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March 28, 2026Chemie Ingenieur Technik0 citationsOpen Access

Influence of Particle Size, Moisture, and Cloud Density on Wood Dust Ignition

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MGMatteo GiesenDBDaniel BernhardtMBMichael Beckmann

Key Points

  • The research aims to understand how particle size, moisture content, and cloud density affect wood dust ignition and combustion.
  • Utilized spectroscopic measurements to analyze ignition and combustion behavior.
  • Examined the influence of varying particle sizes on ignition delay times.
  • Assessed the impact of moisture content and cloud density on combustion duration.
  • Ignition delay time increases with larger particle size and higher cloud density due to lower heating rates.
  • Combustion duration is mainly affected by moisture content and cloud density.
  • Increased moisture causes fragmentation that shortens burnout, while high volatiles delay oxygen diffusion in dense clouds.

Abstract

ABSTRACT The ignition and combustion behavior of particle clouds is a key factor in designing and operating burners and combustion chambers. Because particle–particle interactions significantly impact these processes, research beyond single‐particle studies is necessary. This study analyzes the influence of particle size, water content, and particle cloud density on ignition and combustion behavior using spectroscopic measurements. The results show that ignition delay time increases with increasing particle size and cloud density due to reduced heating rates. In contrast, combustion duration is primarily determined by water content and cloud density. Fragmentation induced by moisture shortens, whereas the high amount of volatiles obstructs oxygen diffusion in dense particle clouds prolongs burnout.

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Cite This Study

Giesen et al. (2026) studied this question.

synapsesocial.com/papers/69c7724e8bbfbc51511e2a45https://doi.org/10.1002/cite.70091
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