In this work (part of a series in which different biomass conversion routes are studied) a novel coupling between gasification and pyrolysis is described: by means of a design parameter (α) biomass is distributed between these two operations. In order to characterize the quality of the syngas produced, simulations are performed with a gasification / pyrolysis simulator, GASDS. Profiles were obtained for oxygen consumption, together with bio-char, syngas and steam production as a function of α. In a further work, an economic analysis shall define optimal design conditions.

Biomass to X: Gasification and Pyrolysis Integrated / A.F. Amaral, G. Bozzano, C. Pirola, F. Manenti (COMPUTER-AIDED CHEMICAL ENGINEERING). - In: European Symposium on Computer Aided Process Engineering / [a cura di] A. Espuña, M. Graells, L. Puigjaner. - [s.l] : Elsevier, 2017. - ISBN 9780444639653. - pp. 1837-1842 (( Intervento presentato al 27. convegno European Symposium on Computer Aided Process Engineering tenutosi a Barcelona nel 27 [10.1016/B978-0-444-63965-3.50308-1].

Biomass to X: Gasification and Pyrolysis Integrated

C. Pirola;
2017

Abstract

In this work (part of a series in which different biomass conversion routes are studied) a novel coupling between gasification and pyrolysis is described: by means of a design parameter (α) biomass is distributed between these two operations. In order to characterize the quality of the syngas produced, simulations are performed with a gasification / pyrolysis simulator, GASDS. Profiles were obtained for oxygen consumption, together with bio-char, syngas and steam production as a function of α. In a further work, an economic analysis shall define optimal design conditions.
Biomass; Gasification; Pyrolysis; Syngas; Process Design
Settore ING-IND/25 - Impianti Chimici
2017
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/673097
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