Implementation of biogas-based green energy for waste management optimization in TPST 3R Gadingkulon

Authors

DOI:

https://doi.org/10.26905/abdimas.v11i2.17050

Keywords:

Biogas, Community Empowerment, Green Energy, Waste Management

Abstract

TPST 3R Gadingkulon in Malang Regency manages approximately 500–800 kg of waste per day, with around 70% consisting of organic waste. However, the management of organic waste has not been optimized, resulting in environmental problems and dependence on fossil energy. This community service program aims to implement a green energy system through biogas technology and improve community awareness regarding sustainable waste management. The method used employs a participatory approach consisting of field observation, training, installation of biodigester systems, and continuous assistance. Activities carried out including waste sorting training, implementation of organic waste processing into biogas and organic fertilizer, and evaluation using pre-test and post-test methods. The results show that the biogas system has been successfully implemented and is able to convert organic waste into renewable energy and useful products. In addition, an increase in community knowledge and participation in waste management has also been observed. Taken together, this program contributes to reducing environmental pollution, lowering operational energy costs, and increasing the economic value of waste.

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References

Artiani, G. P., & Handayasari, I. (2017). Optimalisasi pengolahan sampah organik dengan teknologi biodigester sebagai upaya konservasi lingkungan. Jurnal KILAT: Jurnal Kajian Ilmu dan Teknologi, 6(2).

Arifandy, M. I., Yulistri, N., Armansyah, A., Sari, F. R., Amsyar, M. S., Febrianti, N., & Febriansyah, R. (2025). Manfaat biodigester dalam mengolah limbah peternakan menjadi biogas sebagai sumber energi baru terbarukan di Desa Mukti Sari. Jurnal Riset Rumpun Ilmu Hewani, 4(1), 125–130. https://doi.org/10.55606/jurrih.v4i1.5223

Balakrishna, A., Bhaskar, S., Nandeesh, N., Kumar, K. C., & Gowda, C. (2022). Segregation and treatment of organic and inorganic waste. International Journal for Science Technology and Engineering, 10(6), 3862–3866.

Chen, Y., Cheng, J. J., & Creamer, K. S. (2008). Inhibition of anaerobic digestion process: A review. Bioresource Technology, 99(10), 4044–4064.

De la Fuente Garcia Peña, V. M., Sanchez, G. D., Villalobos, C. A. S., Montano, R. A. R., & Sosa, J. A. M. (2022). A review: Biodigesters and their use for the generation of clean energy. 2022 IEEE International Conference on Engineering Veracruz (ICEV), 1–8. https://doi.org/10.1109/ICEV56253.2022.9959169

Guimarães, C. D. S., Maia, D. R. S., & Serra, E. G. (2018). Construction of biodigesters to optimize the production of biogas from anaerobic co-digestion of food waste and sewage. Energies, 11(4), 870. https://doi.org/10.3390/en11040870

Junus, M., Mustain, A., Putra, I. L., Afrizal, D., Bintang, Z., Rizky, M. A., & Akbar, F. (2025). Technology-driven community waste management model: Transforming organic waste into renewable energy. Jurnal Pengabdian Masyarakat, 6(2), 800–807.

Junus, M., Rahman, A. D., & Shodiq, R. F. (2025). Micro-controller based biogas production monitoring system. Indonesian Journal of Electrical and Electronics Engineering, 8(2), 69–75.

Kothari, R., Tyagi, V. V., & Pathak, A. (2010). Waste-to-energy: A way from renewable energy sources to sustainable development. Renewable and Sustainable Energy Reviews, 14(9), 3164–3170.

Mata-Alvarez, J., Dosta, J., Romero-Güiza, M. S., Fonoll, X., Peces, M., & Astals, S. (2014). A critical review on anaerobic co-digestion. Bioresource Technology, 102(4), 2900–2912.

Nasir, I. M., Ghazi, T. I. M., & Omar, R. (2012). Production of biogas from solid organic wastes through anaerobic digestion. Renewable and Sustainable Energy Reviews, 16(8), 6183–6191.

Putra, I. L., Junus, M., Imam, M. K., Rachmah, S., Risdiana, D. M., & Khoiriyah, R. (2025). Environmental management accounting assistance at TPST 3R Mulyoagung Bersatu. Jurnal Pengabdian Masyarakat, 6(2), 410–420.

Saidu, M. M., Lawal, E. E., Tsado, P. Y., Yakubu, J. G., Adeniyi, O. S., Oyewole, O. A., & Dabai, A. I. (2024). Potentials of organic waste to provide bioenergy. Elsevier. https://doi.org/10.1016/b978-0-443-14112-6.00010-9

Utama, W. S., & Prathma, D. (2020). The eco-green village mobile application for waste management. South Asian Research Journal of Engineering and Technology, 3(1), 13–21.

Zhang, C., Su, H., Baeyens, J., & Tan, T. (2014). Reviewing the anaerobic digestion of food waste for biogas production. Renewable and Sustainable Energy Reviews, 38, 383–392. https://doi.org/10.1016/j.rser.2014.05.038

Suaragong. (2025). Polinema bikin inovasi di TPST 3R Mulyoagung. https://suaragong.com/polinema-bikin-inovasi-di-tpst-3r-mulyoagung/

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Published

2026-08-05

How to Cite

Junus, M., Saptono, R., Ikhsan, K., Afifa, U. I., Moentamaria, D., Lukmana Putra, I., & Wijayanto, N. (2026). Implementation of biogas-based green energy for waste management optimization in TPST 3R Gadingkulon. Abdimas: Jurnal Pengabdian Masyarakat Universitas Merdeka Malang, 11(2). https://doi.org/10.26905/abdimas.v11i2.17050

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Section

Natural Science and Technology