[1]刘亚丽,王金棒,郑新章,等. 加热不燃烧烟草制品发展现状及展望[J]. 中国烟草学报,2018,24(4):91‐106.
LIU Y L,WANG J B,ZHENG X Z,et al. Current status and prospect of heat‐not‐burn tobacco products[J].Acta Tabacaria Sinica,2018,24(4):91‐106.
[2]周昆,杨继,杨柳,等. 加热不燃烧卷烟气溶胶研究进展[J].中国烟草学报,2017,23(5):121‐129.
ZHOU K,YANG J,YANG L,et al. Research advances related to heat‐not‐burn cigarette aerosol[J].Acta Tabacaria Sinica,2017,23(5):121‐129.
[3]董高峰,田永峰,尚善斋,等. 用于加热不燃烧(HnB)卷烟的再造烟叶生产工艺研究进展[J]. 中国烟草学报,2020,26(1):109‐117.
DONG G F,TIAN Y F,SHANG S Z,et al. Production technology of reconstituted tobacco for heat‐not‐burn(HnB)cigarettes:A review[J]. Acta Tabacaria Sinica,2020,26(1):109‐117.
[4]苏鑫,庞永强,李翔宇,等. 加热卷烟芯基材料热性能及气溶胶释放特性分析研究进展[J].中国造纸,2024,43(2):82‐90.
SU X,PANG Y Q,LI X Y,et al. Research progress on thermogravimetry and pyrolysis behavior and aerosol release characteristics of heated‐not‐burn cigarette tobacco material[J].China Pulp & Paper,2024,43(2):82‐90.
[5]高峄涵,黄洁洁,高洁,等. 电加热卷烟传热传质和关键物质释放规律研究进展[J].烟草科技,2022,55(8):100‐112.
GAO Y H,HUANG J J,GAO J,et al. Research progress on mechanism behind heat and mass transfer and key substance release of electrically heated tobacco products[J].Tobacco Science & Technology,2022,55(8):100‐112.
[6]KÄRKELÄ T,TAPPER U,KAJOLINNA T. Comparisonof 3R4F cigarette smoke and IQOS heated tobacco product aerosol emissions[J].Environmental Science and Pollution Research International,2022,29(18):27051‐27069.
[7]窦玉青,沈轶,杨举田,等. 新型烟草制品发展现状及展望[J]. 中国烟草科学,2016,37(5):92‐97.
DOU Y Q,SHEN Y,YANG J T,et al. The development and prospect of novel tobacco products[J]. Chinese Tobacco Science,2016,37(5):92‐97.
[8]郑燕婷,马婉婉,陈欢,等.加热卷烟气溶胶特征性成分及其分析方法研究进展[J].烟草科技,2024,57(2):103‐112.
ZHENG Y T,MA W W,CHEN H,et al. Research progress on characteristic components in aerosol from heated tobacco products and their analytical methods[J].Tobacco Science & Technology,2024,57(2):103‐112.
[9]何红梅,尤晓娟,王鸣,等. 基于单料烟的加热卷烟与传统卷烟香气成分释放差异分析[J].轻工学报,2024,39(3):99‐108.
HE H M,YOU X J,WANG M,et al. Differential analysis in aroma component release between heated cigarettes and traditional cigarettes based on unblended leaf tobacco[J].Journal of Light Industry,2024,39(3):99‐108.
[10]谢剑平. 烟草香原料[M]. 北京:化学工业出版社,2009:95‐101.
XIE J P. Tobacco flavor raw materials[M]. Beijing:Chemical Industry Press,2009:95‐101.
[11]LI P Y,TIAN H Y,HAN L,et al. Synthesis and pyrolysis of various novel pyrrole ester fragrance precursors[J]. Flavour and Fragrance Journal,2023,38 (4):285‐292.
[12]黄世杰,杨泽恩,吕阳波,等.中支卷烟丝束加香酯类和醇类单体香料的逐口转移行为[J]. 烟草科技,2023,56(8):63‐73.
