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卷烟抽吸期间区带压降与温度的关系及对烟气常规成分的影响

Zone pressure drop and zone temperature relationship and its influence on yields of selected smoke analytes in mainstream cigarette smoke

  • 摘要: 为探讨卷烟抽吸期间,卷烟压降和燃烧温度之间的关系,设计了一套能够实时测定卷烟燃烧期间压降变化的系统,测定了0~1 s卷烟抽吸燃烧期间的区带(以0.25 s抽吸持续时间为1个区带)压降和区带温度,考察了区带压降和区带温度的逐口变化趋势及二者之间的关系,测定了常规烟气检测成分焦油、烟碱以及水分的逐口释放量,分析了区带压降和区带温度对卷烟烟气常规成分逐口释放量的影响。结果表明:随着抽吸的进行,从第2口到第6口,不同抽吸口序的区带压降峰值、均值及总和均呈降低-升高-降低的变化趋势;每口抽吸对应的区带温度和区带压降的增幅变化趋势相似,区带压降峰值、区带压降均值、区带压降总和均与区带温度极显著正相关(α<0.001);区带压差ΔP与逐口焦油释放量极显著负相关(α<0.001);区带压降是直接影响卷烟燃烧状态的重要因素。

     

    Abstract: Zone pressure drop is one of the important factors affecting the combustion state of cigarette directly.In order to investigate the dynamic zone pressure drop and combustion temperature relationship during cigarette smoking,an in-line pressure transducer system was designed and used to determine the pressure drop during puffing and smoldering in real time.The zone pressure drop and zone temperature during an individual puffing time of 0-1 second under ISO smoking regimen were determined with the puff duration of 0.25 sec as a zone.The variation of the zone pressure drop and the zone temperature were studied on a puff-by-puff basis.The yields of tar and nicotine and water contents in the total particulate matter were also determined on a puff-by-puff basis,and the influences of the zone pressure drop and zone temperature on the yields of these routine analytes in each puff of mainstream smoke were analyzed.The results showed that:1) The corresponding peak value,mean value and total value of the zone pressure drop of different puffs all displayed a decrease-increase-decrease trend from the second to sixth puffs,and the corresponding zone temperature and the zone pressure drop of each puff had a similar variation trend.The peak value,mean value and total value of the zone pressure drop significantly positively correlated to the zone temperature(α<0.001).2) The zone differential pressure △P significantly negatively correlated to the yield of tar per puff(α<0.001).The results provide new details on the dynamic relationship between the zone pressure drop and zone temperature.

     

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