Pemanfaatan Sampah Organik Menjadi Energi Alternatif Biogas Dengan Metode Anaerobic Digestion

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Herafik Herafik
Zelda Ambrozia Nova Soraya
Zovi Aldiansyah
Dodit Ardiatma

Abstract

The increasing population and human activities have led to a significant increase in the production of organic waste, especially from canteen waste. This poses environmental and health problems. This study aims to process organic waste in the form of leftover fruits and vegetables from the canteen into alternative energy, biogas, through the anaerobic process. The processing was carried out by mixing fruit and vegetable waste with water and Effective Microorganisms-4 (EM4) bacteria in a ratio of 1:1:0.1. The mixture was then fermented for 30 days under anaerobic conditions. The results of the study showed that fruit and vegetable waste have good potential to be converted into biogas. The addition of EM4 in the fermentation process has proven to increase biogas production. The biogas produced can be used as an energy source for cooking or lighting. In addition, the by-product of the fermentation process in the form of organic fertilizer can improve soil quality. The results of this study indicate that the anaerobic process with the addition of EM4 is an effective method for processing fruit and vegetable waste from the canteen into biogas, while also providing benefits in the form of organic fertilizer.

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How to Cite
Herafik, H., Zelda Ambrozia Nova Soraya, Zovi Aldiansyah and Dodit Ardiatma (2025) “Pemanfaatan Sampah Organik Menjadi Energi Alternatif Biogas Dengan Metode Anaerobic Digestion”, Ranah Research : Journal of Multidisciplinary Research and Development, 7(4), pp. 2616-2620. doi: 10.38035/rrj.v7i4.1526.

References

Annur, S., Kusmasari, W., Wulandari, R., & Sumiati, S. (2020). Pengembangan Biogas Dari Sampah Untuk Energi Listrik Dan Bahan Bakar Kompor Di Tpa Cilowong, Kota Serang, Banten. KUAT : Keuangan Umum Dan Akuntansi Terapan, 2(1), 48–51. https://doi.org/10.31092/kuat.v2i1.823
Bicks, A. T. (2020). Investigation of Biogas Energy Yield from Local Food Waste and Integration of Biogas Digester and Baking Stove for Injera Preparation: A Case Study in the University of Gondar Student Cafeteria. Journal of Energy, 2020, 1–11. https://doi.org/10.1155/2020/8892279
Gustafsson, M., & Anderberg, S. (2023). Great expectations—future scenarios for production and use of biogas and digestate in Sweden. Biofuels, 14(1), 93–107. https://doi.org/10.1080/17597269.2022.2121543
Ihsan, A., Bahri, S., & Musafira. (2013). Produksi Biogas Menggunakan Cairan Isi Rumen Sapi dengan Limbah Cair Tempe. Online Jurnal of Natural Science, 2(2), 27–35.
Olsson, L., & Fallde, M. (2015). Waste(d) potential: a socio-technical analysis of biogas production and use in Sweden. Journal of Cleaner Production, 98, 107–
115. https://doi.org/https://doi.org/10.1016/j.jclepro.2014.02.015