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Elucidating the effects of particle sizes on the fire extinguishing performance of core-shell dry water

机译:阐明粒径对核壳干水灭火性能的影响

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摘要

Core-shell dry water (DW) has attracted significant attention as a promising candidate for future fire extinguishing agents, owing to its high water content, powdery structure and ease of handling. However, the lack of detailed information regarding the characteristics of DW has considerably hindered efforts to improve its fire extinguishing performance. This study is the first attempt to elucidate the origin of the effects of particle size of DW on fire extinguishment. Pristine DW was fractionated into three different particle sizes via careful sieving. Through systematic analyses, it could be determined that smaller DW could be vaporized at lower temperatures, thereby facilitating good cooling and smoldering of flames. However, small DW cannot sufficiently penetrate flames, which makes it difficult to reach the burning surface. However, medium-sized DW exhibited a balance in its cooling, smoldering, and penetration effects. Thus, it achieved better performance in fire extinguishment when compared to small- and large-sized DWs. It was also demonstrated that the fire extinguishing capability of medium-sized DW can be significantly enhanced by adding NaHCO(3)in the water core of the DW.
机译:核心壳干水(DW)由于其高含水量,粉状结构和易于处理,因此吸引了未来灭火剂的有希望的候选者。然而,缺乏关于DW的特征的详细信息,大大阻碍了改善其灭火性能的努力。本研究首次试图阐明DW粒度对灭火器的影响的起源。通过仔细筛分将原始DW分解成三种不同的颗粒尺寸。通过系统分析,可以确定较小的DW可以在较低的温度下蒸发,从而促进良好的冷却和火焰的闷烧。然而,小DW不能充分渗透火焰,这使得难以到达燃烧的表面。然而,中等大小的DW在其冷却,闷烧和渗透效应中表现出平衡。因此,与小型和大型DWS相比,它在灭火时实现了更好的性能。还证实,通过在DW的水核中加入NaHCO(3),可以显着提高中等尺寸DW的灭火能力。

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