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通风、加长滤嘴对卷烟主流烟气粒相物中挥发性、半挥发性酸性成分释放量的影响
引用本文:李炎强,宗永立,屈展,杨春强,谢剑平,戴建国. 通风、加长滤嘴对卷烟主流烟气粒相物中挥发性、半挥发性酸性成分释放量的影响[J]. 中国烟草学报, 2011, 17(3): 7-10. DOI: 10.3969/j.issn.1004-5708.2011.03.002
作者姓名:李炎强  宗永立  屈展  杨春强  谢剑平  戴建国
作者单位:1. 中国烟草总公司郑州烟草研究院,香精香料研究室,郑州市高新区枫杨街2号450001
2. 河南中烟工业有限责任公司,技术中心,郑州市陇海路72号450000
基金项目:国家烟草专卖局重点科研项目“中式卷烟香精香料核心技术研究”子课题“低焦油卷烟香味补偿技术研究”合同号:110200401043;计划文号:国烟科[2004]615号
摘    要:卷烟主流烟气粒相物经二氯甲烷浸提,进行GC/MS分析,对通风、加长滤嘴后卷烟主流烟气粒相物中21种挥发性、半挥发性酸性成分的变化进行了分析研究。结果表明:通风度20%卷烟2、5 mm滤嘴卷烟与参比卷烟(20 mm滤嘴、不打孔)相比,21种酸性成分总量分别减少了22.1%、26.3%。通风、加长滤嘴后卷烟主流烟气粒相物中不同酸性成分减少的程度不同,分子量较小、沸点较低的物质减少较多,而分子量较大、沸点较高的物质减少较少。

关 键 词:滤嘴  稀释度  酸性成分  总粒相物

Effects of ventilation dilution and filter elongation on delivery of volatile and semi-volatile acidic components in mainstream smoke particulate matters
LI Yan-qiang,ZONG Yong-li,QU Zhan,YANG Chun-qiang,XIE Jian-ping,DAI Jian-guo. Effects of ventilation dilution and filter elongation on delivery of volatile and semi-volatile acidic components in mainstream smoke particulate matters[J]. Acta Tabacaria Sinica, 2011, 17(3): 7-10. DOI: 10.3969/j.issn.1004-5708.2011.03.002
Authors:LI Yan-qiang  ZONG Yong-li  QU Zhan  YANG Chun-qiang  XIE Jian-ping  DAI Jian-guo
Affiliation:LI Yan-qiang1,ZONG Yong-li1,QU Zhan1,YANG Chun-qiang1,XIE Jian-ping1,DAI Jian-guo21 Flavors Research & Development Center,Zhengzhou Tobacco Research Institute of CNTC Zhengzhou 450001 China,2 Technical Centre,China Tobacco Henan Industrial Co.,LTD.Zhengzhou 450000 China
Abstract:Effects of ventilation dilution and filter elongation on twenty-one volatile and semi-volatile acidic components in mainstream smoke particulate matters were studied through analyzing dichloromethane extract of smoke particulate by GC/MS. Results showed that total amount of twenty-one acids produced by 20% dilution of cigarette and 25 mm filter cigarette were reduced by 22.1%,26.3% compared with a reference cigarette respectively.Reducing level of each acid is different.The acids with lower molecular weight...
Keywords:filter  ventilation dilution  acidic components  total particulate matters  
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