Ultimate Cell Continuous Combustion

Greater Efficiency / Lower Environmental Impact UC3 – Ultimate Cell ® Continuous Combustion technology is designed to optimize continuous combustion in industrial plants, such as cement plants, municipal solid waste incineration, glass, pulp, steel, great power plants, and other applications. This technology is developed and sold exclusively by UTIS Co. With an estimated patent value of 12M €. The UC3 system is covered globally by a product-liability insurance policy to the value of 5M€ with AIG insurance.

ABOUT THIS TECNOLOGY

A technology that improves combustion efficiency through the injection of specific amounts of hydrogen gas “H2”.

 

Hydrogen offers an effective opportunity to magnify continuous-combustion in industrial applications. The scientific principle of our technology is the central production, and injection of specific, pressurised amounts of hydrogen gas (H2) and oxygen gas (O2). This technology is designed to optimize the industrial continuous-combustion reaction. When operating, the UC3 – Ultimate Cell ® initiates an electrolysis reaction inside its PEM electrolyser (which can range in size). Resulting in the chemical separation of hydrogen (H2) and oxygen (O2) molecules. These H2 and O2 molecules are then injected with controlled pressure, as per system operational needs, into the combustion stream. This pathway results in intensifying the combustion, increasing its efficiency and lowering its CO2 emissions. Utilising from the chemical integration of the hydrogen fuel as a catalyst to hydrocarbon-fuel combustion.

UC3 – Ultimate Cell ® Continuous Combustion technology has overcome all challenges to reduce industrial Capex requirements to a cost-effective level.

HOW DOES IT WORK

Hydrogen and Oxygen without mid-storage

The UC3 system is containerized, pre-assembled system, with standard measures of (6.20m x 3.00m x 3.00m), and an approximate weight of 4.500kg. Internally, it has a PEM electrolysis system (Proton Exchange Membrane electrolysis system), powered by electrical connections (up to 80 kW/h) and supplied with tap water (up to 20 l/h). The entire system is cooled internally by a chiller.

The UC3 system technological method is the production of hydrogen gas (H2) and oxygen gas (O2) by PEM electrolysis production process, without mid-storage accumulation in the system between the production and the point of consumption.

In application, these gases will substantially improve combustion efficiency, reducing the use of fuels, such as (coal, natural gas, biomass, petcoque, RDF, fuel-oil, among others), and reducing the emissions of CO2 into the atmosphere.

UC3 - Ultimate Cell ® Continuous Combustion technology optimizes combustion making it more efficient and with less environmental impact.

Installation

A containerized system with simplified industrial installation.

UC3 system has been designed with consideration in mind for ease of industrial installation. Ensuring a trouble-free induction process. However, the system requires exclusively, electrical connection, communication, water supply, and sewage.

INDUSTRIAL APPLICATIONS

For all types of Industrial Continuous Combustion Applications

Cement
Glass
Pulp and Paper
Biomass power plants
Municipal Solid Waste
Incinerators
Iron and Steel
Power Plants
Other Industries

FUELS

Suited for use with all types of fuels.

Mineral coal
Natural gas
Biomass
Petcoke
Alternative fuels (waste tires, RDF, among others)
Municipal Solid Waste

Standard Features

  • Automatic control
  • Local control via HMI Interface
  • Modbus TCP remote control and point-to-point digital hardware
  • Automatic detection of alarms and communication
  • H2 leakage detection system
  • Adjustable gas production
  • Manual emergency stop
  • Automatic emergency stop
  • Integrated system for production of electrolytes
    from running water
  • Containerized system plug-in that only needs 
    electrical connection as well as potable water.

Technical Specifications

 
SYSTEM UC3_10
Device Type PEM Electrolyser System
H2 Production 1 to 10 m3/h @99.5%
H2 Output Pressure 3-10 barg
O2 Production 0.5 to 5 m3/h
O2 Output Pressure 1-7 barg
Approximate weight 4 ton
Dimensions 6m x 3m x 3m
REQUIREMENTS
Water Supply Up to 40 L/h
Source Potable Water

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