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Number of items: 14.

Shamooni, A. and Debiagi, P. and Wang, B and Luu, T. D. and Stein, O. T. and Kronenburg, A. and Bagheri, G. and Stagni, A. and Frassoldati, A. and Faravelli, T. and Kempf, A. M. and Wen, X. and Hasse, C. (2021):
Carrier-phase DNS of detailed NOx formation in early-stage pulverized coal combustion with fuel-bound nitrogen.
In: Fuel, 291, p. 119998. Elsevier, ISSN 0016-2361,
DOI: 10.1016/j.fuel.2020.119998,
[Article]

Debiagi, P. and Gentile, G. and Cuoci, A. and Frassoldati, A. and Ranzi, E. and Faravelli, T. (2018):
Yield, Composition and Active Surface Area of Char from Biomass Pyrolysis.
In: Chemical Engineering Transactions, 65, pp. 97-102. Italian Association of Chemical Engineering (AIDIC), ISSN 1974-9791; 2283-9216,
[Article]

Debiagi, P. and Gentile, G. and Cuoci, A. and Frassoldati, A. and Ranzi, E. and Faravelli, T. (2018):
A predictive model of biochar formation and characterization.
In: Journal of analytical and applied pyrolysis, 134, pp. 326-335. Elsevier, ISSN 0165-2370,
DOI: 10.1016/j.jaap.2018.06.022,
[Article]

Debiagi, P. and Trinchera, M. and Frassoldati, A. and Ranzi, E. and Faravelli, T. (2017):
Third Generation Biomass. Classification and Characterization of Algae Fuels.
Rome, 40th Meeting of the Italian Section of the Combustion Institute, Rome, 7-9.6.2017, [Conference or Workshop Item]

Debiagi, P. and Trinchera, M. and Frassoldati, A. and Faravelli, T. and Vinu, R. and Ranzi, E. (2017):
Algae characterization and multistep pyrolysis mechanism.
In: Journal of Analytical and Applied Pyrolysis, 128, pp. 423-436. Elsevier, ISSN 0165-2370; 1873-250X,
[Article]

Ranzi, E. and Debiagi, P. and Frassoldati, A. (2017):
Mathematical modeling of fast biomass pyrolysis and bio-oil formation. Note I: Kinetic mechanism of biomass pyrolysis.
In: ACS Sustainable Chemistry & Engineering, 5 (4), pp. 2867-2881. ACS Publications, ISSN 2168-0485,
[Article]

Ranzi, E. and Debiagi, P. and Frassoldati, A. (2017):
Mathematical modeling of fast biomass pyrolysis and bio-oil formation. Note II: secondary gas-phase reactions and bio-oil formation.
In: ACS Sustainable Chemistry & Engineering, 5 (4), pp. 2882-2896. ACS Publications, ISSN 2168-0485,
[Article]

Gentile, G. and Debiagi, P. and Cuoci, A. and Frassoldati, A. and Ranzi, E. and Faravelli, T. (2017):
A computational framework for the pyrolysis of anisotropic biomass particles.
In: Chemical Engineering Journal, 321, pp. 458-473. Elsevier, [Article]

Gentile, G. and Debiagi, P. and Cuoci, A. and Frassoldati, A. and Faravelli, T. and Ranzi, E. (2016):
A CFD Model for Biomass Flame-Combustion Analysis.
In: Chemical Engineering, 50, pp. 49-54. Access Intelligence, ISSN 1945-368X,
[Article]

Debiagi, P. and Gentile, G. and Pelucchi, M. and Frassoldati, A. and Cuoci, A. and Faravelli, T. and Ranzi, E. (2016):
Detailed kinetic mechanism of gas-phase reactions of volatiles released from biomass pyrolysis.
In: Biomass and Bioenergy, 93, pp. 60-71. Elsevier, ISSN 1873-2909,
[Article]

Tufano, G. L. and Stein, O. T. and Kronenburg, A. and Frassoldati, A. and Faravelli, T. and Deng, L. and Kempf, A. M. and Vascellari, M. and Hasse, C. (2016):
Resolved flow simulation of pulverized coal particle devolatilization and ignition in air- and O2/CO2-atmospheres.
In: Fuel, 186, pp. 285 - 292. Elsevier, ISSN 0016-2361,
DOI: 10.1016/j.fuel.2016.08.073,
[Article]

Salenbauch, S. and Pollack, M. and Cuoci, A. and Frassoldati, A. and Saggese, C. and Faravelli, T. and Hasse, C. (2015):
An Eulerian bivariate soot model based on a method of moments.
In: Proceedings of the 7th European Combustion Meeting 2015,
Budapest, 30.3.-2.4.2015, [Conference or Workshop Item]

Debiagi, P. and Pecchi, C. and Gentile, G. and Frassoldati, A. and Cuoci, A. and Faravelli, T. and Ranzi, E. (2015):
Extractives extend the applicability of multistep kinetic scheme of biomass pyrolysis.
In: Energy & Fuels, 29 (10), pp. 6544-6555. ACS Publications, [Article]

Salenbauch, S. and Cuoci, A. and Frassoldati, A. and Saggese, C. and Faravelli, T. and Hasse, C. (2015):
Modeling soot formation in premixed flames using an Extended Conditional Quadrature Method of Moments.
In: Combustion and Flame, 162 (6), pp. 2529 - 2543. ISSN 0010-2180,
DOI: 10.1016/j.combustflame.2015.03.002,
[Article]

This list was generated on Tue May 11 02:01:00 2021 CEST.