Pyrolysis and Gasification of a Real Refuse-Derived Fuel (RDF): The Potential Use of the Products under a Circular Economy Vision

热解 垃圾衍生燃料 燃烧热 废物管理 城市固体废物 焚化 原材料 环境科学 流化床 燃烧 化学 工程类 有机化学
作者
Michela Alfè,Valentina Gargiulo,Michele Porto,Renata Migliaccio,Adolfo Le Pera,Miriam Sellaro,Crescenzo Pellegrino,Abraham A. Abe,Massimo Urciuolo,Paolino Caputo,Pietro Calandra,Valeria Loise,Cesare Oliviero Rossi,Giovanna Ruoppolo
出处
期刊:Molecules [Multidisciplinary Digital Publishing Institute]
卷期号:27 (23): 8114-8114 被引量:21
标识
DOI:10.3390/molecules27238114
摘要

Refuse-Derived Fuels (RDFs) are segregated forms of wastes obtained by a combined mechanical-biological processing of municipal solid wastes (MSWs). The narrower characteristics, e.g., high calorific value (18-24 MJ/kg), low moisture content (3-6%) and high volatile (77-84%) and carbon (47-56%) contents, make RDFs more suitable than MSWs for thermochemical valorization purposes. As a matter of fact, EU regulations encourage the use of RDF as a source of energy in the frameworks of sustainability and the circular economy. Pyrolysis and gasification are promising thermochemical processes for RDF treatment, since, compared to incineration, they ensure an increase in energy recovery efficiency, a reduction of pollutant emissions and the production of value-added products as chemical platforms or fuels. Despite the growing interest towards RDFs as feedstock, the literature on the thermochemical treatment of RDFs under pyrolysis and gasification conditions still appears to be limited. In this work, results on pyrolysis and gasification tests on a real RDF are reported and coupled with a detailed characterization of the gaseous, condensable and solid products. Pyrolysis tests have been performed in a tubular reactor up to three different final temperatures (550, 650 and 750 °C) while an air gasification test at 850 °C has been performed in a fluidized bed reactor using sand as the bed material. The results of the two thermochemical processes are analyzed in terms of yield, characteristics and quality of the products to highlight how the two thermochemical conversion processes can be used to accomplish waste-to-materials and waste-to-energy targets. The RDF gasification process leads to the production of a syngas with a H2/CO ratio of 0.51 and a tar concentration of 3.15 g/m3.
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