Subsystem GASPROC · estate packet 03_GASPROC
Gas Processor
Post-cell gas processing stage.
Documents · 51
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Controlled Hydrogen Gas Flame
Uses ambient air, ambient air gases, argon, non-combustible gases.
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Deer Creek - Conference Center - Sterling, OH — transcript
Uses ambient air, ambient air gases, argon, non-combustible gases.
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Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
Uses ambient air, ambient air gases, gas processor, non-combustible gases.
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Extraordinary Technology Conference 2015 - Transcription
Uses ambient air, argon, gas processor.
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A Hydrogen Gas Fuel And Management System For An Internal Combustion Engine Utilizing Hydrogen Gas Fuel
Uses ambient air, ambient air gases, gas processor, non-combustible gases.
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Water Fuel Injection System
Uses ambient air, ambient air gases, argon, gas processor, ionized air gases and 2 more.
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Hydrogen Gas Fuel & Management System For An Internal Combustion Engine
Uses ambient air, ambient air gases, gas processor, non-combustible gases.
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 2
Uses ambient air, ambient air gases, argon, non-combustible gases.
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Water fuel injection system
Uses ambient air, ambient air gases, argon, gas processor, ionized air gases and 2 more.
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Hydrogen gas fuel and management system for an internal combustion engine utilizing hydrogen gas fuel
Uses ambient air, ambient air gases, gas processor, non-combustible gases.
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Stanley Allen Meyer
Uses ambient air, gas processing system.
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Water Fuel Injection System - Page 1
Uses ambient air gases, ambient air ionizer, ionized air gases, non-combustible gases.
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Water Fuel Injection System - Page 3
Uses ambient air gases, ambient air ionizer, gas processor, ionized air gases, ionized ambient air gases and 1 more.
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Stan Meyer Machining Template STLs_5-22-2024
Uses gas processor.
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Differential Air-Gas Inlet Control
Uses gas processor.
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Gas Modulator Process
Uses ambient air, ambient air gases, argon, non-combustible gases.
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Water Fuel Injection System
Uses ambient air gases, ambient air ionizer, gas processor, ionized air gases, ionized ambient air gases and 1 more.
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Gas Processor
Uses ambient air gases, gas processor, ionized ambient air gases.
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Water Fuel Injection System
Uses ambient air, ambient air gases, argon, gas processor, ionized air gases and 2 more.
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Magnetic Gas Lattice
Uses argon, argon ion, gas-lattice.
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Process And Apparatus For The Production Of Fuel Gas And The Enhanced Release Of Thermal Energy From Such Gas
Uses ambient air, ambient air gases, argon.
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ENERGY of the FUTURE - R&Z - Vol 2 No. 1, 1990
Uses ambient air, argon, non-combustible gases.
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Gas Mixing Regulator
Uses ambient air, argon, non-combustible gases.
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WFC Exhaust Air Reclaimer
Uses gas processor, nitric oxide.
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Hydrogen Gas Utilization
Uses ambient air, ambient air gases, non-combustible gases.
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Hydrogen Gas Injection System for Internal Combustion Engine
Uses ambient air, argon, non-combustible gases.
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Catalytic Block Assembly
Uses ambient air, ambient air gases, non-combustible gases.
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Process & Apparatus For The Production Of Fuel Gas & The Enhanced Release Of Thermal Energy From Such Gas
Uses ambient air, ambient air gases, argon.
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Fuel-Gases / Quenching Tube
Uses gas processor, non-combustible gases.
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Fuel Gas Processor
Uses gas processor.
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Process and apparatus for the production of fuel gas and the enhanced release of thermal energy from such gas
Uses ambient air, ambient air gases, argon.
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Water Fuel Injector (Taper Resonant Cavity Chamber)
Uses ambient air, non-combustible gases.
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Understanding Resonant Action in the Water Fuel Cell
Uses gas processor.
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Water Fuel Injection System - Page 4
Uses ionized ambient air gases, non-combustible gases.
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WFC Development Objectives
Uses ambient air, wfc gas processor.
