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Pengaruh Suhu Pirolisis dan Jumlah Katalis Karbon Aktif terhadap Yield dan Kualitas Bahan Bakar Cair dari Limbah Plastik Jenis Polipropilena

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DAFTAR PUSTAKA

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Carbon”,International Journal of Renewable Energy Technology, 1(1) 2012 : hal. 39 - 48.

[11] Alan Russell, Clare College, “Microwave-Assisted Pyrolysis Of HDPE Using An Activated Carbon Bed”. Dissertation Department Of Chemical Engineering And Biotechnology, University Of Cambridge. Inggris, 2012, hal. 39 – 41.

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[16] Rosita Idrus, Bosi Pahinop Lapanporo, Yoga Satria Putra “Pengaruh Suhu Aktivasi Terhadap Kualitas Karbon Aktif Berbahan Dasar Temperung Kelapa”, Journal of Prisma Fisika, 1 (1) 2013 : hal. 50 – 55

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Dengan Metoda Aktivasi Kimiawi”, Skripsi Jurusan Ekstensi Teknik Kimia, Fakultas Teknik, Universitas Indonesia, Depok, 2011.

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[22] J. Aguado, D. P. Serrano, M. D. Romero, J. M. Escola, “Catalytic conversion of polyethylene into fuels over mesoporous MCM-41”, Chem. Commun, 1996. [23] Sachin Kumar, Achyut K. Panda, R.K. Singh, “A review on tertiary recycling of

high-density polyethylene to fuel”, Journal of Conservation and Recycling, 55 2011 : hal. 893 – 910

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Engineering”, Thesis University of Canterbury, New Zealand, 2010.

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[29] Mochamad Syamsiroa, Harwin Saptoadi, Tinton Norsujianto, Putri Noviasria, Shuo Cheng, Zainal Alimuddin, Kunio Yoshikawa, “Fuel Oil Production from Municipal Plastic Wastes in Sequential Pyrolysis and Catalytic Reforming Reactors, Energy Procedia, 47 2014 : hal. 180 – 188.

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[30] Joko, Santoso, “Uji Sifat Minyak Pirolisis dan Uji Performasi Kompor Berbahan Bakar Minyak Pirolisis dari Sampah Plastik”, Skripsi Jurusan Teknik Mesin, Fakultas Teknik, Universitas Sebelas Maret, Surakarta, 2010

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[35] Achyut Kumar Panda, “Studies on process optimization for production of liquid fuels from waste plastics” Thesis National Institute of Technology, Rourkela, 2011.

[36] Achyut K. Panda dan R.K.Sigh, “ Optimization of Process for the Thermo-catalytic Degradation of Waste Polypropylene to Liquid Fuel”, Advances in Energy Engineering (AEE) 1 (3), 2013 : hal. 74 – 83.

[37] Hussain Gulab, Muhammad Rasul Jan, Jasmin Shah dan George Manos, “Plastic catalytic pyrolysis to fuels as tertiary polymer recycling method: Effect of process conditions”, Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances and Environmental Engineering, 45 (2010) : hal. 908-915.

[38] Neeraj Mishra, Sunil Pandey, Bhushan Patil,Mukeshchand Thukur, Ashmi Mewada,Madhuri Sharon, and Maheshwar Sharon, “Facile Route to Generate Fuel Oil via Catalytic Pyrolysis of Waste Polypropylene Bags: Towards Waste Management of >20�m Plastic Bags”, Journal of Fuels 2014: hal 1- 10

[39] M. Rezvanipour, F. Alikhani Hesari*, M. Pazouki, “Catalytic Pyrolysis of General Purpose PolyStyrene Using Red Mud as a Catalyst”, Iranian Journal of Chemical Engineering, 11 (4) 2014 : hal 10-20.

[40] Kaustav Mukherjee dan C.Thamotharan, “Performance and Emission Test of Several Blends of Waste Plastic Oil with Diesel and Ethanol on Four Stroke Twin Cylinder Diesel Engine”, Journal of Mechanical and Civil Engineering, 11 (2) 2014 : hal 47-51

[41] Ademiluyi, T dan Akpan, C, “Preliminary evaluation of fuel oil produced from pyrolysis of low density polyethylene water- sachet wastes”, Preliminary Evaluation of Fuel Oil, 11 (3) 2007: hal 15-19.

[42] Chevron Corporation, “Diesel Fuels Technical Review”, Chevron Products Company, San Ramon, 2007

[43] Fika Hesti Wulandari dan Sri Wahyuni, “Konversi Katalitik Polipropilen menjadi Fraksi Bahan Bakar Cair menggunakan Katalis Ni-Mo/Za”, Indonesian Journal Of Chemical Science, 4(1)2015 : hal 70-74.

[44] Geankoplis. C.J. 1993.Transport Process and Unit Operation. Edisi Ketiga. New York. Prentice-Hall, Inc.

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