Combined heat and power (CHP) systems fed by renewable sources are of great interest for efficient and greener energy production in industrial applications. In order to reduce fossil fuel consumption, biomass gasification coupled with I.C.E. is a viable way for ensure constant and accurately predictable renewable energy production. The aim of this work is to evaluate the integration in an industrial context of a CHP system fed by syngas produced from woody biomass gasification in a downdraft reactor. The feasibility study was developed thorough the combination of two simulation programs. Aspen Plus was used for simulating the biomass gasification unit and was exploited in order to determine the syngas composition and flow rate. Results have been employed in TRNSYS, that has instead been chosen for the modeling of the complete CHP system.

A Simulation Tool to Evaluate the Feasibility of a gasification-I.C.E. System to Produce Heat and Power for Industrial Applications

PRESTIPINO, MAURO;PALOMBA, VALERIA;GALVAGNO, ANTONIO
2016-01-01

Abstract

Combined heat and power (CHP) systems fed by renewable sources are of great interest for efficient and greener energy production in industrial applications. In order to reduce fossil fuel consumption, biomass gasification coupled with I.C.E. is a viable way for ensure constant and accurately predictable renewable energy production. The aim of this work is to evaluate the integration in an industrial context of a CHP system fed by syngas produced from woody biomass gasification in a downdraft reactor. The feasibility study was developed thorough the combination of two simulation programs. Aspen Plus was used for simulating the biomass gasification unit and was exploited in order to determine the syngas composition and flow rate. Results have been employed in TRNSYS, that has instead been chosen for the modeling of the complete CHP system.
2016
Inglese
no
ELETTRONICO
101
1256
1263
8
ATI 2016 - 71st Conference of the Italian Thermal Machines Engineering Association
Torino
14-16/09/2016
no
Internazionale
Comitato scientifico
biomass; gasification; TRNSYS; energy analysis; combined heat and power
no
14.a Contributo in Rivista::14.a.2 Proceedings in extenso su rivista
info:eu-repo/semantics/article
Prestipino, Mauro; Palomba, Valeria; Vasta, Salvatore; Freni, Angelo; Galvagno, Antonio
none
5
262
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11570/3103165
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