HUANG S J,YANG Z E,LÜ Y B,et al. Puff‐by‐puff transfer of ester and alcoholic monomer flavors from tow of demi‐slim cigarettes[J].Tobacco Science & Technology,2023,56(8):63‐73.
[13]刘晶晶,崔光周,段旺军,等. 生态因素影响烟草香味特征的研究进展[J].河南农业科学,2023,52(2):1‐11.
LIU J J,CUI G Z,DUAN W J,et al. Research progress on the effects of ecological factors on tobacco aroma characteristics[J]. Journal of Henan Agricultural Sciences,2023,52(2):1‐11.
[14]HU X F,XU W,ZHANG Y B,et al. Microstructure observation and flavor substances excavation of Yunyan 87 tobacco leaves with different oil contents[J].Frontiers in Plant Science,2025,16:1537924.
[15]郭琼,王晓瑜,潘立宁,等.GC-MS/MS法分析不同规格卷烟主流烟气醛酮类成分释放量[J].烟草科技,2022,55(1):56‐69.
GUO Q,WANG X Y,PAN L N,et al. Effects of cigarette size on releases of aldehydes and ketones in mainstream smoke analyzed by GC‐MS/MS[J].Tobacco Science & Technology,2022,55(1):56‐69.
[16]景延秋,宫长荣,高玉珍,等. 烟草香味物质及其形成的前体物质研究进展[J].广东海洋大学学报,2006,26(1):94‐98.
JING Y Q,GONG C R,GAO Y Z,et al. Development of the research on aroma compositions of tobacco and the precursor substances[J].Journal of Guangdong Ocean University,2006,26(1):94‐98.
[17]赵光飞,刘静,屠彦刚,等. 气相色谱法同时检测加热不燃烧卷烟芯材中的1,2-丙二醇、烟碱与甘油含量[J]. 中国测试,2019,45(3):69‐74.
ZHAO G F,LIU J,TU Y G,et al. Simultaneous determination of 1,2‐propylene glycol,nicotine and glycerol in heat‐not‐burn cigarette core material by gas chromatography method[J]. China Measurement &Test,2019,45(3):69‐74.
[18]王康,柳均,肖少红,等. GC-TCD法同时检测加热不燃烧卷烟气溶胶水分,及烟碱、丙三醇、1,2-丙二醇、三乙酸甘油酯和薄荷醇的释放量[J]. 烟草科技,2019,52(3):63‐68.
WANG K,LIU J,XIAO S H,et al. Simultaneous determination of moisture content and deliveries of nicotine,glycerol,1,2‐propylene glycol,glycerol triacetate and menthol in aerosol from heat‐not‐burn tobacco products by GC‐TCD method[J]. Tobacco Science & Technology,2019,52(3):63‐68.
[19]赵光飞. 气相色谱法同时检测加热不燃烧卷烟芯材中1,2-丙二醇、烟碱与甘油含量及其应用[D].长沙:湖南农业大学,2021.
ZHAO G F. Simultaneous detection of 1,2‐propylene glycol,nicotine and glycerin content in heating not burn cigarette by gas chromatography and its application [D]. Changsha:Hunan Agricultural University,2021.
[20]肯生叶,温光和,杨雪燕,等.GC-TCD法同时检测加热不燃烧卷烟烟草材料中的水分、1,2-丙二醇、烟碱和丙三醇[J]. 烟草科技,2020,53(5):41‐46.
KEN S Y,WEN G H,YANG X Y,et al. Simultaneous determination of moisture,1,2‐propylene glycol,nicotine and glycerol in tobacco material for heat‐not‐burn products by GC‐TCD[J].Tobacco Science & Technology,2020,53(5):41‐46.
[21]温光和,肯生叶,李峰,等. 加热不燃烧卷烟烟草材料中1,2-丙二醇、丙三醇和烟碱的测定[J].中国烟草科学,2019,40(4):69‐75.
WEN G H,KEN S Y,LI F,et al. Determination of 1,2‐propylene glycol,glycerol and nicotine of tobacco materials in heat‐not‐burn cigarettes[J].Chinese Tobacco Science,2019,40(4):69‐75.
