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Cutting-edge technology

MNIS IMPLANTS

Systems

MNIS can be developed into various types of plants that differ in purpose (energy production and/or matter recovery) and in capacity, starting from 50kg/h up to 3 tons/h, with the aim of satisfying all the needs of our customers. Our systems can treat waste/SRF (solid recovered fuels) of any nature dissociating the waste molecules into their constituent elements.

 

The installation of a MNIS system will not only reduce expenses with the elimination of the costs for transport, storage and disposal of waste, but it can also generate revenue from the sale of energy (thermal or electrical) and chemicals.

 

Thanks to our systems it is possible to consider waste as a resource and no longer as an additional problem that companies must deal with, wasting time and resources and resulting in a strong environmental impact.

MNIS

Capacity: 50-100 kg/h

Purpose: waste disposal and production of electricity

MNIS 50

Capacity: 2-3ton/h

Purpose: waste disposal and production of electricity

MNIS 500

MNIS
MNIS

Capacity: 2-3ton/h

Purpose: waste disposal and production of hydrogen and electricity

MNIS 500H

The developed MNIS technology allows the separation of the molecules of which the waste is composed through a plasma-assisted gasification process (which differs from the combustion process): the chemical bonds are broken with the formation of a combustible gaseous component, the "syngas", and an inert solid component called "slag“, in quantities and proportions related to the type of waste treated.

The produced synthesis gas (syngas) can be recovered as a secondary raw material or converted into energy through conversion processes (e.g. turbines for the production of electricity or heat exchangers for thermal energy); a portion of syngas can be used by the system itself, in a self-sufficient configuration, while the remaining part can be sold to "energy communities". The slag produced can be used as a component for example in the construction sector.

The main advantage of this process is that the absence of direct combustion of waste and the presence of plasma avoids the production of dust, dioxins and/or other poisonous substances.

 

The design and the construction of a prototype plant allows to set as next step the testing of the recovery of valuable chemicals (e.g. hydrogen, carbon dioxide, etc.) from the high quality syngas coming from MNIS technology in its first full-scale plant.

HOW DOES IT WORK

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