Abstract:
A system for producing super-oxygenated, tuned and structured water that includes a first system configured to receive water from a source and output super-oxygenated and structured water and a second system in fluid communication with the first system and configured to tune the super-oxygenated and structured water from the first system and output super-oxygenated, tuned and structured water.
Abstract:
The present invention discloses a water treatment apparatus for treating a water flowing in a water pipe, the apparatus comprises an inductive coil, which is sleeved onto said water pipe, and a voltage signal unit, which is electrically connected to the inductive coil for forming a voltage signal of a predetermined frequency to the inductive coil so as to generate an electromagnetic field to treat the water.
Abstract:
The present invention relates to a method of generating hydrogen or oxygen from an aqueous solution within a flow cell by applying a high frequency AC signal to the flow cell. The present invention further relates to an apparatus for generating hydrogen or oxygen from an aqueous solution, and a method of generating hydrogen peroxide in an aqueous solution.
Abstract:
A method and system of generating a ringing magnetic pulse for the treatment of flowing liquids include's a coil and an SCR coupled in series with the coil to form a first loop. An electronic switch is coupled in series with the coil to form a second loop. An AC voltage signal is applied to the coil having first and second half-cycles. Current is conducted through the first loop during the first half-cycle when the SCR is forward biased while preventing current from conducting through the second loop. Current is conducted through the second loop during a portion of the second half-cycle while current is prevented from conducting through the first loop. Current is interrupted through the second loop during another portion of the second half-cycle upon the coil current reaching a predetermined value to interrupt current flowing through the coil, thereby generating a ringing magnetic pulse.
Abstract:
Multi-directional currents are generated in a medium by cyclically reversing the direction of a conventional current applied to at least one of at least two electrodes so that an electromotive force (EMF) pulse travels from side of the electrode to the other, changing the direction of current in the medium. The multi-directional currents may be used to accelerate electrolytic processes such as generation of hydrogen by water electrolysis, to sterilize water for drinking, to supply charging current to a battery or capacitor, including a capacitive thrust module, in a way that extends the life and/or improves the performance of the battery or capacitor, to increase the range of an electromagnetic projectile launcher, and to increase the light output of a cold cathode light tube, to name just a few of the potential applications for the multi-directional currents.
Abstract:
This invention is to provide a method of efficiently removing scales adhered to a pipe and the like. A descaled object with scales deposited thereto is covered with a solvent at least on its scaled surface. A magnetic field is generated by supply a frequency signal to a coil, and the descaled object and the solvent are disposed within this magnetic field. Signals having frequencies that are set beforehand at every scale are supplied to the coils as the frequency signals. The frequencies of the frequency signals supplied to the coils and which are set beforehand are frequencies required when an electric current flows through the solvent which covers the scales.
Abstract:
Multi-directional currents are generated in a medium by cyclically reversing the direction of a conventional current applied to at least one of at least two electrodes so that an electromotive force (EMF) pulse travels from side of the electrode to the other, changing the direction of current in the medium. The multi-directional currents may be used to accelerate electrolytic processes such as generation of hydrogen by water electrolysis, to sterilize water for drinking, to supply charging current to a battery or capacitor, including a capacitive thrust module, in a way that extends the life and/or improves the performance of the battery or capacitor, to increase the range of an electromagnetic projectile launcher, and to increase the light output of a cold cathode light tube, to name just a few of the potential applications for the multi-directional currents.
Abstract:
A method and apparatus for contaminant separation utilizes an interleaved array of oppositely charged electrode plates for fluid treatment. Spacing between the parallel electrode plates is graduated so that the volume of the cavities between the opposing electrodes provides varying levels of treatment of a broad range of contaminants from a variety of fluid columns. A fluid flow path extending substantially orthogonal to the direction of the electrical field established between opposing electrode plates provides a feed stream with exposure to the varying levels of electrical charges between the electrode plates. The method and apparatus provides an effective means of contaminant separation by a device having a small footprint and requiring low amounts of electrical energy.
Abstract:
A method and apparatus for polarising water has a magnetic source (6) comprising one or more electromagnetic coils (6a, 6b) encircling a pipe (2). A control system (7) responsive to polarisation levels detected by sensors (8, 9) upstream and downstream of the magnetic source (6) is operable to adjust the magnetic field applied to the water and/or the flow rate of the water through the magnetic field to achieve a desired final polarisation level. The polarised water may be used in a beverage dispenser for mixing with a syrup or concentrate to produce a selected beverage.
Abstract:
A method and apparatus for the treatment of fluid columns uses an air-cooled electromagnetic field generator to prevent the deposition and accumulation of contaminants within conduits and on equipment utilized in the transportation, delivery and processing of the fluid columns. The instant invention may be utilized to accelerate the separation of oil and water and increase the efficiency of such separation apparatus.