Publicación

Sooting behavior of laminar flames produced with clear and black cast PMMA

Pablo E. Pinto · Mijail Littin · Ignacio Verdugo · G. Severino · Juan J. Cruz · Felipe Escudero · James L. Urban · María Thomsen · Andrés Fuentes · Rodrigo Demarco

Resumen

The sooting behavior of poly(methyl methacrylate) (PMMA) remains poorly quantified despite its extensive use as a benchmark fuel in fire science. This study presents a systematic characterization of soot production in laminar diffusion flames fueled by clear and black PMMA. Reduced-size samples were burned in an axisymmetric configuration with controlled coflow conditions (20–60 L/min). Temporally and spatially-resolved soot volume fractions were retrieved using line-of-sight attenuation combined with neural network-based Abel inversion. Radiative emission and flame geometry were quantified concurrently. Results showed that pigmentation had a marked influence on soot behavior: black PMMA consistently produced higher soot volume fractions (up to ∼3 ppm) and sustained radiative output longer than clear PMMA. Power-law correlations between integrated soot observables and flame-scale parameters revealed distinct scaling laws. These correlations provide quantitative targets for calibration of soot yields in fire modeling. The dataset provides a comparative benchmark on the pigmentation effects in PMMA flames, supporting an improved understanding of soot formation pathways in polymer fires.

Autores y colaboradores

Authors

Pablo E. Pinto
Mijail Littin
Ignacio Verdugo
G. Severino
Felipe Escudero
James L. Urban
María Thomsen
Andrés Fuentes
Rodrigo Demarco

Palabras clave

Fire chemistry Heat release rate Heat transfer PMMA combustion Soot