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Reclaiming Our Air ... For Healthy Living
Uses ambient air, wfc gas processor.
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Deer Creek - Conference Center - Sterling, OH - Transcription - Part 3
Uses ambient air, non-combustible gases.
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Controlled Hydrogen Gas Flame
Uses ambient air, non-combustible gases.
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Hydrogen Gas Injection for Internal Combustion Engine
Uses ambient air, non-combustible gases.
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Emergency Shut-Down
Uses ambient air, non-combustible gases.
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Gas Processor - 3D STLs
Uses gas processor.
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Hydrogen Air & Non-Combustible Gas Mixing Combustion System
Uses ambient air, non-combustible gases.
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Hydrogen Injection System
Uses ambient air, non-combustible gases.
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Water Fuel Injection System - Page 2
Uses ionized ambient air gases, non-combustible gases.
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ELECTRICAL POLARIZATION GENERATOR
Uses ambient air, ambient air gases.
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Method of oxidizing fuels
Uses argon, nitric oxide.
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Electromagnetic Enhancement
Uses argon, gas-lattice.
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Spin Off Technology
Uses ambient air, non-combustible gases.
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Controlled Process For The Production Of Thermal Energy From Gases And Apparatus Useful Therefore
Uses ambient air, ambient air gases.
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Internal Combustion Engine
Uses ambient air, non-combustible gases.
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Gas Grid System
Uses ambient air, non-combustible gases.
Findings · 36
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Electron Extraction Circuit captures ejected electrons in the Gas Processor / Ambient Air Ionizer
Uses ambient air gases, ambient air ionizer, gas processor.
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Ambient air gases are laser primed and ionized by the Gas Processor
Uses ambient air gases, ambient air ionizer, gas processor.
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Ionized air and non-combustible gases mix with water mist via gas mixing disc
Uses ambient air gases, ambient air ionizer, ionized air gases, non-combustible gases.
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Electron Extraction Circuit ionizes incoming ambient air gas in the Gas Processor
Uses ambient air, ambient air gases, gas processor.
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Gas Processor treats ambient air, not the fuel cell's combustible gas
Uses ambient air, ambient air gases, gas processor.
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Air Gas Processor ionizes ambient air separately from the fuel cell's combustible gas, per US 4,826,581 method
Uses ambient air, ambient air gases, gas processor.
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Air gas processor ionizes ambient air using electron extraction circuit and laser energization
Uses ambient air, ambient air gases, gas processor.
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Non-combustible gases dissolved in water perform the Gas Retarding Process
Uses ambient air, argon, non-combustible gases.
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Additional non-combustible ambient air gases can further reduce hydrogen burn-rate to fossil-fuel levels
Uses ambient air, ambient air gases, non-combustible gases.
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Electron extraction circuit prevents electron flow into resonant circuit
Uses ambient air gases, gas processor.
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LEDs can replace sunlight as the photon-light source for the Gas Processor Process
Uses gas processor.
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Gas Processor assembly consists of gas resonant cavity, electron extraction circuit, and optical lens
Uses gas processor.
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Fuel-Gas Processor acts as Gas Ionization Chamber when VIC (A3) activated
Uses gas processor.
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Argon and Iron ions form covalent gas-lattice bond via Electron Extraction Process
Uses argon, argon ion, gas-lattice.
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Continued Fe+ bonding to Ar+ forms a geometrical Gas-Lattice Structure (Fig 1-8)
Uses argon ion, gas-lattice.
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Stable gas-lattice state occurs when Argon reaches 8 covalent electrons and Iron reaches 14 (M shell)
Uses argon, gas-lattice.
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WFC produces hydrogen, oxygen, and ambient air gases from water dissociation
Uses ambient air, ambient air gases.
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Fuel gas mixing ratio is fixed at 2H:1O plus 17-19% ambient air
Uses ambient air, ambient air gases.
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Paschen's law: breakdown voltage depends on pressure×gap (p·d), U-shaped curve with a minimum
Uses gas processor.
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Combustible gas mixture composed of hydrogen, oxygen, and ambient air with distinct roles
Uses ambient air, ambient air gases.
