Coal To Liquid is not new technology however has always be a very large volume toxic waste processing method. Each ton of coal will yield 65 Gallons of High grade Naphthalene/Kerosene or stated as Jet fuel, True Name is; "Coal Tar Oil". From the waste material we generate another 74 Gallons of our Bio-Fuel/ton. Our processing more than doubles the fuel output of older systems.
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Investment Opportunity Coming soon! July 15th 2023 presentation or development review!
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Fuel Refinery: 50,000 Barrels per day.
Electricity Generation: 1200 MW/h Sewage Treatment: 16,100 M3/day Solid /Waste Processing: 3000 TPD Industrial Water: 2,000,000 Gallons/day Bottled Oxy-Water: 250,000 Liters/d Carbon Capture & Credit: 15,000 TPD Processing any type of water is considered, and for each type we will develop specific systems based on constituents and volumes required.
Desalination systems are independent from other systems whereas salt and magnesium may be extracted as a products with additional system modules. Detail Feasibility Study Required Some bottom line considerations
TIME: 18 Month partial operation; 24-28 month 60 to 75% of capacity; and by 36 month to reach full capacity. Finance: Site Investor $10,000/site & up to $1,000,000 development fees. ------------------------------------------- Finance: Project Investor not less than 500 Million USD for Wyoming |
Additional Revenue Models for several Processing plans. For Wyoming it will be very high volume multi-production methods with zero waste technologies.
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Solids Waste to Energy; Molecular Refinery is designed for 3,000 metric tons of solids per day processing 360 Days/year. (1,080,000 Ton/Year)
Each type of solid material will require customized first stage processors.
* Solid waste types can also be mixed in the stage #2 process allowing an example of Green Waste, 1000 TPD + Fly Ash 1000 TPD and Coal 1000 TPD for a total capacity of 3,000 TPD or 6,600,00 pounds. *General processing solids flow rates will be up to 145 ton per hour (TPH) using four independent material pre-processors of 50 TPH design < 75% duty cycle. For fresh MSW we design for local area requirement and expected growth rate into the initial systems design capacity for the receiving station. With our process 100% of delivered MSW will be processed that day and no holding, landfill or storage facility will be required. Trucks will deliver to the dump pits with auger screws into the 1st stage processors for grinding.
*Most solids will be placed into the stage #2 cryogenic stage for fine particle molecular processing removing moisture without heat processing. All gasses are captured and or liquefied to prevent any atmospheric pollution.
*In the case with CTL systems that have processed 60 to 67 gallons of liquid fuels for each one ton of coal processed. We consider 65 GPT will be a very good base production rate with a ZERO WASTE ZONE processing facility. By processing 3,000 ton of coal per day we will yield 195,000 GPD or 4,643 barrels per day (BPD) of the highest grade and value fuel products. (1,365,000 Pounds)
In the waste to energy using coal waste and wastewater for our (Bio-Fuel) refinery we will produce the minimum of 1,906,800 gallons per day or 45,400 BPD.
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INTEGRATED EXAMPLE
City Sewage Treatment: 4,250,000 GPD Municipal Solid Waste: 2000 TPD Electricity Generation: 75 MW/h to grid Industrial Water: 2,000,000 Gallons/d Molecular Refinery: 200,000 Gallons/d Fly Ash Waste Destruction: 1,000 TPD Projects within, United States of America. Simplified terms and condition of investor.
Project development fees to $1,000,000 and site development cost of $10,000,000. Buyer of the electricity PPA for 25-35 years and production escrow of not less than 12 months of production value. ROI shall be $0.0075 cent per KWh for 48 months = [$ 19,710,000] plus $5.00/ton of waste processed 200 ton/day =[$1,460,000] for base site development investment only. Long term revenue: 1000 ton fly ash/day shall be $1.00/metric ton for contracted years. Estimate: 15 years @ $350,000/year Volume of waste destruction may exceed 1800 ton per day including mining waste.
TIME: 12 to 18 Month for full capacity of the power generator, refinery, sewage treatment system and irrigation water. The fly ash waste destruction system may take 24 to 28 months to 100% operation.
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The city population of 30,000 to 40,000 people with the sewage wastewater for the past year having an annual average of 2.59 million gallons/day (MGPDd), with a high volume of 3.70 MGPd. Our design capacity will be 4.25 MGPd with zero waste. Partly used fuel!
The city garbage collection; “MSW” has the small volume of only 200 ton per day that can easily be added to the waste destruction system requiring less than 350,000 gallons of water for processing. The small volume is not a cost effective model and will consider adding medical and toxic waste with higher fees than standard MSW to this process.
Clean Energy Power Generator designed capacity is 80 MW/h and sales to the grid will be 75 MW/h +1-4% for 35 year and 365 day per year. 1,800,000 KW/h daily sales. Our power plant will not have any emissions other than clean steam if not recycled as a closed system.
By processing sewage water all of the constituents are removed and our processing generates highly oxygenated water that will exceed potable water standards, it also can be mineralized to match what the soils and local plants require in nutrients. Oxygenated water increases plant growth, reduces fungal growth and greatly increases plant root systems.
Our molecular deconstruction and reconstruction processing of waste to energy system produces our per priority fuels for our customized liquid gas turbines. Our base fuel production refinery will produce over 72,000 GPd with use of 60,000 GPd /80 MWh and a secondary refinery produces 140,000 gallons per day as backup and or for operating two additional power generators for an additional 160 MWh or fuel sales.
Fly Ash processing when added to our waste destruction as designed to process the capacity of 1,000 metric ton per day. The revenue of the fly ash destruction generates revenue that support the business model. The wastewater to process the fly ash can be as high as 2,120,000 GPD.
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