Community Empowerment of Alue Keurinyai Village Through Enhancing Economic Value of Rice Husk and Sawdust Waste Using Double-Fire Pipe Retort Kiln Technology

Authors

  • Kurniawan Student of Mechanical Engineering Department, Malikussaleh University
  • Adi Setiawan Master Program of Renewable Energy Egineering, Malikussaleh University.
  • Asnawi Department of Mechanical Engineering, Malikussaleh University
  • Shaki Saptiadi Putra Department of Mechanical Engineering, Malikussaleh University
  • Riska Mulyawan Department of Chemical Engineering, Malikussaleh University
  • Reza Putra Department of Material Engineering, Malikussaleh University,
  • Muhammad Department of Material Engineering, Malikussaleh University,
  • Nurul Islami Department of Material Engineering, Malikussaleh University,

DOI:

https://doi.org/10.56806/jh.v7i2.363

Keywords:

Community Empowerment, co-pyrolysis, rice husk, sawdust, retort kiln

Abstract

The utilization of retort kiln by Smart Minapadi program was implemented in Alue Keurinyai Village to address low agricultural productivity resulting from conventional cultivation practices, high pest infestations, dependence on chemical inputs, and the underutilization of biomass waste. The village also lacked modern agricultural technologies such as the Internet of Things (IoT) and pyrolysis technology, which meant sustainable agricultural innovation had not yet been effectively realized. This program was designed to introduce IoT-based pest control technology, and waste processing into biochar and liquid smoke as an environmentally friendly, efficient, and sustainability-oriented solution. The program aimed to achieve ecological and sustainable agriculture, enhance farmers' capacity and digital literacy, promote the use of renewable energy, and strengthen agricultural waste management through technological innovation. In addition, the program sought to introduce digital transformation within the village community so that residents could independently adopt modern agricultural practices. The implementation method comprised preparation, implementation, monitoring, and evaluation stages, carried out through a participatory approach. During the preparation stage, the team conducted a land survey, program socialization, and preparation of facilities, including IoT devices and a pyrolysis machine. The implementation stage included applying the minapadi system on a 400 m² pilot plot, using solar-powered IoT pest repellent devices, producing biochar and liquid smoke through pyrolysis, and providing intensive training to farmers, the Farmer Women's Group (KWT), youth, and village residents. Monitoring and evaluation were carried out through observation of plant growth, IoT effectiveness, biochar use, harvest yield analysis, and group discussions. This program provides a strong foundation for the sustainability of modern agriculture in Alue Keurinyai Village through the synergy of technology, community empowerment, and responsible environmental management.

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References

Basu, P. (2013). Biomass Gasification, Pyrolysis and Torrefaction: Practical Design and Theory. In Biomass Gasification, Pyrolysis and Torrefaction: Practical Design and Theory.

Bridgwater, A. V. (2012). Review of fast pyrolysis of biomass and product upgrading. Biomass and Bioenergy, 38, 68–94. https://doi.org/10.1016/j.biombioe.2011.01.048

Chandraratne, M. R., & Asfaw G. Daful. (2021). Recent Advances in Thermochemical Conversion of Biomass. 35.

Chen, W. H., Biswas, P. P., Felix, C. B., Aniza, R., Escalante, J., Zhang, C., Lam, S. S., Pétrissans, A., Ubando, A. T., Pétrissans, M., & Hoang, A. T. (2026). Mechanistic insights into thermal degradation of lignocellulosic biomass components for bioenergy and biofuel: A review. Applications in Energy and Combustion Science, 26(March). https://doi.org/10.1016/j.jaecs.2026.100496

Malik, S., & Kumar, P. (2024). Compositional Analysis of the Lignocellulosic Biomass from Agricultural Waste ( Rice Husk ). 24(6), 78–84.

Rambli, J., Azlina, W., Abd, W., Ghani, K., Amran, M., & Salleh, M. (2018). Characterization of Sago-based Biochar as Potential Feedstock for Solid Fuel. 02, 11–17.

Rony, Z. I., Rasul, M. G., Jahirul, M. I., & Hasan, M. M. (2025). Properties of pyrolysis oils derived from different organic wastes for assessing their suitability for engine fuel. Energy Conversion and Management: X, 25(September 2024). https://doi.org/10.1016/j.ecmx.2025.100875

Sharma, R., Wahono, J., & Baral, H. (2018). Bamboo as an Alternative Bioenergy Crop and Powerful Ally for Land Restoration in Indonesia. 1–10. https://doi.org/10.3390/su10124367

Suharti, P. H., Hendrawati, N., Pratamasari, A., Rahayu, O. M., Malang, P. N., & Kimia, T. (2021). Pemanfaatan Serbuk Gergaji Kayu sebagai Karbon Aktif melalui Proses Pirolisis dan Aktivasi Kimia. 4(2), 91–99. https://doi.org/10.25273/cheesa.v4i2.8589.91-99

Tanger, P., Field, J. L., Jahn, C. E., DeFoort, M. W., & Leach, J. E. (2013). Biomass for thermochemical conversion: Targets and challenges. Frontiers in Plant Science, 4(JUL), 1–20. https://doi.org/10.3389/fpls.2013.00218

Usino, D. O., Ylitervo, P., Moreno, A., Sipponen, M. H., & Richards, T. (2021). Primary interactions of biomass components during fast pyrolysis. Journal of Analytical and Applied Pyrolysis, 159(January). https://doi.org/10.1016/j.jaap.2021.105297

Worldometer. (2025). World Oil Statistics. 2025. https://www.worldometers.info/oil/

Wulandari, S. (2019). PENGELOLAAN BIOMASSA TANAMAN DALAM BIOINDUSTRI PERKEBUNAN MENDUKUNG PENGEMBANGAN BIOENERGI Plant Biomass Management in Plantations Bioindustry Supporting Bioenergy. 18(2), 135–149.

Zulfahmi, Z., Amani, Y., Rahman, A., Islami, N., & Alchalil, A. (2021). Alih Teknologi Mesin Chopper Blender Pakan Hijauan Guna Peningkatan Produktivitas Peternakan Ruminansia Masa Pandemi Covid-19. JURNAL HURRIAH: Jurnal Evaluasi Pendidikan Dan Penelitian, 2(4), 119-127. https://doi.org/10.56806/jh.v2i4.39

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Published

2026-08-15

How to Cite

K, K., Setiawan, A., A, A., Saptiadi Putra, S., Mulyawan, R., Putra, R., M, M., & Islami, N. (2026). Community Empowerment of Alue Keurinyai Village Through Enhancing Economic Value of Rice Husk and Sawdust Waste Using Double-Fire Pipe Retort Kiln Technology. JURNAL HURRIAH: Jurnal Evaluasi Pendidikan Dan Penelitian, 7(2), 398-406. https://doi.org/10.56806/jh.v7i2.363

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