Penerapan Teknologi Digester Sistema.bio dan Purifikasi Biogas untuk Pemanfaatan Kotoran Sapi Menjadi Energi Terbarukan di Desa Rek Kerrek, Palengaan, Pamekasan
DOI:
https://doi.org/10.55123/abdikan.v5i3.9286Keywords:
Biogas, Renewable Energy, Cattle Manure, Community Empowerment, PurificationAbstract
The utilization of cattle manure (cow dung) waste in Rek Kerrek Village, Palengaan District, Pamekasan Regency, Madura, has not been optimized, resulting in potential environmental pollution. This community service program aimed to empower the Jaya Abadi Livestock Farmer Group through the implementation of Sistema.bio biodigester technology and biogas purification to produce renewable energy in the form of biogas and organic fertilizer (bio-slurry). The program adopted the Participatory Action Research (PAR) approach, consisting of problem identification, Focus Group Discussions (FGDs), technology implementation, technical training, mentoring, and evaluation. The applied technology included the installation of a Sistema.bio biodigester and a two-stage biogas purification unit utilizing activated carbon and zeolite (8 × 30 mesh) as adsorption media for carbon dioxide (CO₂) and hydrogen sulfide (H₂S) removal. The implementation of these technologies enhanced the beneficiaries’ production capacity by converting livestock manure into biogas as a substitute for liquefied petroleum gas (LPG) for household cooking and bio-slurry as an organic fertilizer. Furthermore, the program strengthened the community’s managerial capacity through improved technical competencies and effective management of biogas and bio-slurry utilization. The initial impacts included reduced household energy expenditure, improved environmental quality through better livestock waste management, and increased community awareness of sustainable livestock waste utilization. Overall, the program successfully promoted community-based energy self-sufficiency through biogas technology and demonstrates strong potential for replication in other rural areas with similar socio-environmental characteristics.
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References
Artanti, D., Saputro, R. R., & Budiyono. (2012). Biogas production from cow manure. International Journal of Renewable Energy Development, 1(2), 61–64. https://doi.org/10.14710/ijred.1.2.61-64
BPS Badan Pusat Statistik. (2023). Statistik peternakan dan kesehatan hewan 2023. Badan Pusat Statistik.
Baum, H. S. (2003). Participatory action research. Journal of Planning Education and Research, 22(4), 459–470.
Chevalier, J. M., & Buckles, D. J. (2019). Participatory action research: Theory and methods for engaged inquiry. Routledge.
Deublein, D., & Steinhauser, A. (2011). Biogas from waste and renewable resources: An introduction. Wiley-VCH.
Fourqoniah, F., Kalsum, L., & Yulianti, S. (2023). Biogas purification by adsorption method using activated carbon and zeolite adsorbents. Equilibrium Journal of Chemical Engineering, 2(1), 45–53. https://doi.org/10.20961/equilibrium.v7i2.77835
IEA-International Energy Agency. (2023). World energy outlook 2023. International Energy Agency.
Jepleting, A., Moraa, D., Cheptoo, D., & Mecha, A. C. (2024). Enhanced biogas purification using low-cost adsorption and absorption techniques. Sustainable Chemical Engineering, 588-603. https://doi.org/10.37256/sce.5220245307
Jepleting, A., Mecha, A. C., Sombei, D., Moraa, D., & Chollom, M. N. (2025). Potential of low-cost materials for biogas purification: A review. Renewable and Sustainable Energy Reviews, 188, 114378. https://doi.org/10.1016/j.rser.2024.115152
Kemmis, S., McTaggart, R., & Nixon, R. (2014). The action research planner: Doing critical participatory action research. Springer.
Molino, G., Gandiglio, M., Fiorilli, S., Lanzini, A., Drago, D., & Papurello, D. (2022). Design and performance of an adsorption bed with activated carbons for biogas purification. Molecules, 27(22), 7882. https://doi.org/10.3390/molecules27227882
Nurtanti, I., Wianto, A. O., Wijayanti, D. A., & Septiyanti, N. D. (2026). Sosialisasi Teknologi Biogas di Desa Gentungan, Mojogedang sebagai Pendukung Integrated Farming System. ABDIKAN: Jurnal Pengabdian Masyarakat Bidang Sains dan Teknologi, 5(2), 142-151. https://doi.org/10.55123/abdikan.v5i2.7758
Rifai, F. Y. A., Siswanto, S., Purwanto, P., & Putri, S. O. D. (2025). Capacity Building dalam Pencatatan Laporan Keuangan Sederhana Bagi Pelaku Usaha Mikro. KOMUNITA: Jurnal Pengabdian dan Pemberdayaan Masyarakat, 4(2), 125-134. https://doi.org/10.60004/komunita.v4i2.162
Ryckebosch, S., Drouillon, M., & Vervaeren, H. (2011). Techniques for transformation of biogas to biomethane. Biomass and Bioenergy, 35(5), 1633–1645. https://doi.org/10.1016/j.biombioe.2011.02.033
Soeprijanto, S., Warmadewanthi, I. D. A. A., Muntini, M. S., & Anzip, A. (2021). The utilization of water hyacinth for biogas production in a plug flow anaerobic digester. International Journal of Renewable Energy Development, 10(1), 27. https://doi.org/10.14710/ijred.2021.21843
Werkneh, A. A., et al. (2022). Biogas impurities: Environmental and health implications. Environmental Health Insights, 16, 1–10. https://doi.org/10.1177/11786302221126044
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