Teknologi, Pendanaan dan Manfaat Limbah Ternak Menjadi Biogas di KPSP Setia Kawan, Pasuruan
DOI:
https://doi.org/10.35326/agribisnis.v8i2.7206Keywords:
Biogas, Reaktor Biogas, Pengolahan Limbah Ternak Sapi.Abstract
Dengan kebutuhan energi fosil yang meningkat dan ketersediaan yang semakin terbatas maka pada saat ini di butuhkan sumber energi alternatif yang terbarukan seperti biogas. Biogas berasal dari limbah organik, yaitu limbah ternak, pertanian, atau limbah sampah organik dari dapur rumah tangga dan lain lain. Biogas adalah hasil dari pengolahan limbah organik secara hampa udara atau proses fermentasi di dalam suatu reaktor biogas. KPSP Setia Kawan adalah koperasi peternakan sapi perah di Nongkojajar, Pasuruan telah berhasil mengolah limbah kotoran ternak sapi perahnya menjadi biogas. Penelitian ini menginformasikan secara singkat teknologi pengolahan limbah ternak sapi, potensi manfaat, prospek dan tantangan menjadi biogas di KPSP Setia Kawan Nongkojajar, Pasuruan.
Downloads
References
Biru, T. B. R. (2021). Model Instalasi Biogas Rumah Indonesia. 40. https://www.biru.or.id/wp-content/uploads/2021/07/03-Booth-Modul-Buku-Pedoman-Konstruksi-Terbaru.pdf
BSIP, N. 2024. (n.d.). Berita BSIP Jawa Timur - Kunjungi Pasuruan, Komisi Iv Dpr-Ri Tinjau Upaya Peningkatan Produksi Susu Nasional. Retrieved March 17, 2025, from https://jatim.bsip.pertanian.go.id/berita/kunjungi-pasuruan-komisi-iv-dpr-ri-tinjau-upaya-peningkatan-produksi-susu-nasional
Budiman, I., Muthahhari, R., Kaynak, C., Reichwein, F., & Zhang, W. (2018). Multiple Challenges and Opportunities for Biogas Dissemination in Indonesia. Indonesian Journal of Energy, 1(2), 46-60–46 – 60. https://doi.org/10.33116/IJE.V1I2.25
Calbry-Muzyka, A., Madi, H., Rüsch-Pfund, F., Gandiglio, M., & Biollaz, S. (2022). Biogas composition from agricultural sources and organic fraction of municipal solid waste. Renewable Energy, 181, 1000–1007. https://doi.org/10.1016/J.RENENE.2021.09.100
Cheng, S., Li, Z., Mang, H. P., Huba, E. M., Gao, R., & Wang, X. (2014). Development and application of prefabricated biogas digesters in developing countries. Renewable and Sustainable Energy Reviews, 34, 387–400. https://doi.org/10.1016/J.RSER.2014.03.035
Dani, T., Purwanto, & Utomo, S. (2024). Studi Literatur: Perbandingan Efektifitas Biogas dari Kotoran Sapi dan Sampah Sisa Sayur atau Buah. INSOLOGI: Jurnal Sains Dan Teknologi, 3(1), 19–31. https://doi.org/10.55123/INSOLOGI.V3I1.3019
Dianawati, M., Siti, D., Mulijanti, L., Pengkajian, B., Pertanian, T., & Barat, J. (2013). Peluang pengembangan biogas di sentra .... (Meksy Dianawati dan Siti Lia Mulijanti) Opportunities of Biogas Development in Dairy Cattle Center Areas. J. Litbang Pert, 32(2), 2789846.
Díaz-Vázquez, D., Alvarado-Cummings, S. C., Meza-Rodríguez, D., Senés-Guerrero, C., de Anda, J., & Gradilla-Hernández, M. S. (2020). Evaluation of biogas potential from livestock manures and multicriteria site selection for centralized anaerobic digester systems: The case of Jalisco, Mexico. Sustainability (Switzerland), 12(9), 3527. https://doi.org/10.3390/SU12093527
Elizabeth, R., & Rusdiana, dan S. (n.d.). Efektivitas Pemanfaatan Biogas Sebagai Sumber Bahan Bakar Dalam Mengatasi Biaya Ekonomi Rumah Tangga Di Perdesaan.
