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Pregled bibliografske jedinice broj: 1160724

Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model


Cerinski, Damijan; Ferreiro, Ana Isabel; Baleta, Jakov; Costa, Mário; Zimbardi, Francesco; Cerone, Nadia; Wang, Jin
Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model // Energy Reports, 7 (2021), 8051-8061 doi:10.1016/j.egyr.2021.05.079 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1160724 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model

Autori
Cerinski, Damijan ; Ferreiro, Ana Isabel ; Baleta, Jakov ; Costa, Mário ; Zimbardi, Francesco ; Cerone, Nadia ; Wang, Jin

Izvornik
Energy Reports (2352-4847) 7 (2021); 8051-8061

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
Biomass ; Updraft gasification ; Pyrolysis kinetic model ; Secondary gas-phase mechanism ; Agricultural residue

Sažetak
Conversion of biomass into gas suitable for further exploitation is one of the valuable renewable energy pathways due to the wide distribution and availability of raw materials. Biomass gasification is a thermochemical process of partial combustion in a reduced oxygen environment that aims to produce hydrogen-enriched syngas. Updraft gasifier design, with its advantages of high efficiency, produces syngas with higher hydrogen yield compared to other gasifier designs. The main drawback of the updraft gasifier is high yield of tars in the outflow gas decreasing its lower heating value. Recently, significant research efforts have focused on the optimization of the updraft gasifiers operating conditions, especially by developing numerical models as a complementary approach to experiments. The simplest modelling approach for predicting biomass gasification behaviour is the thermodynamic equilibrium model. When describing the behaviour of an updraft gasifier, special focus needs to be given to the pyrolysis stage, since in this type of reactor pyrolysis products directly outflow from the gasifier. In this work, a pilot-scale biomass gasifier was modelled using a combination of a pyrolysis kinetic model with a thermodynamic equilibrium model. To describe the pyrolysis behaviour, the CRECK-S-BIO and two secondary gas-phase mechanisms with distinct levels of complexity were used. The gasification and oxidation of char were modelled using a thermodynamic equilibrium model through the minimization of Gibbs free energy approach. The predicted results of dry clean syngas were compared to the experimental data considering eleven different operating conditions. The model combination that used the detailed secondary gas- phase mechanism achieved generally lower average prediction errors. Although some discrepancies were observed in the predictions, these preliminary results show that the model approach considered in this study represents a good basis for future development of the model.

Izvorni jezik
Engleski

Znanstvena područja
Metalurgija, Strojarstvo



POVEZANOST RADA


Projekti:
MRRFEU-KK.01.1.1.04.0070 - Razvoj sustava za ispitivanje višefaznih strujanja i izgaranja s ciljem povećanja istraživačkih aktivnosti znanstvenog i poslovnog sektora (RESIN) (Vujanović, Milan, MRRFEU - KK.01.1.1.04.) ( CroRIS)

Profili:

Avatar Url Jakov Baleta (autor)

Avatar Url Damijan Cerinski (autor)

Poveznice na cjeloviti tekst rada:

doi www.sciencedirect.com

Citiraj ovu publikaciju:

Cerinski, Damijan; Ferreiro, Ana Isabel; Baleta, Jakov; Costa, Mário; Zimbardi, Francesco; Cerone, Nadia; Wang, Jin
Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model // Energy Reports, 7 (2021), 8051-8061 doi:10.1016/j.egyr.2021.05.079 (međunarodna recenzija, članak, znanstveni)
Cerinski, D., Ferreiro, A., Baleta, J., Costa, M., Zimbardi, F., Cerone, N. & Wang, J. (2021) Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model. Energy Reports, 7, 8051-8061 doi:10.1016/j.egyr.2021.05.079.
@article{article, author = {Cerinski, Damijan and Ferreiro, Ana Isabel and Baleta, Jakov and Costa, M\'{a}rio and Zimbardi, Francesco and Cerone, Nadia and Wang, Jin}, year = {2021}, pages = {8051-8061}, DOI = {10.1016/j.egyr.2021.05.079}, keywords = {Biomass, Updraft gasification, Pyrolysis kinetic model, Secondary gas-phase mechanism, Agricultural residue}, journal = {Energy Reports}, doi = {10.1016/j.egyr.2021.05.079}, volume = {7}, issn = {2352-4847}, title = {Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model}, keyword = {Biomass, Updraft gasification, Pyrolysis kinetic model, Secondary gas-phase mechanism, Agricultural residue} }
@article{article, author = {Cerinski, Damijan and Ferreiro, Ana Isabel and Baleta, Jakov and Costa, M\'{a}rio and Zimbardi, Francesco and Cerone, Nadia and Wang, Jin}, year = {2021}, pages = {8051-8061}, DOI = {10.1016/j.egyr.2021.05.079}, keywords = {Biomass, Updraft gasification, Pyrolysis kinetic model, Secondary gas-phase mechanism, Agricultural residue}, journal = {Energy Reports}, doi = {10.1016/j.egyr.2021.05.079}, volume = {7}, issn = {2352-4847}, title = {Modelling the biomass updraft gasification process using the combination of a pyrolysis kinetic model and a thermodynamic equilibrium model}, keyword = {Biomass, Updraft gasification, Pyrolysis kinetic model, Secondary gas-phase mechanism, Agricultural residue} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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