[22]任举,谢焰,张锁慧,等. 加热模式对薄荷型加热卷烟中主要成分的转移率及逐口释放行为的影响[J].中国烟草学报,2022,28(6):1‐10.
REN J,XIE Y,ZHANG S H,et al. Effects of heating mode on the transfer rate and puff‐by‐puff release of main components in mentholated heated tobacco products[J]. Acta Tabacaria Sinica,2022,28(6):1‐10.
[23]徐如彦,朱梦薇,饶先立,等. 醇类香料单体在加热卷烟中的转移行为研究[J].化学试剂,2022,44(6):894‐903.
XU R Y,ZHU M W,RAO X L,et al. Study on transfer behavior of alcohol flavor monomers in heated cigarettes[J]. Chemical Reagents,2022,44(6):894‐903.
[24]陈芝飞,陈泽少,罗灿选,等. 加热卷烟气溶胶中6种酯类单体香料转移行为研究[J].轻工学报,2022,37(3):58‐64.
CHEN Z F,CHEN Z S,LUO C X,et al. Study on transfer behavior of six ester flavors in aerosol of heated tobacco products[J]. Journal of Light Industry,2022,37(3):58‐64.
[25]毛文龙,朱梦薇,饶先立,等. 加热卷烟中酯类香料单体的转移行为[J].中国烟草学报,2022,28(6):11‐19.
MAO W L,ZHU M W,RAO X L,et al. Transfer behavior of ester flavor monomers in heated tobacco products[J]. Acta Tabacaria Sinica,2022,28(6):11‐19.
[26]刘洋,顾丽莉,蔡洁云,等. GC-MS/MS同时测定加热卷烟烟气中的酮类香味成分[J]. 质谱学报,2024,45(3):447‐456.
LIU Y,GU L L,CAI J Y,et al. Simultaneously determination of the ketone flavor composition in the heated tobacco product by GC‐MS/MS[J].Journal of Chinese Mass Spectrometry Society,2024,45(3):447‐456.
[27]陈昆,黄福利,吴承澄,等. 高发射率发热针对加热卷烟温度及气溶胶释放的影响[J].轻工学报,2024,39(6):108‐115.
CHEN K,HUANG F L,WU C C,et al. The impact of high‐emissivity heating pins on temperature and aerosol emission in heated tobacco products[J].Journal of Light Industry,2024,39(6):108‐115.
[28]赵璐,王丙武,高玉龙,等. 基于非烤烟型烟草的加热卷烟化学成分与感官品质关系研究[J].轻工学报,2024,39(3):90‐98.
ZHAO L,WANG B W,GAO Y L,et al. Study on the relationship between chemical composition and sensory quality of heated cigarettes based on non‐flue‐cured tobacco[J]. Journal of Light Industry,2024,39(3):90‐98. [29]范国梁,宋崇林,张延峰,等. GC-MS和GC-FID在定量分析中的差异[J].天津大学学报,2003,36(5):614‐617.
FAN G L,SONG C L,ZHANG Y F,et al. Difference of quantity analysis with quadrupole mass detector and flame ionization detector in gas chromatography[J].Journal of Tianjin University,2003,36(5):614‐617.
[30]MIR F,RATHER M A,DAR B A,et al. Comparative GC‐FID and GC‐MS analysis of the chemical profile of the leaf,stem and root essential oils of Artemisia dracunculus L. growing in Kashmir(India)[J].Journal of Pharmacy Research,2012,5:1353‐1356.
[31]杜明月,郭龙,林勇,等. GC-MS/FID测定环境空气中57种臭氧前体物[J]. 化学研究与应用,2022,34(1):199‐206.
DU Y M,GUO L,LIN Y,et al. Determination of 57 ozone precursors compounds in ambient air by GC‐MS/FID[J].Chemical Research and Application,2022,34 (1):199‐206.
[32]KAUR G,GAURAV A,LAMB T,et al. Current perspectives on characteristics,compositions,and toxicological effects of E‐cigarettes containing tobacco and menthol/mint flavors[J]. Frontiers in Physiology,2020,11:613948.
