Abstract:
A method for physical treatment of liquid and gaseous media (15) is provided by means of electromagnetic emission with a variable frequency of emission which is in the form of electromagnetic pulses and is emitted into the flowing medium (15) from a space inside the medium (15). The electromagnetic emission with the specific frequency is emitted into the medium (15) through an interface made of a silicon-based material and passes through the medium. A difference of the energy of the generated electromagnetic emission and the energy of the electromagnetic emission passed through the medium (15) is determined, and based on the determined difference of the said energies, the specific frequency of the generated electromagnetic emission is adjusted to increase the difference of the said energies and to achieve in principle the maximum difference of the energies, thus achieving synchronisation of the frequency of the electromagnetic emission with a precession frequency of protons in the medium (15) and absorption of the energy of the electromagnetic emission by the medium (15). Furthermore, a device for the implementation of the aforementioned method is provided.
Abstract:
A system and a method for prevention of adhesion of marine organisms to a substrate contacted with seawater are provided. The system comprises a generator (120, 220) for producing an electrical signal (150) operating in desirable frequencies in which the marine organisms can be chased or killed, said generator (120, 220) having at least two output connectors (122, 124, 222, 224), means for oscillating and propagating the electrical signal (150) along a surface of the substrate, said means being adapted to make electrical connection with the at least two output connectors (122, 124, 222, 224) of the generator (120, 220) and being submerged in seawater, and an electric power source (110, 210) connected to the generator (122, 124, 222, 224) for applying a selected voltage to the generator (122, 124, 222, 224) to produce the electrical signal (150).
Abstract:
The invention relates to a fluid filter system which can be used to separate the different substances forming said fluid. The invention is characterized in that it comprises the application of a uniform magnetic or electric field in order to produce a Stark effect and the subsequent application of an electric field oscillating in resonance with the energy separation caused by the Stark effect or by a magnetic field oscillating in resonance with the energy separation caused by the Zeeman effect. The molecules involved in the resonation are captured in the filter and subsequently removed using a suction system.
Abstract:
The present invention includes a method and device for generating hydrogen and oxygen from water using the heterodyning or impacting of two radio frequencies, one higher than the other with one of the radio frequencies being in the ultra high radio frequency bandwidth (UHF) and the other being in the very high radio frequency bandwidth (VHF), against the surface of water in a shielded enclosure. It involves a clean, odorless, and silent process that is environmentally friendly, with no residue, fumes, or other unwanted byproducts. Optionally, water filtering means, water heating means, saltwater, and/or fresh water can be used. A water spray can also be used to increase the water surface area available for fracture by the radio frequency disturbance.
Abstract:
A method and apparatus are disclosed for treating a liquid with electromagnetic wave energy, particularly in the radio frequency range, wherein the characteristics of the wave energy are selected and controlled to produce optimally beneficial effects with respect to specific substances present in the liquid. The liquid to be treated is analyzed to identify its components, and an energy absorption value for a target component is determined. Electromagnetic wave signals, having characteristics selected to achieve a desired effect on the target component, are generated using a wave signal generator and then directed into the liquid using a wave signal emitter. The wave signal emitter may be in the form of an immersion probe or a transmitting antenna.
Abstract:
A liquid treatment device comprising: two antennae; an enclosure for holding a liquid including a solvent and a solute; a generator operatively connected to the two antennae to generate an oscillating voltage in each antenna, wherein each voltage is out of phase with the other to create an oscillating electric-field; and the liquid in the enclosure being subjected to the electric-field in the presence of a magnetic field to change the chemical and/or physical properties of the solute, without the liquid contacting the two antennae.
Abstract:
Water in a recirculating hot potable water system 110 is treated by power pulses, by placing a coil 18 near the water and providing to the coil 18 an AC power source 12. The power source 12 is connected in a first loop with the coil 18 and a switch 20 during at least a portion of a first half-cycle of the AC power source period. The switch 20 is opened during a second half-cycle, during which a subroutine of producing at least a first ringing pulse in the coil assembly is performed. Preferably, the water is treated chemically as well by the power pulses. An improved water system has a water heater 112 and a circulation line 116 providing a flow loop. There is a tap 124 for diverting circulating water through an external loop and there is a pulsed power water treatment apparatus 122 mounted on the circulation line. A chemical treatment apparatus 126 is periodically connected to the tap.
Abstract:
Systems and methods for extracorporeal processing of blood or other body fluid for the treatment of conditions, such as sepsis, autoimmune disease, or toxemia related to kidney failure, liver failure, or drug overdose are provided. In an extracorporeal treatment system, a fraction of a body fluid is passed into a treatment fluid, at least a portion of which is then passed through a sorbent suspension reactor for treatment by a sorbent suspension. The treatment fluid circuit can be maintained at a fixed volume, which enables accurate fluid balance between the patient and the extracorporeal circuit. Some or all of the treatment fluid, optionally also containing nutrients and/or therapeutic agents, is returned to the patient. In a peritoneal dialysis system, dialysate is passed into a patient's peritoneal cavity, recovered from the cavity, passed through a sorbent suspension reactor in accordance with the invention, and returned to the cavity.
Abstract:
Systems and methods for extracorporeal processing of blood or other body fluid for the treatment of conditions, such as sepsis, autoimmune disease, or toxemia related to kidney failure, liver failure, or drug overdose are provided. In an extracorporeal treatment system, a fraction of a body fluid is passed into a treatment fluid, at least a portion of which is then passed through a sorbent suspension reactor for treatment by a sorbent suspension. The treatment fluid circuit can be maintained at a fixed volume, which enables accurate fluid balance between the patient and the extracorporeal circuit. Some or all of the treatment fluid, optionally also containing nutrients and/or therapeutic agents, is returned to the patient. In a peritoneal dialysis system, dialysate is passed into a patient's peritoneal cavity, recovered from the cavity, passed through a sorbent suspension reactor in accordance with the invention, and returned to the cavity.
Abstract:
The present invention includes an improved electrostatic device for energizing fluids, in particular water based fluids, which will be used to provide a benefit to living organisms, machinery, processes and substances. The improved device of the invention will include an electrostatic voltage spike signal generator, two or more radio frequency signal generators, one or more antennas, optional one or more signal boosters and a fluid conduit. When fluid is treated with the improved device of the invention, the fluid will become energized and can be used to provide significant benefits in applications such as milk production, flower production, fruit production, crop production, vegetable production, shrimp production, egg production, meat production, gasoline combustion, waste fluid combustion, scale removal, water purification, fluid tracking, fluid sterilization and more.