Thermal and catalytic cracking of a LDPE-EVA copolymer mixture

Catalytic cracking of a plastic mixture consisting of LDPE and EVA copolymer (86/14 w/w) over mesoporous Al-SBA-15 and Al-MCM-41 materials as well as nanocrystalline HZSM-5 zeolite (crystal size ¿ 35 nm) has been carried out in a batch reactor at 400 - 420ºC. The release of acetic acid formed from t...

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Detalles Bibliográficos
Autores: Serrano, D. P., Aguado, José, Escola, J. M., Rodríguez, J. M., Morselli, L., Orsi, R.
Tipo de recurso: artículo
Fecha de publicación:2003
País:España
Institución:Universidad Rey Juan Carlos
Repositorio:BURJC-Digital. Repositorio Institucional de la Universidad Rey Juan Carlos
OAI Identifier:oai:burjcdigital.urjc.es:10115/3737
Acceso en línea:http://hdl.handle.net/10115/3737
Access Level:acceso abierto
Palabra clave:Medio Ambiente
23 Química
Descripción
Sumario:Catalytic cracking of a plastic mixture consisting of LDPE and EVA copolymer (86/14 w/w) over mesoporous Al-SBA-15 and Al-MCM-41 materials as well as nanocrystalline HZSM-5 zeolite (crystal size ¿ 35 nm) has been carried out in a batch reactor at 400 - 420ºC. The release of acetic acid formed from the EVA decomposition was observed within the temperature range 350 - 400ºC. The most active catalyst was nanometer size HZSM-5 that led to complete conversion of the plastic mixture at 420ºC whereas both Al-MCM-41 and Al-SBA-15 were meaningfully less active. In addition, the polymer mixture was more difficult to be cracked both thermally and catalytically than pure LDPE. This result has been ascribed to the occurrence of crosslinking reactions leading to a fast deactivation by coke fouling especially over mesoporous catalysts (Al-MCM-41 and Al-SBA-15) because of their open structure. A high selectivity towards C1 - C5 hydrocarbons (¿ 75 %) was attained over nanometer size HZSM-5, most of them being valuable C3 - C4 olefins. PIONA analyses of the C6 - C12 hydrocarbon fraction obtained at 420ºC indicates that olefins were the main components whereas a significant amount of aromatics was also obtained both thermally and catalytically (> 15 %).