Waste disposal


The innovation, the energy efficiency and the environmental sustainability, are the priorities of the new millennium

The first resource is the energy saving, reusing the raw material commonly and mistakenly called “waste”.

As a result of specific researches, Eko technology presents its technologies for the waste disposal, and for the energy production, reducing gradually the use of fossil fuels and respecting the environment. Eko technology uses for this purpose, the following latest technologies Smaltimento Rifiuti

The modern technology for waste disposal (M.S.W.= Municipal Solid Waste), is based on the waste recycling of homogeneous fractions and on the energy recycling of high calorific power fractions, sending to landfills only inerts which can't have a further use.

The selection plant strictly follows these criteria.
It is clear that sorted waste collection improves the recycling percentage, together with a better selection and a lower dirt of the recycling fraction.
This system is a valid alternative to the accurate selection of the collection systems, surely important ,but expensive and sometimes not feasible. This selection plant includes machinery, mainly set to select and refine homogeneous fractions to send to further processes of anaerobic digestion and pyrolysis gasification to obtain the highest energy production from the waste, with intermediate recycling of ferrous and non-ferrous elements, and the removal of inert substances from MSW.

The principal aim is the recycling and the refining of these substances to produce an upper filtered waste with a high calorific power (R.D.F.=Refused Derived Fuel), having homogeneous physical and chemical properties to optimize the process of energy transformation in a production of electric and thermal power.

The organic fraction, transformed in lower filtered waste, will be sent to biostabilization through anaerobic digestion, in order to reduce the putrefaction ratio and to obtain a biogas to use for cogeneration. The processed sludge will go through a thickening process, to remove the humidity and then, it will be sent to pyrolysis process for recycling.


The cycle can be further diversified and improved, depending on the need for recycling or removing of certain fractions from the waste mass, or, depending on the quantity of the materials to sent to the selection process.

 

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