Pengaruh Variasi Temperatur Proses Pirolisis terhadap Karakteristik Biopelet Berbahan Baku Arang Limbah Ampas Tebu dan Kulit Kopi
DOI:
https://doi.org/10.61132/venus.v3i6.1240Keywords:
Alternative Energy, Bagasse, Biopellets, Coffee Husks, PyrolysisAbstract
Increasing in energy demand and limited fossil fuel reserves have driven the use of environmentally friendly alternative energy sources. This study aims to analyze the effect of pyrolysis temperature variations on the quality of biopellets made from bagasse and coffee husks. The materials were prepared in a 50:50 ratio with the addition of 15% tapioca flour as a binder. The pyrolysis process was carried out at temperatures of 450°C, 500°C, and 550°C for 120 minutes in oxygen-free conditions. The biochar resulting from pyrolysis was formed into biopellets, which were then tested for proximate composition, calorific value, and combustion rate. The results showed that an increase in pyrolysis temperature had a significant effect on the characteristics of the biopellets. A temperature of 550°C produced the lowest moisture content (8.436%), the highest fixed carbon content (62.191%), the highest calorific value (6293 cal/g), and the highest combustion rate (0.05789 g/sec). Conversely, ash content increased with rising temperature, while volatile matter content decreased. Thus, the best biopellets were obtained at a temperature of 550°C. This study confirms the potential of bagasse and coffee husks as raw materials for biopellets through pyrolysis temperature optimization to support the development of sustainable biomass energy.
References
Al Qadry, M. G., Saputro, D. D., & Widodo, R. D. (2023). Karakteristik dan uji pembakaran biopelet campuran cangkang kelapa sawit dan serbuk kayu sebagai bahan bakar alternatif terbarukan. Jurnal Inovasi Mesin, 5(1), 21–29. https://doi.org/10.15294/jim.v5i1.68759
Caturwati, N. K., Sudrajat, A., Haryanto, H., Pinem, M. P., & Reiza, R. (2017). Energi dan mesin-mesin konversi energi. Jurnal Teknik Mesin Untirta, 1(1).
Fithriyyah, D., Wulandari, E., & Sendjaja, T. P. (2020). Potensi komoditas kopi dalam perekonomian daerah di Kecamatan Pangalengan Kabupaten Bandung. Jurnal Pemikiran Masyarakat Ilmiah Berwawasan Agribisnis, 6(2), 700–714. https://doi.org/10.25157/ma.v6i2.3408
Khusraini, F., Ridwan, R., Ridhuan, K., & Irawan, D. (2021). Pengaruh jumlah pipa udara pada reaktor pembakaran pirolisis terhadap hasil arang dan asap cair. ARMATUR: Artikel Teknik Mesin & Manufaktur, 2(2), 106–114. https://doi.org/10.24127/armatur.v2i2.1450
Kuncoro, A. H. (2017). Uji potensi pembuatan briket bioarang dari ladek sebagai bahan bakar alternatif. Al Jazari Journal of Mechanical Engineering, 2(2), 22–34.
Lehmann, J., & Joseph, S. (Eds.). (2015). Biochar for environmental management: Science, technology and implementation. Routledge. https://doi.org/10.4324/9780203762244
Leistari, L., Hasan, E. S., & Risna, R. (2017). Pengaruh tekanan dan ukuran partikel terhadap kualitas briket arang cangkang coklat. Jurnal Aplikasi Fisika, 13(2), 1–8.
Mardiatmoko, G., & Mira, A. (2018). Badan Penerbit Fakultas Pertanian Universitas Pattimura.
Nurhilal, O., & Suryaningsih, S. (2018). Pengaruh komposisi campuran sabut dan tempurung kelapa terhadap nilai kalor biobriket dengan perekat molase. Jurnal Ilmu dan Inovasi Fisika, 2(1), 8–14. https://doi.org/10.24198/jiif.v2i1.15606
Parinduri, L., & Parinduri, T. (n.d.). Konversi biomassa sebagai sumber energi terbarukan. JET (Journal of Electrical Technology).
Rismayani, S., & Tayibnapis, A. S. (2011). Pembuatan bio-briket dari limbah sabut kelapa dan bottom ash. Arena Tekstil, 26(1). https://doi.org/10.31266/at.v26i1.1441
Rusdianto, A. S., Septiyatha, F., & Choiron, M. (2018). Analisis kelayakan finansial industri biopelet kulit kopi di Kabupaten Jember. Industria: Jurnal Teknologi dan Manajemen Agroindustri, 7(2), 89–94. https://doi.org/10.21776/ub.industria.2018.007.02.3
Setiani, V., et al. (2019). Potensi emisi dari pembakaran biobriket ampas tebu dan tempurung kelapa. In Seminar MASTER (pp. 115–118).
Setyawan, B., & Ulfa, R. (2019). Pengaruh komposisi bahan baku dan perekat terhadap emisi gas briket arang kulit kopi dan tempurung kelapa. In Prosiding Konferensi.
Sidiq, A. N. (2022). Pengaruh co-firing biomassa terhadap efisiensi boiler PLTU batubara. Kilat, 11(1), 21–31. https://doi.org/10.33322/kilat.v11i1.1553
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