ESDM 20 agustus 2010. (n.d.). Kementerian ESDM RI - Media Center - Arsip Berita - Perjalanan Biogas dari Eropa Hingga Haurngombong. Retrieved March 17, 2025, from https://www.esdm.go.id/id/media-center/news-archives/perjalanan-biogas-dari-eropa-hingga-haurngombong
Farmer, C. 2025. (n.d.). Anaerobic Digestion in Rural China. Retrieved March 18, 2025, from https://www.cityfarmer.org/biogasPaul.html
Font-Palma, C. (2019). Methods for the Treatment of Cattle Manure—A Review. C 2019, Vol. 5, Page 27, 5(2), 27. https://doi.org/10.3390/C5020027
Gopinath, L. R., Christy, P. M., Mahesh, K., Bhuvaneswari, R., & Divya, D. (2014). Identification and Evaluation of Effective Bacterial Consortia for Efficient Biogas Production. IOSR Journal of Environmental Science, 8(1), 80–86. www.iosrjournals.orgwww.iosrjournals.org80%7C
JED, Gough, D., Thomas, J., Oliver, S., Service, A., & Report, D. (2012). Afghan_Biogas_Construction_Manual_2011.pdf. Systematic Reviews, 1(April).
Khoiyangbam, R. S., Kumar, S., Jain, M. C., Gupta, N., Kumar, A., & Kumar, V. (2004). Methane emission from fixed dome biogas plants in hilly and plain regions of northern India. Bioresource Technology, 95(1), 35–39. https://doi.org/10.1016/J.BIORTECH.2004.02.009
Kimutai, S. K., Kimutai, I. K., & Manirambona, E. (2024). Impact of biogas adoption on household energy use and livelihood improvement in Kenya: an overview on a roadmap toward sustainability. International Journal of Energy Sector Management, ahead-of-print(ahead-of-print). https://doi.org/10.1108/IJESM-07-2024-0053/FULL/XML
Mungwe, J. N., Colombo, E., Adani, F., & Schievano, A. (2016). The fixed dome digester: An appropriate design for the context of Sub-Sahara Africa? Biomass and Bioenergy, 95, 35–44. https://doi.org/10.1016/j.biombioe.2016.09.007
Nestle. (n.d.). Manfaat Biogas Indonesia dan Upaya Keberlanjutan Nestle. Retrieved March 18, 2025, from https://www.nestle.co.id/kisah/biogas
Noorollahi, Y., Kheirrouz, M., Farabi-Asl, H., Yousefi, H., & Hajinezhad, A. (2015). Biogas production potential from livestock manure in Iran. Renewable and Sustainable Energy Reviews, 50, 748–754. https://doi.org/10.1016/J.RSER.2015.04.190
Papendick, S. (2016). Biofuels and Value-added Products from. JANUARY 2015.
Rocha-Meneses, L., Luna-delRisco, M., González, C. A., Moncada, S. V., Moreno, A., Sierra-Del Rio, J., & Castillo-Meza, L. E. (2023). An Overview of the Socio-Economic, Technological, and Environmental Opportunities and Challenges for Renewable Energy Generation from Residual Biomass: A Case Study of Biogas Production in Colombia. Energies 2023, Vol. 16, Page 5901, 16(16), 5901. https://doi.org/10.3390/EN16165901
Salomon, K. R., & Silva Lora, E. E. (2009). Estimate of the electric energy generating potential for different sources of biogas in Brazil. Biomass and Bioenergy, 33(9), 1101–1107. https://doi.org/10.1016/J.BIOMBIOE.2009.03.001
Schnürer, A. (2016). Biogas Production: Microbiology and Technology. Advances in Biochemical Engineering/Biotechnology, 156, 195–234. https://doi.org/10.1007/10_2016_5
Shaibur, M. R., Husain, H., & Arpon, S. H. (2021). Utilization of cow dung residues of biogas plant for sustainable development of a rural community. Current Research in Environmental Sustainability, 3, 100026. https://doi.org/10.1016/J.CRSUST.2021.100026
Yadvika, Santosh, Sreekrishnan, T. R., Kohli, S., & Rana, V. (2004). Enhancement of biogas production from solid substrates using different techniques - A review. In Bioresource Technology (Vol. 95, Issue 1, pp. 1–10). Elsevier. https://doi.org/10.1016/j.biortech.2004.02.010
YRE. (n.d.). Dari Perbankan Menjadi Pengusaha Bio-slurry - Rumah Energi. Retrieved March 18, 2025, from https://www.rumahenergi.org/2020/08/11/dari-perbankan-menjadi-pengusaha-bio-slurry.html