Drinking Water Treatment Control System with Reverse Osmosis Technology Based on Smart Relay Schneider
Sistem Kontrol Pengolahan Air dengan Teknologi Reverse Osmosis Berbasis Smart Relay Schneider
DOI:
https://doi.org/10.21070/ups.6810Keywords:
Reverse Osmosis, Ph Sensor, TDS sensor, Smart RelayAbstract
This research develops a Reverse Osmosis (RO) technology-based drinking water treatment control system using Schneider's Smart Relay to improve efficiency and safety. The system is equipped with pH and TDS sensors to monitor water quality automatically. Tests on four water samples showed average pH results of 7.67 (input), 7.80 (reject), and 7.86 (output), with average TDS of 136 ppm (input), 298 ppm (reject), and 33.5 ppm (output). Testing the control system in manual and automatic modes shows that the water pump functions according to water quality standards and turns off when the parameters do not match, with a buzzer indicator that lights up. The results of this study indicate that this system can improve efficiency, save energy, and facilitate water quality control, making it suitable for application in households and water treatment industries.
Downloads
References
J. Prayitno, “Aspek Mikrobiologi dalam Pengolahan Air Siap Minum Menggunakan Membran Reverse Osmosis Microbiological Aspect of Drinking Water Production Using Reverse Osmosis Membrane,” vol. 12, no. 2, pp. 175–184, 2019.
“Rancang_Bangun_Alat_Filtrasi_Penyedia_Air_Siap_Min”.
“Automatization Of Ultrafiltration Pump Control And Reverse Osmosis High Pressure Pump On Ready To Drink Water Unit Using Schneider Zelio Smart Relay.” [Online]. Available: https://www.antaranews.com/berita/19604
F. Zulfiryansyah et al., “Air Quality Monitoring System using Unmanned Aerial Vehicle (UAV) Quadcopter Type Sistem Monitoring Kualitas Udara menggunakan Unmanned Aerial Vehicle (UAV) Jenis Quadcopter,” 2022.
Y. T. Pratama, J. Jamaaluddin, S. D. Ayuni, and I. Anshory, “SNESTIK Seminar Nasional Teknik Elektro, Sistem Informasi, dan Teknik Informatika Monitoring Oil Water Separator on Ship Based on Microcontroller Arduino mega 2560 [Pemantauan Pemisah Air dan Minyak pada Kapal Berbasis Mikrokontroler Arduino mega 2560]”, doi: 10.31284/p.snestik.2024.5907.
Ma. Shidiq, “Perancangan Otomasi Sistem Pengolahan Air Payau Menjadi Air Minum Dengan Prinsip Reverse Osmosis Berbasis Microcontroller.”
R. Ramdani et al., “Perancangan Panel Motor Control Center Reverse Osmosis Water System Design of Motor Control Center Panel Reverse Osmosis Water System.”
F. Zulfiryansyah et al., “Air Quality Monitoring System using Unmanned Aerial Vehicle (UAV) Quadcopter Type Sistem Monitoring Kualitas Udara menggunakan Unmanned Aerial Vehicle (UAV) Jenis Quadcopter,” 2022.
R. Ramdani et al., “Perancangan Panel Motor Control Center Reverse Osmosis Water System Design of Motor Control Center Panel Reverse Osmosis Water System.”
P. SIAHAAN, N. SINAGA, and J. WINDARTA, “Model Proses Pengolahan Air Laut Metode Reverse Osmosis memanfaatkan Sumber Energi Sinar Surya,” ELKOMIKA: Jurnal Teknik Energi Elektrik, Teknik Telekomunikasi, & Teknik Elektronika, vol. 10, no. 3, p. 609, Jul. 2022, doi: 10.26760/elkomika.v10i3.609.
P. Studi, T. Elektro, F. Sains, and D. Teknologi, “Hot Water Looping System to Control Temperature of Drug Production Based Arduino Sistem Looping Hot Water Untuk Mengatur Suhu Ruang Produksi Obat Berbasis Arduino I Dewa Made Juniarta Putra, Indah Sulistiyowati, Syamsudduha Syahrorini,” 2022.
“WhatsApp Image 2024-11-17 at 13.04.11_ad60da53”.
Downloads
Additional Files
Posted
License
Copyright (c) 2024 UMSIDA Preprints Server
This work is licensed under a Creative Commons Attribution 4.0 International License.