Perancangan Alat Pengolahan Sampah Organik Berbasis Internet of Things (IoT) untuk Produksi Gas Metana dan Pupuk Kompos
DOI:
https://doi.org/10.37253/telcomatics.v11i1.11046Abstract
This paper presents the design of an Internet of Things (IoT)-based organic waste processing device to produce methane gas and compost. The system uses a large sealed plastic container fitted with a biogas nanometer gauge on the lid and an ESP32 microcontroller for data acquisition. A capacitive soil moisture sensor measures the moisture of decomposed organic material, while an MQ-4 gas sensor monitors methane concentration inside a separate 5-liter plastic storage tank. Organic waste is fermented naturally, and gas is transferred manually through establishing valves while the pressure reaches a described threshold. All sensor information are dispatched to the Blynk cellular software for real-time tracking and visualization. This low-price answer gives a realistic technique to changing family natural waste into renewable power and natural fertilizer.
Downloads
References
[1] N. Rahman, R. Purnamasari, and Y. Eliskar, “Rancang Bangun Alat Otomatisasi Pengomposan dari Sampah Organik Berbasis Internet of Things,” Jurnal Teknologi Dan Sistem Informasi Bisnis, vol. 6, no. 4, pp. 674–682, Oct. 2024, doi: 10.47233/jteksis.v6i4.1505.
[2] Á. Canales-Gutiérrez et al., “Design of an anaerobic biodigester model as an alternative for methane generation,” Journal of the Selva Andina Biosphere, vol. 9, no. 2, pp. 81–91, Nov. 2021, doi: 10.36610/j.jsab.2021.090200081x.
[3] K. Hermanto, A. Nugroho Fahriza, and M. L. Hakim, “Dekomposisi Limbah Organik Menjadi Gas Metana,” e-Proceeding of Engineering, Feb. 2024.
[4] M. H. Prasojo, R. Purnamasari, and Y. Eliskar, “Perancangan Alat Pemrosesan Sampah Organik Berbasis Internet Of Things (IoT) Untuk Pembuatan Kompos,” e-Proceeding of Engineering, 2024.
[5] Y. Z. Jacoeb, R. Yasirandi, and M. M. Qusyairi, “Implementasi Teknologi dan Proses Produksi Biogas Sebagai Pengendalian Limbah di Area RRA,” e-Proceeding of Engineering, 2025.
[6] G. P. Artiani and I. Handayasari, “OPTIMALISASI PENGOLAHAN SAMPAH ORGANIK DENGAN TEKNOLOGI BIODIGESTER SEBAGAI UPAYA KONSERVASI LINGKUNGAN,” Jurnal Kajian Ilmu dan Teknologi, vol. 6, no. 2, p. 95, 2017.
[7] N. H Amandasari, S. Ainun, and H. Etih, “Studi Komparasi Sistem Pengelolaan Sampah dengan Biodigester (Kelurahan Cibangkong dan Kelurahan Cilengkrang),” Jurnal Rekayasa Lingkungan, 2016.
[8] P. Lestari et al., “Penerapan Biodigester Untuk Pengolahan Air Limbah Industri Tapioka Berbasis Pemberdayaan Masyarakat Berkelanjutan di Rumah Produksi Pangan Selopamioro, Yogyakarta,” Jurnal Pusat Inovasi Masyarakat, vol. 5, no. 1, pp. 43–60, 2023.
[9] D. H. Mayasari, L. M. Riftanto, L. N. Aini, and M. R. Ariyanto, “Jurnal Pusat Inovasi Masyarakat,” 2010.
[10] D. F. P. Surya, F. Fedora, A. Akbar, and K. Akli, “Rancang Bangun Biodigester Untuk Menghasilkan Biogas Berbahan Baku Limbah Sayur Kol dengan Campuran Rumen Sapi dan EM4,” Jurnal Publikasi Rumpun Ilmu Teknik, 2025.
Published
Issue
Section
License
Copyright (c) 2026 Telcomatics

This work is licensed under a Creative Commons Attribution 4.0 International License.





