Educational Program on Converting Plastic Waste into Alternative Fuel Using Pyrolysis and Triboelectric Nanogenerators (TENG) for Community Leaders in Kasomalang Kulon Tourism Village, Subang Regency
DOI:
https://doi.org/10.58169/jpmsaintek.v5i2.1066Keywords:
Alternative Fuels, Plastic Waste, Public Education, Pyrolysis, Triboelectric NanogeneratorAbstract
This Community Service (CS) initiative was executed collaboratively by faculty members from five universities—Universitas Pamulang, Universitas Presiden, Universitas Trisakti, Universitas Pembangunan Jaya, and Universitas Borobudur—in Kasomalang Kulon Tourism Village, Subang Regency, West Java, on April 17, 2026. This initiative aimed to instruct village leaders, as prospective catalysts for change in waste management and renewable energy, on the technique for converting plastic trash into pyrolysis-derived alternative fuel and the Triboelectric Nanogenerator (TENG) energy harvesting technology. This activity addresses the critical issues of plastic waste pollution and the exhaustion of fossil fuel reserves. Annually, almost 8 million tonnes of plastic waste infiltrate the oceans, yet merely 9% of all plastic ever manufactured is effectively recycled. The collaborative effort encompassed Electrical Engineering, Computer Systems, Petroleum Engineering, Information Systems, Product Design, and Agrotechnology. The instructional techniques employed comprised lectures and conversations. The activity's results indicated that participants acquired a thorough comprehension of pyrolysis mechanisms, the principles of TENG energy conversion, and its possible applications at the village level. Despite the absence of direct implementation, the cadres shown significant motivation to facilitate technology adoption inside their communities. This PKM model demonstrates that interdisciplinary collaboration across universities is effective in providing innovative technological education to rural populations.
References
Anuar Sharuddin, S. D., Abnisa, F., Wan Daud, W. M. A., and Aroua, M. K. (2016). A comprehensive review of pyrolysis methods for plastic waste treatment. Energy Conversion and Management, Volume 115, Pages 308–326. https://doi.org/10.1016/j.enconman.2016.02.037
Asmaidin, A., & Budy Santoso, C. (2026). Evaluation of Retrieval Methods in Domain-Specific Chatbots Using Enhanced Retrieval Generation. JSAI (Journal of Scientific and Applied Informatics), 9(1), 105–111.
Bridgwater, A. V. (2012). https://doi.org/10.36085/jsai.v9i1.9897 Investigation of accelerated pyrolysis of biomass and optimisation of the resulting products. Biomass and Bioenergy, Volume 38, Pages 68–94. https://doi.org/
Budiyanto, S., Manduapessy, J. O., Silalahi, L. M., Hamid, A., & Hanafi, D. (2024). https://doi.org/10.1016/j.biombioe.2011.01.048 Wireless Sensor Network for Power Management and Surveillance of Public Street Lighting with Earthquake Early Warning Features. FORTEI 2024 International Conference on Electrical Engineering (FORTEI-ICEE), pp. 235–240. https://doi.org/10.1109/FORTEI-ICEE64706.2024.10824353
Budy Santoso, C., Mujiburochman, M., Rachim, R. S., & Herlambang, R. C. (2025). Development of a Data Warehouse and Business Intelligence system for AIDS cases in West Java. JSAI (Journal of Applied Science and Informatics), 8(1), pp. 74–83..
Darudiato, S., & Widjaja, Y. (2022). Cost Management in Production Using Activity-Based Costing Techniques in Information Systems. DOI: https://doi.org/10.36085/jsai.v8i1.7567 International Journal of Informatics and Computing, 4(2 SE-Article), 25–35. https://doi.org/10.35842/ijicom.v4i2.54
Darwati Susilastuti, Aditiameri Aditiameri, and Luluk Sutji Marhaeni. 2024. Functional foods support government initiatives designed to reduce stunting. Proceedings of the International Conference on Innovation in Science, Technology, Education, Children, and Health, 1(1 SE-Article), 111–118. https://doi.org/10.62951/icistech.v1i1.30
Dhokhikah, Y., & Trihadiningrum, Y. (2012). Solid waste management in developing Asian countries: challenges and opportunities. Journal of Environmental Science and Applied Biology, Volume 2, Issue 7, Pages 329–335.
