Poliolefinen pirolisia iturri-ohantze konikoan

  1. Miriam Arabiourrutia
  2. Gorka Elordi
  3. Martin Olazar
Journal:
Ekaia: Euskal Herriko Unibertsitateko zientzi eta teknologi aldizkaria

ISSN: 0214-9001

Year of publication: 2016

Issue: 30

Pages: 125-143

Type: Article

DOI: 10.1387/EKAIA.16286 DIALNET GOOGLE SCHOLAR lock_openOpen access editor

More publications in: Ekaia: Euskal Herriko Unibertsitateko zientzi eta teknologi aldizkaria

Abstract

The amount of waste plastic increases every single year, which causes a critical environmental issue. Polyolefins (mainly high and low density polyethylene and poly- propylene) are the most common types of plastics, accounting for 60 wt% of the plastic waste. Pyrolysis, the thermal degradation in an inert atmosphere, is considered to be one of the most appealing technologies for the recycling of plastic materials. The conical spouted bed reactor is suitable for the pyrolysis of plastic waste due to its ability to avoid agglomeration problems that may be caused by the melted plastic. The pyrolysis process may be carried out at different temperatures and with or without the presence of catalysts in the reaction environment in order to streamline the product distribution. The resulting products are hydrocarbons: non-condensable gases (C1-C4), gasoline fraction, diesel frac- tion, and waxes. These fractions might be used directly as feed streams for refinery units or as pools to be mixed with other streams from refineries.