[33]周慧明,华青,陶立奇,等. 加热非燃烧状态下再造烟叶颗粒香味成分的释放行为[J].烟草科技,2019,52(5):67‐76.
ZHOU H M,HUA Q,TAO L Q,et al. Release behaviors of aroma components from reconstituted tobacco particles under heat‐not‐burn condition[J].Tobacco Science & Technology,2019,52(5):67‐76.
[34]刘梦梦,张媛,孙学辉,等. 稠浆法烟草薄片中甘油含量对加热卷烟烟气香味成分释放的影响[J].中国烟草学报,2023,29(5):1‐11.
LIU M M,ZHANG Y,SUN X H,et al. Effect of glycerol content in reconstituted tobacco made by slurry process on therelease of aromatic components from heated cigarette smok[J]. Acta Tabacaria Sinica,2023,29(5):1‐11.
[35]CZÉGÉNY Z,BOZI J,SEBESTYÉN Z,et al. Thermal behaviour of selected flavour ingredients and additives under simulated cigarette combustion and tobacco heating conditions[J]. Journal of Analytical and Applied Pyrolysis,2016,121:190‐204.
[36]杨建礼,吴成春,宋祖国. 加热不燃烧卷烟加热技术探究[J]. 轻工科技,2023,39(5):23‐26.
YANG J L,WU C C,SONG Z G. Exploration on heating technology of non‐burning cigarettes[J]. Light Industry Science and Technology,2023,39(5):23‐26.
[37]MAHANTA B P,BORA P K,KEMPRAI P,et al.Thermolabile essential oils,aromas and flavours:Degradation pathways,effect of thermal processing and alteration of sensory quality[J]. Food Research International,2021,145:110404.
[38]LI X Y,LUO Y B,JIANG X Y,et al. Chemical analysis and simulated pyrolysis of tobacco heating system 2.2 compared to conventional cigarettes[J]. Nicotine & Tobacco Research,2019,21(1):111‐118.
[39]王峰,卫荣. 二硫化碳解吸-气相色谱法测定空气中醇醚酯类化合物含量[J].实验室检测,2024,2(6):33‐36.
WANG F,WEI R. Determination of alcohol ether ester compounds in air by carbondisulfide desorption‐gas chromatography method[J]. Laboratory Testing,2024,2(6):33‐36.
[40]窦玉青,王超,赵文涛,等. 基于加热卷烟的国内烟草原料低温热解香气成分差异性分析[J]. 甘肃农业大学学报,2024,59(1):203‐210.
DOU Y Q,WANG C,ZHAO W T,et al. Analysis on the difference in aroma components of domestic tobacco raw materials under low temperature pyrolysis based on heated cigarettes[J].Journal of Gansu Agricultural University,2024,59(1):203‐210.
[41]罗海涛,张峻松. 5种烯酮类香料单体在卷烟烟气中的转移行为分析[J]. 食品工业,2012,33(3):136‐138.
LUO H T,ZHANG J S. The transfer behavior of ketone flavors in“Jinsheng”cigarettes[J]. The Food Industry,2012,33(3):136‐138.
[42]陈芝飞,蔡莉莉,郑峰洋,等. 加热卷烟中6种酮类单体香料的转移行为[J].中国烟草学报,2022,28(4):1‐7.
CHEN Z F,CAI L L,ZHENG F Y,et al. Transfer behavior of 6 ketone flavor components in heated tobacco products[J]. Acta Tabacaria Sinica,2022,28 (4):1‐7.
[43]刘洋,顾丽莉,蔡洁云,等. GC-MS/MS同时测定加热卷烟烟气中的酮类香味成分[J]. 质谱学报,2024,45 (3):447‐456.
LIU Y,GU L L,CAI J Y,et al. Simultaneously Determination of the Ketone Flavor Composition in theHeated Tobacco Product by GC‐MS/MS[J]. Journal of Chinese Mass Spectrometry Society,2024,45(3):447‐456.
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