Pemantauan Limbah Amonia Menggunakan Sistem IoT Berbasis Android

  • Raden Ayu Janica Rahmaditha Indriaswari Universitas Teknologi Yogyakarta
  • Rodhiyah Mardhiyyah Universitas Teknologi Yogyakarta

Abstract

The development of the urea fertilizer industry in increasing fertilizer production has had negative impacts, especially related to the increase in ammonia waste which can endanger the health of local communities. To overcome this, a warning system was developed that can monitor and manage the spread of ammonia in the environment. This system uses data analysis methods and sensor technology to detect dangerous ammonia levels and provide real-time information to the public. With a warning system in place, companies can take immediate action to control waste, prevent further negative impacts, and support sustainability efforts. Apart from that, this system also increases public awareness of the importance of maintaining air quality and health, as well as encouraging company transparency regarding the resulting environmental impacts. It is also hoped that the community's active role in monitoring can strengthen relations between the company and local residents.

References

Candra Fauzi, E., Wahiddin, D., & Sulistya Kusumaningrum, D. (2021). Monitoring Kadar Karbon Monoksida Dalam Mobil Dengan Sensor Mq-9 Bebrbasis Arduino. Ii(1).
Dengen Heliza Rahmania Hatta, N. (2009). Program Studi I Lmu Komputer Universitas Mulaw Arman Perancangan Sistem Informasi Terpadu Pemerintah Daerah Kabupaten Paser. In Jurnal I Nformatika Mulaw Arman (Vol. 4, Issue 1).
Dwi Firmansyah, D., Khambali, & Koerniasari. (2020). Analisis Risiko Pajanan Gas Ammonia (Nh3) Pada Pekerja Pabrik Ammonia I Pt. Petrokimia Gresik (Vol. 18).
Istiana, W., Cahyono, R. P., & Komputer, T. (2022). Perancangan Sistem Monitoring Dan Kontrol Daya Berbasis Iot. In Portaldata.Org (Vol. 2, Issue 6).
Kevin, Utomo, D., & Rumaksari, A. N. (2023). Perancangan Sistem Pemantau Ruang Server Secara Realtime Dan Otomatis. Techné Jurnal Ilmiah Elektroteknika , 22, 1–14.
Ma, R., Li, K., Guo, Y., Zhang, B., Zhao, X., Linder, S., Guan, C. H., Chen, G., Gan, Y., & Meng, J. (2021). Mitigation Potential Of Global Ammonia Emissions And Related Health Impacts In The Trade Network. Nature Communications, 12(1). Https://Doi.Org/10.1038/S41467-021-25854-3
Made, I., Graha, S., Widyasari, N. L., Studi, P., Lingkungan, T., Teknik, F., & Denpasar, U. M. (2023). Monitoring Uji Kualitas Udara Dan Tingkat Kebisingan Di Sman 1 Semarapura Kabupaten Klungkung.
Prakarsa, F. B., & Edidas. (2022). Rancang Bangun Alat Sortir Panen Ikan Lele Berbasis Arduino Uno R3. Jurnal Pendidikan Tambusai , 6, 1–17.
Rianto, A. (2020). Perancangan Alat Deteksi Dini Dan Monitoring Polusi Udara Berbasis Internet Of Things (Iot).
Rosa, A. A., Simon, B. A., & Lieanto, K. S. (2020). Sistem Pendeteksi Pencemar Udara Portabel Menggunakan Sensor Mq-7 Dan Mq-135. Ultima Computing, Xii(1).
Ryer-Powder, J. E. (N.D.). Health Effects Of Ammonia.
Published
2024-11-16
Abstract viewed = 0 times
PDF downloaded = 0 times