degumming pada Pemurnian Minyak Sawit Kasar”, Program Studi Teknologi Pertanian. Universitas Mulawarman, Samarinda, Jurnal Teknologi Pertanian, ISSN 1858-2419 Vol 3 No. 1, 2007.

  [20] Republik Daudi Parthu, “Sintesis Biodiesel”, Program Studi Teknologi Bioproses, Fakultas Teknik, Universitas Indonesia, Depok, 2012. [21] Gumus, Rhoda Harbor, Iwekumo Wauton, dan I Emmanuel Okekogene

  Efeonah, “Simulation Model for Biodiesel Production using Non-isothermal (CSTR) Mode : Membrane Reactor”, 2013. [22] SNI, Biodiesel. SNI 04-7182-2006, 2006

  [23] Seno Darmanto, “Analisa Untuk Kerja Biodiesel Kapuk Randu”, Jurnal Penelitian, Universitas Muhammadiyah Semarang, Semarang, Vol. 10 No 2, 2010.

  [24] Mirza Akbar Maulana, “Pemanfaatan Whole Cell Candida rugosa sebagai Biokatalis untuk Sintesis Biodiesel Melalui Rute Non-Alkohol”, Departemen Teknik Kimia, Fakultas Teknik, Universitas Indonesia, Depok, Skripsi, 2012.

  [25] Riza A Putranto, Djoko Santoso, Tri Panji, Suharyanto, dan Asmini Budiani, “Karakterisasi Gen Penyandi Lipase dari Kapang Rhizopus oryzae dan

  Absidia corymbifera ”, Balai Penelitian Bioteknologi Perkebunan Indonesia, Bogor, 2006.

  [26] OmniChem, “Lipozyme”, OmniChem Technical Data Sheet, 2014. [27] N. Albayrak, S.T. Yang, “Immobilized of Aspergillus oryzae ß- galactosidase on Tosylated Cotton Cloth”, Enzyme Microb, Technol, vol. 31, No. 371-383,

  2002. [28] L. Deng, X.B. Xu, G.G. Haraldsson, T.W. Tan, F. Wang, “Enzymatic

  Production Of Alkyl Esters Through Alcoholysis: A Critical Evaluation Of Lipases and Alcohols”, J Am Oil Chem Soc. vol. 82, No. 341-347, 2008. [29] M.M. Soumanou, U.T. Bornscheuer, “Improvement In Lipase-Catalyzed

  Synthesis Of Fatty Acid Methyl Esters From Sunflower Oil”, Enzyme Microb. Technol. vol. 33, No. 97-103. 2003. [30] Sim, Jia Huey, Guat Kheng Khor, Azlina Harun Kamruddin, dan Subhash

  Bhatia, “Thermodynamic Studies on Activity and Stability of Immobilized Thermomyces lanuginosus in Producing Fatty Acid Methyl Ester (FAME)”. Department of Chemical Engineering, Universitas Tunku Abdul Rahman, Setapak, Kuala Lumpur. Vol. 3 No. 4, 2013.

  [31] Al-Zuhair, Sulaiman, Fan Wei Ling, Lim Song Jun, “Proposed Kinetic Mechanism of The Production of Biodiesel from Palm Oil Using Lipase”, Chemical an Petroleum Engineering Department. United Arab Emirates University, United Arab Emirates, Process Biochemistry, Vol 42: 951-960, 2007.

  [32] Rebecca Hobden, “Effectiveness Of Ultrafiltration On The Recovery and Reuse Of Liquid Enzymes In The Production Of Biodiesel”, Department of Technology and Environmental Design. Appalachian State University, Thesis, 2013.

  [33] “Analisa Sederhana Program Biodiesel dari CPO”, Kompas, 1 Juli 2014

  [34] Nuryanti dan Djati H Salimy. “Metode Permukaan Respon dan Aplikasinya pada Optimasi Eksperimen Kimia”, Risalah Lokakarya Komputasi dalam

  Sains dan Teknologi Nuklir : 6-7 Agustus 2008 (373-391)

  [35] Satriana dan Muhammad D. Supardan, “Kinetic Study of Esterification of Free Acid in Low Grade Crude Palm Oil Using Sulfuric Acid”, AJChe, 8(1), 2008: hal. 1-8.

  [36] Gumpon P., Allen, M.L., Leevijit, T. dan Thaveesinsopha, K., “Methyl Ester Production from High Free Fatty Acid Mixed Crude Palm Oil”, Songklanakarin J. Sci. Technol., 29(6), 2007: hal 1551-1561.

  [37] Alkabbashi, A.N., Alam, Md. Z., Mirghani, M.E.S., Al-Fusaiel, A.M.A., “Biodiesel Production from Crude Palm Oil by Transesterification Process”, Journal of Applied Science 9 (17), 2009: hal 3166-3170.

  [38] Minovska, Vilma, Eleonora Winkelhausen, Slobodanka Kuzmanova., “Lipase Immobilized By Different Techniques On Various Support Materials Applied In Oil Hydrolysis”. Journal Of Serbian Chemical Society. Vol 70 (4) Hal.

  609-624, 2005. [39] Renita Manurung, Ricky Afrianto, & Melina Widyawati., “Synthesis

  Biodiesel From Palm Oil Through Interesterification Using Immobilized Lipase Enzim As Catalyst: The Effect of Amount of Biocatalyst, Mol Ratio of Reactant, Temperature to Yield”, Proceeding of International Journal of Science and Engineering, 2014.

