Penggunaan Palm Oil Mill Effluent (POME) dan Tepung Tapioka Sebagai Perekat Terhadap Karakteristik Briket Dari Limbah Padat Pabrik Kelapa Sawit
DOI:
https://doi.org/10.31004/jutin.v8i2.44771Keywords:
Bio Briket, Cangkang, Decanter Solid, Palm Oil Mill EffluentAbstract
The rapid growth in demand for palm oil throughout the world has triggered the development of plantations which has an impact on the accumulation of palm oil waste. The resulting waste consists of empty oil palm fruit bunches, palm kernel shells, fiber, stems and fronds which have significant calorific value. This research aims to utilize liquid and solid waste produced from palm oil processing, especially liquid waste which is currently minimally utilized. One solution to this problem is briquette making to evaluate the characteristics of briquettes produced from a combination of shells, empty fruit bunches, solid decanters and liquid palm oil mill waste. The method applied in this research is an experiment that begins with literature study, survey, briquette making, testing, and data analysis. The test results showed that the highest heating value in sample A2 was 25137.95 cal/gram, the highest water content was in A2 with a value of 7.1%, the highest combustion rate was recorded in A1 at 0.16%, the highest ash content was obtained from A2 with a value of 14.4%, and the highest density was in A2B3 at 0.58%.References
Adhiguna, R. T. (2021). Karakteristik Briket Daun Dan Batang Dari Tanaman Nanas Menggunakan Perekat Alami Lateks. Jurnal Technopreneur (JTech), 9(2), 110–115. https://doi.org/10.30869/jtech.v9i2.781
Harnawan, B. Y., & Radityaningrum, A. D. (2019). Kualitas Biobriket dari Bahan Campuran Bioslurry dan Sekam Padi sebagai Alternatif Bahan Bakar. Seminar Nasional Sains Dan Teknologi Terapan VII, 335–339.
Irbah, Y. N., Nufus, T. H., & Hidayati, N. (2022). Analisis Nilai Kalori dan Laju Pembakaran Briket Campuran Cangkang Nyamplung dan Tempurung Kelapa. Prosiding Seminar Nasional Teknik Mesin Politeknik Negeri Jakarta, 689–694. http://prosiding.pnj.ac.id
Nurhilal, O., Arianto, V., & Sugandi, W. K. (2025). KONVERSI ENERGI BRIKET SAMPAH DAUN DAN RANTING POHON 14(02), 75–83.
Putra, A. D., Nurfalah, W., Muhari, E. H., & Gozali, M. (2022). Pemanfaatan Limbah Lumpur IPAL Proses Biologi Sebagai Bahan Bakar Alternatif dalam Bentuk Briket. Fluida, 15(2), 136–142. https://doi.org/10.35313/fluida.v15i2.4522
Rahardja, I. B., Hasibuan, C. E., & Dermawan, Y. (2022). Analisis briket fiber mesocarp kelapa sawit metode karbonisasi dengan perekat tepung tapioka. SINTEK JURNAL: Jurnal Ilmiah Teknik Mesin, 16(2), 82. https://doi.org/10.24853/sintek.16.2.82-91
Redjeki, A. S., Markhaban, D., Syamsuddin, A. B., & ... (2022). Pengaruh Komposisi Dan Ukuran Partikel Pada Nilai Kalor Biobriket Dari Tandan Pisang Dan Serbuk Gergaji Dengan Penambahan Perekat Tepung Tapioka Dan Tepung Sagu. Seminar Nasional Sains Dan Teknologi, November, 1–6. https://jurnal.umj.ac.id/index.php/semnastek/article/view/14676
Saleh, E. J., Syahruddin, & Srisuryaningsih, D. (2021). Pakan ternak berbasis lumpur sawit bagi masyarakat tani-ternak di Desa Pangea Kecamatan Wonosari Kabupaten Boalemo. Jambura Journal of Husbandry and Agriculture Community Serve (JJHCS) E-ISSN, 1(1), 17–21. https://ejurnal.ung.ac.id/index.php/jjhcs/index
Susanto, J. P., Dwi, A., Dan, S., & Suwedi, N. (2020). Perhitungan Potensi Limbah Padat Kelapa Sawit untuk Sumber Energi Terbaharukan dengan Metode LCA Palm Solid Wastes Potential Calculation for Renewable Energy with LCA Method. 18(2), 165–172.
Titarsole, J., & Fransz, J. J. (2023). Pengaruh Tekanan Dan Suhu Terhadap Kerapatan Dan Nilai Kalor Briket Arang Limbah Serbuk Meranti Merah. Jurnal Hutan Pulau-Pulau Kecil, 7(1), 97–104. https://doi.org/10.30598/jhppk.v7i1.9017
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Aprizal Aprizal, Ahmad Fathoni, Armadani Armadani

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.