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Burn rate is modulated by diluting hydrogen with non-combustible gases
Uses ambient air, non-combustible gases.
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Non-combustible gases moderate hydrogen burn rate
Uses argon, non-combustible gases.
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Non-combustible gases modulate hydrogen burn rate down to fossil-fuel-equivalent levels
Uses ambient air, non-combustible gases.
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Air Gas Processor treatment chamber contains laser batteries around a concentric rod/cylinder charging cell
Uses gas processor.
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Burn rate of hydrogen fuel mixture is modulated to match fossil fuel burn rate
Uses ambient air, non-combustible gases.
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Non-combustible gases for the process are derived from ambient air
Uses ambient air, non-combustible gases.
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Ambient air passed through open-air flame produces non-combustible gases
Uses ambient air, non-combustible gases.
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Water pump displaces gases/water under pressure up to 125+ psi
Uses ionized ambient air gases, non-combustible gases.
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Electron Extraction Circuit captures ejected electrons and blocks electron flow
Uses gas processor.
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Alternate fuel sources: laser primed liquid oxygen and liquid hydrogen, or liquefied ambient air with water
Uses ambient air, ambient air gases.
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Ionized ambient air gases and non-combustible gases intermix with water supply before entering the WFC injector plug
Uses ionized ambient air gases, non-combustible gases.
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Dissolved non-combustible air gases act as a 'Gas Modulator' slowing gas ignition
Uses argon, non-combustible gases.
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Hydrogen injector system recycles cooled exhaust gases into incoming ambient air to sustain gas modulator/ignition process
Uses ambient air, ambient air gases.
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Ambient air gas dielectric breakdown occurs around 17,000 volts across a one-inch gap
Uses ambient air, ambient air gases.
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Fluid displaced under static pressure up to and beyond 125 psi
Uses ionized ambient air gases, non-combustible gases.
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Engine supplies non-combustible exhaust gases on demand due to ambient air combustion
Uses ambient air, non-combustible gases.
Photographs · 2
From the bench · 50
- established · 0.90 Repetitive voltage pulse train incrementally elongates gas ions during electron removal
- established · 0.90 Blocking diodes and gated pulse trains synchronize Electron Extraction with Hydrogen Fracturing
- established · 0.90 Blocking diode and resistive wire manage electron flow and prevent voltage leakage
- established · 0.90 Collected gas mixture subjected to polar pulsating field to induce electron orbital resonance
- established · 0.90 Electron extraction circuit draws liberated electrons to an electrical load via positive potential
- established · 0.90 Ionized gas atoms exposed to electromagnetic wave energy then electron extraction destabilizes ion nucleus
- established · 0.90 Electron extractor grid circuit restricts electron replacement in the gas resonant cavity
- established · 0.90 Air Gas Processor treatment chamber contains laser batteries around a concentric rod/cylinder charging cell
- established · 0.90 Electron extractor circuit routes liberated electrons to an electrical load as usable energy
- established · 0.90 Electron extraction prevents spark-ignition by avoiding electron build-up in the gas resonant cavity
- established · 0.90 Air Gas Processor ionizes ambient air separately from the fuel cell's combustible gas, per US 4,826,581 method
- established · 0.90 Air gas processor ionizes ambient air using electron extraction circuit and laser energization
- established · 0.90 Resistive components and isolated ground prevent electron replacement during pulsing
- established · 0.90 Ambient air gases are laser primed and ionized by the Gas Processor
- established · 0.90 Electron Extraction Circuit functions like the VIC but adds an amp-consuming device
- established · 0.90 Laser energy is injected into the Gas Resonant Cavity via an optical lens to further destabilize gas atoms
- established · 0.90 Electron Extraction Circuit captures ejected electrons in the Gas Processor / Ambient Air Ionizer
- established · 0.90 Dislodged electrons are consumed as heat via an Amp Consuming Device
- established · 0.90 Electron Extraction Circuit ionizes ambient air gases via opposing high-voltage fields
- established · 0.90 Electron extraction circuit synchronized with resonant cavity pulsing via point 'A'