TELKOMNIKA Telecommunication, Computing, Electronics and Control
Design and implementation of fast and highly precise water magnetizer
Dublin Core
Title
TELKOMNIKA Telecommunication, Computing, Electronics and Control
Design and implementation of fast and highly precise water magnetizer
Design and implementation of fast and highly precise water magnetizer
Subject
Embedded system, Magnetized water applications, pH level, Soft PID controller, Water magnetization, Water parameters
Description
In the last decades, researchers have widely discussed the effects of
magnetized water on many biological and industrial aspects; many studies have also examined the effects of magnetization on water physical and chemical properties and shown a slight increase in the water pH level for the drinking water after magnetizations. This article presents a new practical model to magnetize the tap drinking water with permanent, and adjustable magnets to ensure fast and precise results. A new smart system is designed and implemented to calculate the required magnetic flux density, and the exposure time based on the difference in the measured pH level of the water at the inlet and outlet pipes. Three permanent magnets, with magnetic flux densities of 500, 1000, and 1500 Gauss (G), are installed at different pipe routes, with
added to a variable magnet on the main water outlet. The results show a
promising prototype that is not only processing the water efficiently but also supply much data about the water properties, which can be led to more findings in this field.
magnetized water on many biological and industrial aspects; many studies have also examined the effects of magnetization on water physical and chemical properties and shown a slight increase in the water pH level for the drinking water after magnetizations. This article presents a new practical model to magnetize the tap drinking water with permanent, and adjustable magnets to ensure fast and precise results. A new smart system is designed and implemented to calculate the required magnetic flux density, and the exposure time based on the difference in the measured pH level of the water at the inlet and outlet pipes. Three permanent magnets, with magnetic flux densities of 500, 1000, and 1500 Gauss (G), are installed at different pipe routes, with
added to a variable magnet on the main water outlet. The results show a
promising prototype that is not only processing the water efficiently but also supply much data about the water properties, which can be led to more findings in this field.
Creator
Mohammed A. Mohammed, Ahmed J. Abid
Source
DOI: 10.12928/TELKOMNIKA.v18i6.15916
Publisher
Universitas Ahmad Dahlan
Date
October 2020
Contributor
Sri Wahyuni
Rights
ISSN: 1693-6930
Relation
http://journal.uad.ac.id/index.php/TELKOMNIKA
Format
PDF
Language
English
Type
Text
Coverage
TELKOMNIKA Telecommunication, Computing, Electronics and Control
Files
Collection
Citation
Mohammed A. Mohammed, Ahmed J. Abid, “TELKOMNIKA Telecommunication, Computing, Electronics and Control
Design and implementation of fast and highly precise water magnetizer,” Repository Horizon University Indonesia, accessed April 4, 2025, https://repository.horizon.ac.id/items/show/4167.
Design and implementation of fast and highly precise water magnetizer,” Repository Horizon University Indonesia, accessed April 4, 2025, https://repository.horizon.ac.id/items/show/4167.