Biodiesel Production Process using Sugar Cane Bagasse Adsorbent with Time Variations
DOI:
https://doi.org/10.55927/fjas.v4i9.362Keywords:
Energy Requirement, Bagasse, Biodiesel, Free Fatty Acids, Reaction Time VariationAbstract
The use of bagasse as an adsorbent in the processing of used cooking oil aims to reduce the levels of free fatty acids before the transesterification process. This study explores the effectiveness of bagasse converted into activated carbon in adsorbing FFA and improving the quality of biodiesel. The results showed that bagasse is effective in reducing the levels of free fatty acids in RBD used cooking oil, thereby improving the quality of oil for biodiesel production. Time variations in the biodiesel production process affect the density, where increasing time causes a decrease in the density of biodiesel. The viscosity of the biodiesel produced meets the SNI 7182:2015 standard. Optimal conditions for biodiesel yield were achieved at 120 minutes with a yield of 90.7%.
References
Aini, Z., Yahdi, Sulistiyana,. (2020). Kualitas Biodiesel dari Minyak Jelantah Menggunakan Katalis Cangkang Telur Ayam Ras dengan Perlakuan Suhu yang Berbeda. Spin Jurnal Kimia dan Pendidikan Kimia, Vol. 2, No. 2.
Badan Standarisasi Nasional Indonesia. SNI 7182-2015 Standar Mutu Biodiesel. Jakarta.
Budiartie, G. 2018. “Disebut Bikin Rugi, Berapa Banyak Konsumsi Solar dan Premium”. Dalam CNBC Indonesia. 20 Maret 2018. Jakarta.
Freedman, B. E. H. and T. L. Mounts., 1984, Variabel Affecting th Yields of Fatty Esters from Transesterified Vegetable Oils, J. Am. Oil Chem. Soc, 61, pp. 1638 1643.
Knothe G, JV Gerpen and J. Krahl. (2005). The Biodiesel Handbook. United States of America: AOCS Press.
Kuncahyo, P., Fathallah, A. Z. M. Fathallah, dan Semin. 2013.”Analisa Prediksi Potensi Bahan Baku Biodiesel sebagai Suplemen Bahan Bakar Motor Diesel di Indonesia”. Jurnal Teknik Pomits, Vol. 2.
MITTELBACH, M., AND H. ENZELSBERGER. 1999. Transesterification of Heated Rapeseed Oil for Extending Diesel Fuel. Journal of the American Oil Chemists' Society 76 (5):545- 551.
MITTELBACH, M., AND H. ENZELSBERGER. 1999. Transesterification of Heated Rapeseed Oil for Extending Diesel Fuel. Journal of the American Oil Chemists' Society 76 (5):545- 551.
Prihandana, R. dan Hendroko, R. 2007. Energi Hijau Pilihan Bijak Menuju Negeri Mandiri Energi. Cetakan ke 1. Jakarta: Penebar Swadaya.
Setiawati. E. Edwar. F. (2012). Teknologi Pengolahan Biodiesel Dari Minyak Goreng Dengan Teknik Mikrofitrasi dan transesterifikasi sebagai Alternatif Bahan Bakar Mesin Diesel. Balai Riset dan standarisasi Industri Banjarbaru.
Shofa.,(2012), Pembuatan Karbon Aktif Berbahan Baku Ampas Tebu Dengan Aktivasi Kalium Hidroksida., Skripsi, FT, Universitas Indonesia, Depok.
Sholikhah, Faizatu., (2008), Pengaruh Penambahan Karbon Aktif dari Tongkol Jagung Terhadap Penurunan Angka Peroksida Minyak Goreng., Skripsi, Fakultas Sains dan Teknologi, Universitas Islam Negeri Sunan Kalijaga, Yogyakarta.
Sukardjo, 1990, “ Kimia organik “,FPMIPA IKIP, Rineka Cipta, Yogyakarta.
Wannahari, R. and M. Firdhaus Mad Nordin. 2012. “The Recovery of Used Palm Cooking Oil Using Bagasse as Adsorbent”. In American Journal of Engineering and Applied Science. Vol. 5, No. 1, Page. 59-62.
Widyanagari, S. 2008. Penggunaan Adsorben dalam Proses Pemurnian Biodiesel Jarak Pagar (Jatropha curcas Linn). Skripsi. Institut Pertanian Bogor.
Wijayanti, R. 2009. Arang Aktif Dari Ampas Tebu Sebagai Adsorben Pada Pemurnian Minyak Goreng Bekas. Skripsi. Institut Pertanian Bogor.
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