Dicky Adi Pratama, Aditiameri Aditiameri, and Darwati Susilastuti. 2023. The Effectiveness of Cytokinin (BAP) Application and Soaking Duration on the Growth of Cipedak Avocado (Persea Americana Mill) Cuttings.
Agrisia: Journal of Agricultural Science, 16(1 SE-Article), pp. 1–15. https://doi.org/10.37721/agrisia.v16i1.1176 Fan, F.-R., Tian, Z.-Q., & Lin Wang, Z. (2012). A versatile triboelectric generator. Nano Energy, 1(2), 328–334. https://doi.org/https://doi.org/10.1016/j.nanoen.2012.01.004
Geyer, R., Jambeck, J. R., & Law, K. L. (2026). Production, applications, and fate of all polymers ever made. Science Advances, Volume 3, Issue 7, Article e1700782.
Hamuda, H., Anjani, S., & Adzimah, L. (2026). Development of an intelligent embedded cyber-physical system integrating edge AI and low-power sensor networks for adaptive environmental monitoring and robotic control. Intelligent Systems and Robotics, 1(1 SE-Article), 48–64.
Jambeck, J. R., Geyer, R., Wilcox, C., Siegler, T. R., Perryman, M., Andrady, A., Narayan, R., & Law, K. L. (2015). https://doi.org/10.66472/isr.v1i1.40 Contributions of terrestrial plastic waste to oceanic pollution. Science, 347(6223), 768–771. https://doi.org/10.1126/science.1260352
Lukman, L., Rosmegawati, R., Tasrif, M. J., & Tobing, S. M. L. (2025). An Examination of Factors Influencing Indonesian Nickel Exports Following the Nickel Downstreaming Policy from 2017 to 2024. Journal of Management and Entrepreneurship Studies (MSEJ), 6(1 SE-Article), 275–293.
Lukman, L., Rozikin, Rosmegawati, Tasrif, M. J., & Tobing, S. M. L. (n.d.). The Impact of Donald Trump’s Reciprocal Tariff Policy on the Pricing and Valuation of Indonesian Crude Palm Oil (CPO) Exports to the United States from 2018 to 2025. https://doi.org/10.37385/msej.v6i1.7078 EMT KITA Journal, 9(3 SE-Articles), 1059–1071. https://doi.org/10.35870/emt.v9i3.4471
Lukman Medriavin Silalahi, Safrizal Safrizal, Erick Fernando, Hayadi Hamuda, Ribut Julianto, and Yuanita Sinatrya. 2025. Development of an Autonomous Solar-Powered Smart Aquaculture Monitoring System to Improve Energy Efficiency and Reduce Environmental Impact. Green Engineering: International Journal of Engineering and Applied Sciences, 2(2 SE-Article), 58–75. https://doi.org/10.70062/greenengineering.v2i2.286
Meidya Buana, F., Satiawati, L., & Sunny Yulia, P. (2025). Modification of the concentration of MES surfactant in palm oil using CMG software. IOP Conference Series: Earth and Environmental Science, 1451(1), 12038.
Miandad, R., Barakat, M. A., Aburiazaiza, A. S., Rehan, M., & Nizami, A. S. (2016). A review of catalytic pyrolysis of plastic waste. Process Safety and Environmental Protection, issue 102, pages 822–838. https://doi.org/https://doi.org/10.1016/j.psep.2016.06.022
Niu, S., Liu, Y., Chen, X., Wang, S., Zhou, Y. S., Lin, L., Xie, Y., & Wang, Z. L. (2015). Theory of independent triboelectric layer-based nanogenerators. Nano Energy, 12, 760–774. based on independent triboelectric layers. Nano Energy, 12, 760–774. https://doi.org/https://doi.org/10.1016/j.nanoen.2015.01.013
Panda, A. K., Singh, R. K., & Mishra, D. K. (2010). Thermolysis of plastic waste into liquid fuel: A viable method for plastic waste management and the creation of value-added products—A global perspective. Reviews of Renewable and Sustainable Energy, Volume 14, Issue 1, Pages 233–248. https://doi.org/https://doi.org/10.1016/j.rser.2009.07.005
Ranudinata, H. N., Adikesuma, T. N., Putuhena, F. J., Arbaningrum, R., Subagyo, G. W., Philip, F. J., & Darajat, T. M. (2026). Design of Hexagonal Green Pavements Using Digital Simulation for the Optimisation of Sustainable Urban Drainage. Proceedings of Engineering, Volume 128, Issue 1, page 14.
