JOURNAL OF LIGHT INDUSTRY

CN 41-1437/TS  ISSN 2096-1553

Volume 37 Issue 1
March 2022
Article Contents
YANG Longyan, ZHANG Dingjie, NING Zhenxing, et al. Study on the transfer behavior of alcohol flavors used in filter stick perfuming[J]. Journal of Light Industry, 2022, 37(1): 87-94. doi: 10.12187/2022.01.012
Citation: YANG Longyan, ZHANG Dingjie, NING Zhenxing, et al. Study on the transfer behavior of alcohol flavors used in filter stick perfuming[J]. Journal of Light Industry, 2022, 37(1): 87-94. doi: 10.12187/2022.01.012 shu

Study on the transfer behavior of alcohol flavors used in filter stick perfuming

  • Received Date: 2021-06-07
  • 13 kinds of alcohol flavors were added to cigarette filter rods, the extraction conditions of flavors in cigarettes were optimized, the GC-MS analysis method of alcohol homologous compounds was established, and the transfer behavior of alcohol flavors in cigarettes during storage and smoking was studied. The results showed that:when the extraction solvent was absolute ethanol, the extraction method was ultrasonic vibration, the extraction solvent volume was 6 mL, the extraction time was 20 minutes, the extraction amount of alcohol flavors was the highest. The linearity of 13 alcohol flavors was good in the concentration range of 0.63~10.00 μg/mL, and the precision and recovery rate were high. During storage period, the filter retention rate of 13 alcohol flavors was 9.68%~52.03%, the migration rate of tobacco was 1.06%~17.36%, and the loss rate was 36.88%~87.01%; during smoking, the mainstream smoke transfer rate of 13 alcohol flavors was 0~14.49%, the filter residue rate was 14.78%~73.25%. The filter retention rate and the smoke transfer rate of pentadecanol were relatively high high, the tobacco migration rate, the loss rate, and the filter residue rate were relatively low, so it was suitable for being used in the filter-flavored cigarettes. The transfer behavior of alcohol flavors that were cis and trans isomers were similar during storagin and smoking; alcohol flavors that were homologous to each other had similar transfer behaviors. In summary, with the molecular weight and boiling point increasing, the filter retention rate, flue gas transfer rate, and filter residue rate gradually increased, while the loss rate gradually decreased.
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