cc hod fuel cell power production system abstract (1)
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Catalytic Carbon – Hydrogen on Demand Fuel Cell Power Production System
RETECH Engineering, Inc. (REI) and US Hydrogen and Power (USHP) are aggressively pursuing an unprecedented
opportunity to capitalize on patented processes to produce low cost, high quality hydrogen ‘on demand’ utilizing
proprietary materials and processes. REI and USHP have conducted and documented empirical Proof of Concept
(POC) experimentation, backed by engineering calculations, design and analysis that demonstrate successful, low
cost, safe, reliable and duplicable hydrogen production. REI and USHP have developed prototype production models
and have proven and document performance results in the lab through repeated bench testing.
Catalytic Carbon Hydrogen on Demand (CC-HOD) systems work well with any type of water, including waste water
and salt water. When combined with fuel cells to recombine the hydrogen with oxygen to produce power, CC-HOD
Fuel Cell Power Systems produce distilled water as a by-product.
A strong commitment to develop renewable energy and devices designed for hydrogen fuel and fuel cells as an
application enable us to become a leading provider of hydrogen on demand fuel cell power production systems
throughout the world. Our success will be measured by quantifiable metrics and by meeting production and
application deployment objectives as follows:
Keys to Success:
Proof of ability to produce hydrogen at less than 50% of any known production standard, in any volume
Proof of Concept documented in to be Published White Paper
Completed Development of Prototype Production Units
Development of “Working Model” Pilot Prototype Production Units
Reliable, simple Monitoring and Control System
Successful Development of Prototype Application Device (scalable fuel cell system for power production)
Utilizing licensed technology with patent pending application designs including a unique production sampling and
control system, USH&P endeavors to become a world leader in hydrogen production and development of hydrogen
fuel applications that produce any volume of cost competitive hydrogen on an on-demand basis.
We are currently seeking funding to develop pilot application and production units. We are utilizing CD-adapco
multi-physics software to optimize the design of a continuous flow mini-reactor as opposed to the current batch
processing technique we have already proven. The projected cost to finalize the optimized continuous flow design
and develop a scalable fuel cell application (i.e., 10 kW to 100 kW) in a pilot program is approximately $900,000 USD
including engineering, project management, materials, assembly and testing.