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点燃和加热条件下不同滤嘴通风率卷烟的气溶胶释放特征

Aerosol release characteristics of cigarettes with different filter ventilation rates during burning or heating

  • 摘要: 为研究滤嘴通风率对不同类型卷烟烟气气溶胶释放的影响,制备了不同滤嘴通风率的两用型烟支(可燃吸、配套加热烟具加热后抽吸),采用气相色谱仪(GC)和DMS500快速粒径谱仪,研究了点燃和加热条件下烟气气溶胶中的主要化学成分和粒径分布。结果表明:①在点燃和加热条件下,烟气出口温度均随滤嘴通风率的增加逐渐降低。②随着滤嘴通风率从0增加至64.08%,在点燃条件下,总粒相物及粒相物中烟碱、丙二醇、丙三醇和水分的释放量减少;在加热条件下,总粒相物、粒相物中烟碱和丙三醇的释放量先增加后略微减少,粒相物中丙二醇的释放量增加,粒相物和气相物中水分的释放量减少。③随着滤嘴通风率的增加,在点燃条件下,烟气气溶胶粒径均分布在60~2 000 nm范围内,粒数浓度减小,粒数中值粒径(CMD)增大;在加热条件下,滤嘴通风率为0时,烟气气溶胶粒径主要分布在40~500 nm;滤嘴通风率为47.86%和64.08%时,粒径主要分布在40~1 000 nm,粒数浓度与粒子体积浓度先增加后减小,CMD和体积中值粒径(VMD)增大。该研究结果可为卷烟通风打孔工艺参数的选择优化提供科学依据。

     

    Abstract: To study the effects of filter ventilation rate on the aerosol release characteristics of different types of cigarettes, dual-purpose cigarette samples (smoking after lighting and smoking after heating with a matching heating device) with different filter ventilation rates were prepared. Gas chromatography (GC) and DMS500 fast particle size spectrometer were used to study the main chemical components and particle size distribution in the aerosols generated from the samples during burning or heating. The results showed that: 1) During burning or heating, the temperature of smoke out of the mouth end of cigarette decreased gradually with the increase of filter ventilation rate. 2) With the increase of filter ventilation rate from 0 to 64.08%, the releases of total particulate matter and the nicotine, propylene glycol, glycerol and moisture in particulate phase decreased during burning. The releases of total particulate matter and the nicotine and glycerol in particle phase increased first and then decreased slightly, the releases of propylene glycol in particle phase increased, and the moisture release in particle phase and gas phase decreased during heating. 3) With the increase of filter ventilation rate, the particle size of the aerosol distributed from 60 to 2 000 nm, the particle number concentration of the aerosol decreased, and the count median diameter (CMD) increased during burning. In the process of heating, the particle size of the aerosol mainly distributed from 40 to 500 nm at zero filter ventilation rate and it mainly distributed from 40 to 1 000 nm at the filter ventilation rate of 47.86% and 64.08%, the particle number concentration and particle volume concentration increased first and then decreased, while CMD and volume median diameter (VMD) increased. The above results provide a scientific basis for the selection and optimization of cigarette ventilation and perforation parameters.

     

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