Safrizal, S., Anwar, C., & Rayeb, A. El. (2024). A recommendation model using artificial intelligence to tailor students’ learning interest trajectories at university. Proceedings of the International Conference on Electrical Engineering and Informatics, Volume 1, Issue 2, Pages 94–101. https://doi.org/ https://doi.org/10.62951/iceei.v1i2.28 Satiawati, L., Dalimunthe, Y. K., & Widiayatni, H. (2024). Assessment of linear flow velocity of compressible fluid (gas) in a reservoir. Proceedings of the AIP Conference, 3019(1), 90004. Silalahi, L. M., Indrawan, M. R., Budiyanto, S., Hanafi, D., Hamid, A., & Ronaldo, D. (2024). https://doi.org/10.1063/5.0228793 Development of a Smart Home Control System Utilising Internet of Things-Enabled Energy Harvesting Technology. 2024 IEEE 6th Symposium on Computers and Informatics (ISCI), pp. 43–48.
Simanjuntak, I. U. V., Haidi, J., Putra, R. F. A., & Silalahi, L. M. (2024). Analysis of Maximum Power Point Tracking (MPPT) optimisation strategies for Perturb and Observe (P&O) and Particle Swarm Optimisation (PSO) in solar panels to mitigate the impact of partial shading. International Journal of Electronics and Telecommunications, Volume 70, Issue 4, Pages 1023–1029.
Simanjuntak, I. U. V., Heryanto, H., Dani, A. W., Salamah, K. S., Silalahi, L. M., & Marsuki, M. (2024). Optimisation Analysis of Solar-Powered Street Lighting Using PVSyst Software in a Residential Complex. International Journal of Electronics and Telecommunications, Volume 70, Issue 3, Pages 743–749..
Siregar, J. H., Akbar, R. I., Rayeb, A. El, Anwar, C., Jali, S. K., Bandan, M. I., Lim, P., & Hendrick, A. L. (2025). Gamification of Regional Tourism Engagement: Evaluation and Development of a Web-Based Information System. 2025, 14th International Conference on Information Technology in Asia (CITA), pp. 78–83.
Uddin, N., Hermawan, H., Darajat, T. M., & Marwanto, S. (2023). ‘https://doi.org/10.1109/CITA66455.2025.11198740: Design and Implementation of an IoT-Based Hydroponic Monitoring System’. In Proceedings of the Third Emerging Trends and Technologies in Intelligent Systems (A. Noor, K. Saroha, E. Pricop, A. Sen, & G. Trivedi, eds.; pp. 169–181). Springer Nature Singapore.
Wang, Z. L. (2013). Triboelectric Nanogenerators as a Cutting-Edge Energy Technology for Autonomous Systems and as Dynamic Mechanical and Chemical Sensors. ACS Nano, Volume 7, Issue 11, Pages 9533–9557.
Wang, https://doi.org/10.1021/nn404614z Z. L. (2020). Triboelectric Nanogenerators (TENG)—Leading the Energy and Sensor Revolution. Advanced Energy Materials, Volume 10, Issue 17, Article 2000137. https://doi.org/Wang, Z. L., Chen, J., & Lin, L. (2015). https://doi.org/10.1002/aenm.202000137 Advances in triboelectric nanogenerators as new energy technologies and self-powered sensors. Energy & Environmental Science, Volume 8, Issue 8, Pages 2250–2282.
Widjaja, Y., Junaidi, J., & Solihatin, E. (2025). https://doi.org/10.1039/C5EE01532D Evaluating the Effectiveness of Augmented Reality in Mixed Reality Exhibition Settings: A Multidisciplinary Perspective. Journal of Applied Data Science; Volume 6, Issue 3: September 2025 DOI: 10.47738/Jads.V6i3.690. http://bright-journal.org/Journal/index.php/JADS/article/view/690
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