Aggregate global annual waste volume: Up to 2,5. billion tons. Waste treatment today:

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1 UNIQUE MOBILE PROCESSOR FOR MSW AND ORGANIC WASTES TREATMENT Turn your trash into cash!

2 WASTE UTILIZATION is a global scale problem Global economy has and will always produce. There is no any optimal solution so far for safe and cost-effective utilization of MSW (Municipal solid waste). Landfilling, incineration and dumping of waste inflict irreparable harm on peoples health and environmental well-being, and existing treatment methods are not economically reasonable. Aggregate global annual waste volume: Industrial Up to 200 billion tons MSW (Municipal solid ) Up to 2,5 billion tons 15% Waste incineration Waste treatment today: 85% Landfilling HOWEVER: Even in case of highly effective advanced treatment systems are installed, waste incineration still causes emission of highly-toxic furans and dioxins, which falling into the category of carcinogens may change the DNA structure,inflicting irreparable harm on health of currently living people and future generations. 2

3 PRIMARY INDUSTRY PROBLEMS 5% treatment efficiency of all extracted solid materials animal industry produce waste ten times as much as the weight of livestock 200 herbage is multiply greater the weight of output products billion tons of raw material is annual turnover of primary industry WASTE PROBLEM Based on the UN report, 200 billion tons of production are generated annually. Uncontrolled landfills and wrong waste utilization cause growth of oncology, contagious and respiratory diseases. 3

4 GLOBAL PRACTICES IN WASTE UTILIZATION Japan Scheduled collection of sorting garbage. Some are used in construction purposes Germany Waste treatment plants, powered by biogas from waste, are in operation. Gas is utilized for heating of living premises Canada Well-developed waste management system, including various educational waste treatment programs for general public and tight cooperation of locals and private Companies in activities, focused on green waste management USA Use of plasmagasification plants to safely process various forms of (including hazardous ones), decomposing it to molecular level France Separate waste collection Norway, Finland England Imposition of levy on use of plastic bags. Most of MSW are recycled. Strict control on separation of discarded 45-48% of are recyclable material Majority of industrial enterprises spend vast amount of money for garbage removal and utilization. 4

5 greenblaze is a cutting-edge solution, capable of converting into safe and alternative energy sources, making high profit and preserving natural resources of the Planet Universal mobile multi-functional procesor of closed cycle without open combustion, based on the technology of high-temperature vacuum destruction. ECOLOGICALLY RESPONSIBLE TREATMENT OF ALL TYPES OF CARBONACEOUS WASTES AND MATERIALS Reduces landfill territory, improves eco-logical situation Reduces power systems loads Reduces CO2 emissions in transport and industrial areas Allows using unoccupied soil, freed from landfills Facilitates rehabilitation of soil, sewage water, basins, spoiled by oil spills and other petroleum products 5

6 greenblaze FEEDSTOCK Municipal solid Agricultural Oil sludge Associated gas Coal Forestry Medical Organic of chemical industry Sewage Flue gases Plastic, rubber, oil greenblaze outcome Synthetic liquid fuel Electric energy Heat energy Ash residue Distilled water greenblaze features: Conversion of waste into usable energy Significant reduction of waste volume and mass. Destruction of potentially perilous substances of treated materials. Minimal feedstock preparation No harmful emissions greenblaze is equipped with sulphur removal unit and generation unit of low-sulphur acid as a separate product Specially designed filters of greenblaze processor allows removing heavy metals from gaseous phase. No dioxins generated during greenblaze operation because of high temperatures of 1400 degrees in the local zone of oxidation. At the temperature of 1200 degrees, dioxins are irrevocably decomposed. Polyvinyl chlorides are not generated as well, as lall chloride compounds are removed through chemical processes inside of greenblaze, these are generation of nitromethane from chloroacetic acid 6

7 UTILIZATION AND TREATMENT: Industrial and household Rubber and plastic Forestry Agricultural waste Animal Oil sludge Sewage water Economic advantages Low cost of generated synthetic motor fuel Ever-increasing demand for electric energy Low cost of waste utilization Low-cost waste recycling greenblaze HIGHLIGHTS as compared to other waste treatment methods Universal processing of all types of and materials Wide applicability range Ecological safety Mobile and movable units can be configured Rehabilitation of soil and remediation of the environment Short commissioning and deployment time Modular design Guaranteed operational safety 7

