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Welcome to Boulder City Nevada

Welcome to Boulder City Nevada. EDSGN 100 Hydrogen Fuel City Group 5 Stephen Ulisny, Neil Arias, Curtis Covelli , Sebastian Reigber. What we’ll be talking about…. Design Task Background Specs Production Transportation Source of Power Storage Best Solution Flow Chart Prototype

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Welcome to Boulder City Nevada

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  1. Welcome toBoulder City Nevada EDSGN 100 Hydrogen Fuel City Group 5 Stephen Ulisny, Neil Arias, Curtis Covelli, Sebastian Reigber

  2. What we’ll be talking about… • Design Task • Background • Specs • Production • Transportation • Source of Power • Storage • Best Solution • Flow Chart • Prototype • Cost Analysis • Conclusion • Questions

  3. Our Mission • Standardized fueling station for a H2 city • Supply the transportation network with H2 fuel using renewable resources

  4. Where we’ll be stationed… • Boulder City, Nevada–25 miles SE of Las Vegas • Located about 6 miles from the Hoover Dam and 5 miles from the Boulder City Landfill • Population: 16,840 • Requires about 9,000kg of H2 a day to meet transport needs

  5. In a perfect world… • Safe • Sustainable • 350 BAR and 700 BAR for passenger and commercial vehicles. • HCNG containing up to 30% hydrogen at 250 BAR • 2 stations to meet the city needs with 6 pumps at each station

  6. How will we produce it? • Electrolysis • Water • Large energy cost • Urine • Urine breaks down • Microbial • Not developed • Molten Carbonate Fuel Cell • Breaks Down • Steam Biomethane • Costly

  7. How to get it to the station • Trucks • Constant Refill • Pipes • Costly • Produced on Site • Need of space • Produced at House • Not realistic

  8. Storage/Distribution • Liquid • Expensive • Gas • Storage • Produced Right Before Use • Cant keep up with demand

  9. Source of Power • Solar • Lack of Space • Wind • Lack of Space • Coal • Not Renewable • Nuclear • Expensive • Hydroelectric • Not Enough Power • Methane Waste • Abundance of CH4

  10. Our best options… • Production • Steam Methane Reforming • Transportation • Trucks-H2 • Piping-CH4 • Storage • Liquid • Source of Power • Methane

  11. CO2 Boulder City Landfill Flow Chart to station CH4 STEAM METHANE REFORMER H2 Liquefier H2 FUEL STEAM BOILER Lake Mead WATER LIQUID H2 TRUCKING PUMPING STATION CH4

  12. LIQUID H2 STORAGE CHILLER VAPORISER TRUCKED H2 COOLING BLOCK H2 GAS 700BAR COMPRESSOR 350 BAR COMPRESSOR PUMP 350 BAR H2 STORAGE BC Landfill HCNG BLENDER CNG COMPRESSOR CH4 CNG STORAGE

  13. What we envision

  14. The initial Cost… • Steam Methane Reformer -> $20,000,000 + • Pipelines -> $10,000,000 + • Cost of Stations -> $17,324,000 • Total Cost of System -> $57,324,000

  15. Profit Per Day • Sell 350 and 700 bar at 4$ a kg ->$30,400 per day • Sell HCNG at 5$ a kg -> $37,500 per day • Cost to pump -> $40,000 per day • 50 employees to run system -> $7,000 per day • Nitrogen -> $5,000 per day • Methane -> $2,000 per day • Total Profit -> $13,900 per day • Yearly Profit -> $5,073,500 a year

  16. Paving the way for the future • The system will be paid off in a little over 11 years • This system is replica table around most cities that have landfills in the vicinity • We could sell hydrogen for other city needs

  17. Questions?

  18. Resources • Nevada Picture: • http://www.flickr.com/photos/travelnevada/3038267667/ • http://www.ecosalon.com/wp-content/uploads/2010/01/Apex-Nevada.jpg • http://www.trucktanks.com/img/fuel/ft010-01.jpg • Information • http://www.airproducts.com/Products/fastfacts/charts.htm • http://www.getenergysmart.org/files/hydrogeneducation/6hydrogenproductionsteammethanereforming.pdf

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