Structure analysis and size distribution of particulate matter from candles and kerosene combustion in burning chamber

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Abstract

Burning of candles generates particulate matter of fine dimensions that produces poor indoor air quality, so it may cause harmful impact on human health. In this study solid aerosol particles of burning of candles of different composition and kerosene combustion were collected in a closed laboratory system. Present work describes particulate matter collection for structure analysis and the relationship between source and size distribution of particulate matter. The formation mechanism of particulate matter and their tendency to agglomerate also are described. Particles obtained from kerosene combustion have normal size distribution. Whereas, particles generated from the burning of stearin candles have distribution shifted towards finer particle size range. If an additive of stearin to paraffin candle is used, particle size distribution is also observed in range of towards finer particles. A tendency to form agglomerates in a short time is observed in case of particles obtained from kerosene combustion, while in case of particles obtained from burning of candles of different composition such a tendency is not observed. Particles from candles and kerosene combustion are Aitken and accumulation mode particles © Published under licence by IOP Publishing Ltd.

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Baitimirova, M., Osite, A., Katkevics, J., & Viksna, A. (2012). Structure analysis and size distribution of particulate matter from candles and kerosene combustion in burning chamber. In IOP Conference Series: Materials Science and Engineering (Vol. 38). https://doi.org/10.1088/1757-899X/38/1/012056

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