8 OPERATING PRINCIPLE STEAM ELECTRIC ENERGY GAS GENERATOR GAS COOLING SYSTEM GAS SEPARATION UNIT WASTE SHREDDER HEATING ZONE HIGH-TEMPERATURE CHAMBER RECEIVING BIN ASH RESIDUE RETRACTION UNIT Estimated performance figures (MSW treatment): 5 m³ per 1 hour = municipal solid waste Thermal capacity: 300 kw 200 liters of synthetic liquid fuel per 1 hour Service water: 0.2 m3 per 1 hour Distilled water: 0.1 m3 per 1 hour 8

9 greenblaze operating principle Feedstock preparation unit It is designed for partial sorting, shredding and feeding of the feedstock into receiving bin. It includes the chamber of partial sorting, shredder, screw or conveying feeder. Solid-fuel convertor It is designed for multilevel temperature vacuum destruction of carbonaceous feedstock. It includes highemperature chamber, ash residue retraction unit, gas bleeding unit. Gas purification unit It is designed for separation of gases, their purification and secondary feeding into solid-fuel convertor and compression unit. It includes gas separation unit, withdrawal system and gas afterburning system. Cooling system It is designed for cooling of block bearing of solid-fuel convertor screw and supporting of specified temperature in bioreactor (steam cooling at the temperature of 300 o C). Compression unit It is designed for creation of depressurization conditions in solid-fuel convertor and maintaining of the pressure, required for catalytic reactions in the unit of synthetic liquid fuel generation. Unit of synthetic liquid fuel generation It is designed for generation and withdrawal of liquid product. It includes bio-reactor, return overflow valves of fuel condensing system, storage containers. Electric energy generation unit It is designed for generation of electric energy (turbine 300 kw) for both internal needs - 80 kw/ h (+ 50 kw if shredder for MSW treatment is installed) and for external customer needs. Control unit It is designed to control the processor s operation modes. Ash residue treatment unit It is designed for generation and withdrawal of solid product 9

10 greenblaze model structure greenblaze Movable mobile truck 10

11 The greenblaze processor can be directly connected to mobile energy storage units energybrick Operating processor greenblaze 11 11

12 Mobile Unit greenblaze-200 Capacity of one module designed for treatment of 5 m3 of MSW, or 1.5 tons /hour, or 36 tons / day: Option 1 Electric energy Option 2 Synthetic liquid fuel Option 3 Heating energy up to 1.0 MW 200 l / hour 3 Gcal / hour Initial parameters Parameter Value Simultaneous load Capacity of the module for synthetic liquid fuel generation is not standardized and to be determined based on qualitative composition of a feedstock Chemical efficiency of the process Time to reach operational mode Consumption of products for internal needs Dimensions Weight of the assembled processor Number of operation hours Estimated service life Required infrastructure Wastes to be utilized Technical Maintenance Personnel Operational pattern 5 m3(or 1,5 tons/hour) 200 l/hour 84,4% of the resource Max 12 hours 15% mm * mm * mm kg hours / year 10 years Feedstock feeding system and synthetic liquid fuel load facility - organic : lignite, poultry manure with humidity level of max 75% - plastic, coal, wood, oil sludge, MSW Once per annum 2 operators per shift discontinuous or 24/7 12

13 Advantages of greenblaze technology greenblaze is a unique unrivalled technology of MSW treatment greenblaze is multi-functional processor. Depending on the configuration, it is able to generate fuel, heat and electricity without environmental pollution and negative emissions. greenblaze processor is mobile and not connected to a specific parcel of land, it can be easily dismantled and relocated if needed. greenblaze is based on modular principle. It allows ramping up production capacity without heavy expenses. All configurations of greenblaze processor are operated on unsorted mixed without considerable expenses. Configuration of greenblaze processor for generation of synthetic liquid fuel allows producing several types of fuel from synthetic gasoline with high octanenumber to diesel. Change of fuel to produce is carried out by adjustment of theprocessor's settings. Competitive analysis of greenblaze Other types of MSW utilization and treatment (such as incineration or lowtemperature pyrolysis) inflict detrimental harm on the environment Similar processors allow generating electric and heating energy, but as opposed to greenblaze, they are not designed for fuel generation. Alternatively, the plants designed for fuel generation unable to produce electricity. Other plants are mounted directly on the site where they are planned to be used and can t be relocated. Dismantling of such plants is labor-intensive and requires heavy expenses. Production output is estimated during the project design stage. In case it is needed to augment the volume of treated feedstock, another plant or longterm upgrade of the current one is required. Majority of plants are designed for treatment of a particular type of. Separation of waste is compulsory procedure before the treatment. Similar plants convert MSW into specific type of energy only. Rapid reconfiguration of the equipment is not possible. 13

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