低氧加热状态下温度对加热卷烟用再造烟叶热转化的影响
Effect of temperature on pyrolysis characteristic of reconstituted tobacco for heated tobacco products under low-oxygen heating condition
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摘要: 为探究低氧条件下加热温度对烟草热解释放物及固相残余物理化结构演变的影响规律,使用管式炉反应器实现低氧条件下不同加热温度再造烟叶烟气成分捕集及固相残余物制备,通过GC-MS分析系统完成代表性烟气成分检测,并采用多种分析表征技术检测固相残余物的微观结构和化学组成。结果表明:再造烟叶受热过程中,甘油、丙二醇、烟碱等基础物质受热后多直接转移至烟气气溶胶中,巴豆醛、羟基丙酮、异戊二烯等随温度升高释放量增加,萘随温度升高释放量降低,愈创木酚、甲酚、苯酚、2,3-丁二酮、1-羟基-2-丁酮、2(5H)-呋喃酮等随温度变化呈现波动性,烟气中以异戊二烯为代表的低温裂解挥发性化合物相对含量随温度的升高而增加;固相残余物纤维骨架灰化程度随温度的升高而增加,370℃之前再造烟叶主要以低沸点物质的挥发/蒸馏及半纤维素和纤维素的脱羟/脱羧反应为主,随温度升高热解过程中存在氧化反应,且再造烟叶表面上更稳定的含氧官能团相对含量突增。Abstract: To investigate the influence of heating temperature on the evolution of physical and chemical structures of thermal interpreted emissions and solid phase residues in tobacco under low-oxygen atmosphere, a tubular furnace reactor was used to capture the smoke components of reconstituted tobacco leaves at different heating temperatures under low oxygen concentration and prepare solid phase residues. Representative smoke components were detected by GC-MS, and various analysis and characterization techniques were used to detect the microstructure and chemical composition of solid phase residues. The results showed that during the heating process of reconstituted tobacco leaves, the basic substances such as glycerol, propylene glycol, and nicotine were mostly directly transferred to the smoke aerosol after being heated. The release of crotonaldehyde, hydroxyacetone, isoprene, and benzene derivatives increased with increasing temperature, while the release of naphthalene decreased with increasing temperature. Phenolic ketone components such as guaiacol, cresol, phenol, 2,3-butanedione, 1-hydroxy-2-butanone, and 2 (5H)-furanone exhibited fluctuations with temperature changes; The representative volatile compounds represented by low-temperature cracking of isoprene in flue gas increase with the increase of temperature; The degree of ashing of the solid residue fiber skeleton increases with the increase of temperature; Before 370 ℃, the reconstituted tobacco leaves were mainly characterized by volatilization, distillation, and the dehydroxylation/decarboxylation of hemicellulose and cellulose. With the increase of temperature, there was an oxidation reaction in the pyrolysis process, and the proportion of more stable oxygen containing functional groups on the surface of the reconstituted tobacco leaves increased sharply.
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-
[1]
王孝峰,周顺,何庆,等.加热状态下烟草气溶胶释放特性的影响因素:温度、甘油和气氛[J].烟草科技,2017,50(10):48-54.
-
[2]
司晓喜,罗萌柔,尤俊衡,等.加热温度对气溶胶化学成分释放的影响[J].烟草科技,2022,55(12):46-58.
-
[3]
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.
-
[4]
周顺,王孝峰,郭东锋,等.低温加热状态下烤烟气溶胶释放量及其影响因素[J].烟草科技,2015,48(5):34-40.
-
[5]
李朝建,饶先立,郑晓云,等.不同工艺制备的加热卷烟烟草薄片热失重行为研究[J].轻工学报,2022,37(1):55-61.
-
[6]
崔华鹏,陈黎,樊美娟,等.加热温度对加热卷烟气溶胶物理特性的影响[J].烟草科技,2022,55(4):36-41.
-
[7]
霍现宽,刘珊,崔凯,等.加热状态下烟草烟气香味成分释放特征[J].烟草科技,2017,50(8):37-45.
-
[8]
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.
-
[9]
周慧明,华青,刘广超,等.加热非燃烧状态下烟草制品的TSNAs释放规律[J].中国烟草科学,2019,40(1):82-88.
-
[10]
EATON D,JAKAJ B,FORSTER M,et al.Assessment of tobacco heating product THP1.0.Part 2:Product design, operation and thermophysical characterisation[J].Regulatory Toxicology and Pharmacology,2018,93:4-13.
-
[11]
LI B,SUN Y,FU L L,et al.Aerosol formation and transfer in open-and closed-ended heated tobacco products[J].Contributions to Tobacco & Nicotine Research,2022,31(3):162-174.
-
[12]
张柯,雷萍,付丽丽,等.自然烟气产品(NSC)品类构建及关键技术的基础研究[R].昆明:云南中烟工业有限责任公司,2021.
-
[13]
GUO Z Y,WANG S Y,ZHANG K,et al.Thermal de-oxygenation to form condensable aerosol from reconstituted tobacco without auto-ignition[J].Contributions to Tobacco & Nicotine Research,2022,31(3):130-141.
-
[14]
王诗雨.烟草着火特性检测方法及影响因素研究[D].郑州:中国烟草总公司郑州烟草研究院,2021.
-
[15]
HOFER I,GAUTIER L,SAUTEUR E C,et al.A Screening method by gas chromatography-mass spectrometry for the quantification of 24 aerosol constituents from heat-not-burn tobacco products[J].Contributions to Tobacco & Nicotine Research,2019,28(7):317-328.
-
[16]
司晓喜,唐石云,朱瑞芝,等.不同原料稠浆法再造烟叶加热卷烟的气溶胶释放特性[J].中国烟草学报,2021,27(6):1-9.
-
[17]
GUO Z Y,ZHANG K,ZHANG Q,et al.Tobacco fractionation and its effects on pyrolysis chemistry[J].Journal of Analytical and Applied Pyrolysis,2022,167:105650.
-
[18]
谢复炜,赵明月,王昇,等.卷烟主流、侧流烟气中酚类化合物的高效液相色谱测定[J].烟草科技,2004(5):6-10.
-
[19]
KAR F,ARSLAN N.Effect of temperature and concentration on viscosity of orange peel pectin solutions and intrinsic viscosity-molecular weight relationship[J].Carbohydrate Polymers,1999,40(4):277-284.
-
[20]
薄采颖,周永红,胡立红,等.超(亚)临界水热液化降解木质素为酚类化学品的研究进展[J].高分子材料科学与工程,2014(11):185-190.
-
[21]
谢剑平.烟草与烟气化学成分[M].北京:化学工业出版社,2011.
-
[22]
FRENCH A D.Idealized powder diffraction patterns for cellulose polymorphs[J].Cellulose,2014,21:885-896.
-
[23]
FRENCH A D,SANTIAGO C M.Cellulose polymorphy, crystallite size,and the Segal Crystallinity Index[J].Cellulose,2013,20:583-588.
-
[24]
IM H,RASOULI F,HAJALIGOL M.Formation of nitric oxide during tobacco oxidation[J].Journal of Agricultural and Food Chemistry,2003,51(25):7366-7372.
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