A plant, designed for the thermo-valorisation of tyres, was specifically modified in order to treat Automobile Shredder Residue (ASR). Results from two full-scale combustion experiments, carried out on large ASR feeding lots (thousands of tons) indicate the proposed technology as a potential route to help the fulfilling of impending 95% reuse and recovery target set by the End of life Vehicle (ELV) Directive (January 2015). The paper describes the main operational troubleshot occurred during the first experiment (emissions at the stack out of regulatory limits and problems of clogging on the conveyer belt) and the consequent upgrading solutions (pre-treatment, introduction of waste double low-flow screw feeder and a cyclone prior to the main fan, modification of rotatory kiln inlet) adopted to allow, during the second long-term experiment, a continuous basis operation of the plant in full compliance with the discharge limit to the atmosphere. Characterization of both ASR and combustion residues allowed to quantify a 18% of combustion residues as not dangerous waste while only the 2% as hazardous one. A pre-treatment for the reduction of fines in the ASR was recommended in order to achieve the required energy recovery efficiency.

Full scale treatment of ASR wastes in a modified rotary kiln / Mancini, G.; Viotti, Paolo; Luciano, Antonella; Raboni, M.; Fino, D.. - In: WASTE MANAGEMENT. - ISSN 0956-053X. - STAMPA. - 11:34(2014), pp. 2347-2354. [10.1016/j.wasman.2014.06.028]

Full scale treatment of ASR wastes in a modified rotary kiln

VIOTTI, Paolo;LUCIANO, Antonella;
2014

Abstract

A plant, designed for the thermo-valorisation of tyres, was specifically modified in order to treat Automobile Shredder Residue (ASR). Results from two full-scale combustion experiments, carried out on large ASR feeding lots (thousands of tons) indicate the proposed technology as a potential route to help the fulfilling of impending 95% reuse and recovery target set by the End of life Vehicle (ELV) Directive (January 2015). The paper describes the main operational troubleshot occurred during the first experiment (emissions at the stack out of regulatory limits and problems of clogging on the conveyer belt) and the consequent upgrading solutions (pre-treatment, introduction of waste double low-flow screw feeder and a cyclone prior to the main fan, modification of rotatory kiln inlet) adopted to allow, during the second long-term experiment, a continuous basis operation of the plant in full compliance with the discharge limit to the atmosphere. Characterization of both ASR and combustion residues allowed to quantify a 18% of combustion residues as not dangerous waste while only the 2% as hazardous one. A pre-treatment for the reduction of fines in the ASR was recommended in order to achieve the required energy recovery efficiency.
2014
thermo-valorisation, ASR, full-scale combustion experiments
01 Pubblicazione su rivista::01a Articolo in rivista
Full scale treatment of ASR wastes in a modified rotary kiln / Mancini, G.; Viotti, Paolo; Luciano, Antonella; Raboni, M.; Fino, D.. - In: WASTE MANAGEMENT. - ISSN 0956-053X. - STAMPA. - 11:34(2014), pp. 2347-2354. [10.1016/j.wasman.2014.06.028]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/771809
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