Archive/Study on the Explosion Characteristics and Pyrolysis Mechanism of Typical Wood Dust
Study on the Explosion Characteristics and Pyrolysis Mechanism of Typical Wood Dust
Yang Liu, Shunbing Zhu, Yue Sun et al.
23. Juli 2026
en

Abstract

This experiment investigated changes in the key parameters of explosion pressure peak (Pmax) and pressure rising rate peak ((dP/dt)max) and flame propagation characteristics of wood dust explosion (pine, cypress and poplar dusts) under different wood dust diameters and concentrations using a 20 L spherical explosion apparatus. Combined with thermogravimetric analysis and Fourier transform infrared spectroscopy, the pyrolysis behavior of different wood dusts and the generation mechanism of gas-phase flammable products were elucidated. The results indicate that the type, wood dust diameter and concentration of dust had a great impact on the severity of explosion. As the dust diameter decreased, Pmax and (dP/dt)max both showed a trend of first increasing and then decreasing. Among them, the explosion pressure and Kst value of 300-mesh poplar wood were the highest, reaching 0.72 MPa and 11.6 MPa·m/s. The flame propagation characteristics were comprehensively influenced by dust morphology, volatile matter content and concentration. Among them, the peak height of flame propagation and its instantaneous velocity were obviously higher for poplar and pine wood dusts than those of cypress wood due to the high carbon and volatile matter contents. The overall quality loss rate of poplar dust in the thermogravimetric experiment was the highest, while its pyrolysis reaction rate was also the highest. The mass loss rate of 140-mesh poplar wood reached 90.5%, and the thermal decomposition reaction rate reached 19.48%/min. The large number of alkanes, aldehydes and ketones, as well as gases such as CO and CO2 generated during the pyrolysis, provided the material basis for the chain reaction of a dust explosion. This study systematically elucidated the differences in explosion parameters, flame propagation behavior, and pyrolysis processes of different wood dust, thus providing theoretical support for their explosion risk assessment and safety protection.

IPC Classification

C07B60

Keywords

explosioncharacteristicspyrolysismechanismtypicalwooddustfireexperimentinvestigatedchangesparameterspressurepeakpmaxrisingrateflamepropagationpinecypresspoplardustsdifferent
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