  [40]

  G. Knothe, “Dependence of Biodiesel Fuel Properties on the Structure of Fatty Acid Alkyl Esters”, Journal of Fuel Process Technol, 86:1059 -1070, 2005

  [41] Haryono, Muhammad Ali, Wahyuni., “Proses Pemucatan Minyak Sawit Mentah dengan Arang Aktif”, Berkala Ilmiah Teknik Kimia, Vol 1, No. 1, 2012

  [42] Muhammad Yusuf Ritonga, “Optimasi Pembuatan Asam Stearat Berbasis Refined Bleached Deodorized Palm Stearin (RBDPS) yang Stabil Sesuai Standar Mutu”, Program Doktor Ilmu Kimia, Fakultas Matematika dan Ilmu Pengetahuan Alam, Universitas Sumatera Utara, Medan, 2010

  [43] Bendikiene, Vida, Dovile Sinkuniene, & Simas Kazlauskas., “Enzymatic Phenethyl Octanoate Synthesis: Lipaseselection and Reaction Optimization By Response Surface Methodology”, Journal CHEMIJA, Vol 25, No. 3: 185- 194, 2014.

  [44] M. S. Antczak, A. Kubiak, T. Antczak, S. Bielecki., “Enzymatic Biodiesel Synthesis-Key Factors Affecting Efficiency of The Process Renewable Energy”, 34: 1185-1194, 2009.

  [45]

  G. T. Jeong, D. H. Park., “Lipase-Catalyzed Transesterification of Rapeseed Oil For Biodiesel Production with Tert-Butanol”, Applied Biochemistry and Biotechnology, 14: 8131-8139, 2008

  [46]

  G. Chen, M. Ying, W. Li., “Enzymatic Conversion of Waste Cooking Oils Into Alternative Fuel- Biodiesel”. Applied Biochemistry and Biotechnology, 129: 911-921, 2006.

  [47] Dizge L., Keskinler, “Relationships Derived From Physical Properties Of Vegetable Oil and Biodiesel Fuels”. Fuel, 87: 1743-1748. 2008. [48] Lee, K., T. Foglia, K. S. Chang., “Production Of Alkyl Ester As Biodiesel

  From Fractionated Lard and Restaurant Grease”, Journal of the American oil Chemists Society, 79: 191-195, 2002

  [49] Santosh Kumar, “Enzymatic Transesterification of Waste Animal Fats For

  Halifax, Nova Scotia,

  Production Of Biodiesel”, Dalhousie University, Thesis, 2013. [50] Raharja, Septa, Prayoga Suryadarma, dan Teni Oktavia., “Hidrolisis

  Enzimatik Minyak Ikan Untuk Produksi Asam Lemak Omega-3 Menggunakan Lipase dari Aspergillus niger”, Departemen Teknologi Industri Pertanian, Fakultas Teknologi Pertanian. Institut Pertanian Bogor.

  Bogor, Laporan Hasil Penelitian, 2011. [49] Souza, S.L., Aguieiras, E.C.G & Langone, M.A.P., “Study of The

  Commercial Immobilized Lipases Reuse in Biodiesel Synthesis via

  th

  Transesterification Reactions of Soybean Oil”, 11 European Congress on

  st h Catalysis, Lyon, France, September 1 -6t , 2012.

  [50] Forresti, M.L. & Ferreira, M.L., “Computational Approach to Solvent-Free of Ethyl Oleate Using Candida Rugosa and Candida Antartica B Lipases, Interfacial Activation and Substrate (Ethanol, Oleic Acid) Adsorption”.

  Biomacromolecules . Vol. 5, No. 6, Hal: 2366-2375, 2004.

  [51] Sari, Ariza Budi Tunjung., “Proses Pembuatan Biodiesel Minyak Jarak Pagar (Jatropha Curcas L.) Dengan Transesterifikasi Satu Dan Dua Tahap”, Departemen Teknologi Industri Pertanian, Fakultas Teknologi Pertanian, Institut Pertanian Bogor, Bogor, Skripsi, 2007.

  [52] Sukarno, “Aplikasi Adsorben Dalam Proses Pemurnianbiodiesel Jarak Pagar (Jatropha

  Curcas L .)Menggunakan Metode Kolom”, Departemen Teknologi Industri

  Pertanian, Fakultas Teknologi Pertanian, Institut Pertanian Bogor, Bogor, Skripsi, 2012. [53] Dube’, MA, Tremblay A.Y., Cao P, “A Novel Membrane Reactor for The

  Continuous Production of Biodiesel”, Department of Chemical Engineering University of Ottawa, Canada, 2006.

  [54] Tate, R.E. Du, D. Liu, J. Zeng, “A Novel Enzymatic Route For Biodiesel Production From Renewable Oils In A Solvent-Free Medium”, Biotechnology Letters, 25: 1239-1241, 2006.

  [55] Demirbas, Ayhan., “Recent Progress in Biorenewable Feedstocks”, Journal Energy Edu Sci Technol , 22:69–95, 2008. [56] Maya Kurnia Puspita Ayu, “Produksi Biofuel Dari Minyak Kelapa Sawit

  Dengan Katalis Padat Cao/

  2 O

  3 Dan Como/

  2 O 3 ”, Institut Teknologi

  ɤ-Al ɤ -Al Sepuluh Nopember, Surabaya, Paper, 2010.