The Electromagnetic Memory of Water at Kinetic Condition

  • Redouane Mghaiouini Department of chemistry, physical chemistry laboratory applied materials, Faculty of Sciences-Ben M’sik, Hassan II University, Casablanca,Morocco
  • Toufik Garmim Department of Physic condensed Matter Laboratory, Faculty of Sciences, Chouaib Doukkali University, El-jadida, Morocco
  • Aniss Elaoud University of Carthage, Laboratory of Environmental Sciences and Technologies, Higher Institute of Sciences and Technology of Environment, Tunisia
  • Mahmoud Hozayn Agronomy Dept., Agric. and Biol. Div., National Research Centre, El-Bohoth St., 12622 Dokki, Cairo, Egypt
  • M E Belghiti Laboratory of Nernest Technology, 163 Willington Street, Sherbrook, J1H5C Quebec, Canada
  • Eric Valette Planet Horizons Technologies Ecoparc de Daval A9 3960 Sierre, Switzerland
  • Charles Henri Faure Planet Horizons Technologies Ecoparc de Daval A9 3960 Sierre, Switzerland
  • Mohamade Monkade Department of Physic condensed Matter Laboratory, Faculty of Sciences, Chouaib Doukkali University, El-jadida, Morocco
  • Abdeslam El Bouari Department of chemistry, physical chemistry laboratory applied materials, Faculty of Sciences-Ben M’sik, Hassan II University, Casablanca,Morocco
Keywords: Electromagnetic treatment, magnetic water, aqua 4D, magnetization time, physicochemical parameters, Memory

Abstract

This work presents an experimental study to investigate the effect of the electromagnetic on the tap water properties of water. The water flows through a closed loop with a speed of 0.18m/s, while the pH, TDS, and hardness represent its properties. For magnetized water using the aqua 4D device. the conductivity, TDS, salinity, temperature, absorbance at 631 nm and the turbidity of magnetized water increase respectively by 3.66%, 4%, 4.4%, 0.76%, 21.64%, and 62.6% compared to those of tap water, while density, resistivity, transmission and pH decrease by 2%, 4.1%, 1.32%, and 3.32% respectively
Published
2021-10-31