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基于烟草热解差异度分析的烟叶替代方法

Method of tobacco substitution based on differential analysis of tobacco pyrolysis

  • 摘要: 为便于卷烟配方维护,基于热重分析手段,建立120种烟叶的热重数据库,采用标准均方根误差NRMSE评价烟草样品之间的热解差异度。在配方烟叶间开展烟叶替代实验,针对某牌号卷烟A中9种需要被替代的单等级烟叶,通过热解差异度计算,在120种烟叶中选择与被替代单等级烟叶热解差异度最小的烟叶,形成基于热解差异度替代方案,并与人工替代方案进行对比。结果表明:①基于热解差异度替代方案的卷烟与原始配方卷烟热解差异度更为接近,NRMSE为3.44%,而人工替代方案的卷烟热解差异度NRMSE为4.88%。②基于热解差异度替代方案的卷烟与人工替代方案的卷烟相比,其与原始配方卷烟的常规化学成分和感官特性更接近,两种替代方案的卷烟与原始配方卷烟的物理指标以及焦油、烟碱和CO释放量较接近。③在验证实验中,针对某牌号卷烟B中5种需要被替代的单等级烟叶,通过热解差异度计算形成3种替换方案,其感官评吸和烟气分析结果表明,最佳替代方案可满足应用要求,进一步说明基于热解差异度的替代方法可达到人工替代的水平。

     

    Abstract: In order to provide a method for carrying out efficient tobacco substitution in cigarette blend maintenance, a research on the basis of differential analysis of tobacco pyrolysis was conducted. A thermogravimetric database of 120 kinds of tobacco leaves was established by TGA (Thermogravimetric Analyzer) technology, and the pyrolysis differential between tobacco samples was analyzed via NRMSE (Normalized root mean squared error). In an exemplary experiment, 9 grades of tobacco leaves in the blend of cigarette brand A were substituted respectively by their counterparts with the nearest pyrolysis profiles selected from the said database. The substituted sample determined by pyrolysis profile was compared with a substituted sample determined by blender, the results showed that:1) The pyrolysis differential based sample had a smaller NRMSE of 3.44%, and NRMSE of the substituted sample determined by blender was 4.88% while compared with the original blend in terms of pyrolysis differential. 2) In terms of routine chemical components and sensory characteristics, the pyrolysis differential based sample was closer to those of the original blend; however, the physical indexes and the deliveries of tar, nicotine and CO of the two substituted samples were all close to the original blend. 3) In a verification experiment, 5 grades of tobacco leaves in the blend of cigarette brand B were to be substituted, 3 substituted schemes were determined on the basis of pyrolysis differential, and the results of sensory evaluation and cigarette smoke analysis indicated that the optimal substituted blend could satisfy the application requirements, which further suggested that the substituted scheme based on pyrolysis differential was comparable to blender's subjective substituted scheme.

     

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