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OUR WASTE-TO-ENERGY TECHNOLOGY


Our Company has been active in developing waste management technologies for more than three decades. Our goal is to mitigate emissions and reduce landfill waste with a proprietary ultra-high frequency generated temperature gasification system. A system that treats all types of waste, with the single exception of heavily contaminated nuclear residues! This technology just may be the ultimate waste-to-energy solution. Treating all types of waste without waste residues and without harmful, zero emissions to the atmosphere while recovering all valuable constituent of the waste at highly economic conditions.

 Just one typical example of recoverable valuable constituents


1) Capital investment for a plant processing only rubber waste at 300 kg/h is $1,500,000.
2) Specific energy consumption is 1 kWh/kg rubber feed.
3) Electricity price for industrial sector is $0.05/kWh.
4) Carbon black recovery is 23 wt% of rubber feed; approximate market price for carbon black is $500/ton.
5) Gate fee for receiving rubber waste is $30/ton.
6) Gas yield is 3 Nm3/kg rubber feed, and with a calorific value of 9 MJ/Nm3; the gas is combusted in a boiler or gas engine for power generation at efficiency of 26%.


The heart of this technology, the UHF gasplasma process, forms the basis of our Plant, the first such facility in the world. Gasplasma is the sequential use of gasification, plasma gas treatment, syngas polishing and gas turbine power generation.

A full scale plant will treat 100,000 short tons (91,000 t) per annum of municipal waste and produce:

  •     Enough power for 10,000 homes
  •     Enough heat for around 700 homes
  •     over 99% landfill diversion of feedstock with minimal residues and emissions
  •     Increase recycling rates by over 20%
  •     High performance, high-value aggregate glass (trademark Plasmarok)
  •     Novel combination of three existing and newly proven technologies (termed UHF Gasplasma)
  •     Negative carbon footprint and lowest environmental impact plant and building

A full scale conventional technology plant requires 150 metres (490 ft) long, 50 metres (160 ft) wide, and along most of its length only 11 metres (36 ft) high. Above the thermal plant, the roof height is about 14 metres (46 ft), and the single exhaust for the engines 10 metres (33 ft) higher, at only 34 metres (112 ft). The building is approximately the size of a supermarket store and operates under a light vacuum, meaning it contains all odours. The entire process occurs within the building. Our plant for the same throughput needs only 100 square meters.

UHF gasplasma process is a waste treatment technology that uses ultra high frequency resonance  energy and the high temperatures created by this gasification process. This process breaks down waste primarily into elemental gas and solid waste (slag), in a device called a UHF gasplasma converter. The process has been intended to be a net generator of electrical energy, depending upon the composition of input wastes, and to reduce the volumes of waste being sent to landfill sites.

 

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