精细化工2016,Vol.33Issue(3) :326-332.DOI:10.13550/j.jxhg.2016.03.015

复合香料植物颗粒的制备及在卷烟中的应用

Preparation of Composite Aromatic Plants Granules and its Application in Cigarette

王猛 杨乾栩 杨莹 陈微 朱保昆
精细化工2016,Vol.33Issue(3) :326-332.DOI:10.13550/j.jxhg.2016.03.015

复合香料植物颗粒的制备及在卷烟中的应用

Preparation of Composite Aromatic Plants Granules and its Application in Cigarette

王猛 1杨乾栩 1杨莹 1陈微 1朱保昆1
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作者信息

  • 1. 云南中烟工业有限责任公司技术中心,云南昆明650231
  • 折叠

摘要

基于突出卷烟特征香韵及彰显产品风格特征的目的,将能强化清香、甜香、花香指标,增强卷烟甜润感的天然香料植物进行复配.采用低温流化床造粒的方法对质量分数为30%的春黄菊、5%玫瑰、25%罗汉果、15%迷迭香、5%香叶天竺葵和20%的麦冬香料植物粉末进行了复合颗粒制备研究.通过Box-Benhnken实验设计对制粒工艺进行优化,得到最佳的制粒效率83.8%和目标颗粒水分7.05%.结果表明:所制备的复合香料植物颗粒在卷烟滤棒中添加,其内含功能成分经主流烟气携带可以有效增加烟香丰富性,明显改善抽吸品质.香料植物中的挥发性成分作为化学物质基础,在烟气粒相物中通过气相色谱-质谱联用技术鉴定.

Abstract

Based on promoting the aroma note of cigarette and highlighting product styles,aromatic plants Granules were prepared by low-temperature fluidized bed granulation process,which was added into cigarette filter to improve the style characteristics of fresh smell,sweet scent and flower fragrance,and enhancement of aroma and moisture feature.30% Anthemis tinctoria,5% Rosarugosa,25% Siraitia grosvenorii,15 % Rosmarinus officinalis and 5% Pelargoniumhortorum mixed with 20% Ophitopogin japonicum were compound as aromatic plant raw materials.The optimal operational parameters of spray granulation processing of aromatic plants were obtained based on Box-Benhnken experimental design,in order to achieve the higher efficiency of 83.8% with granulated and the moisture content of 7.05% with target particles.In conclusion,the addition of aromatic plants granules in cigarette filter increased the concentration and richness of aroma and improved sensory quality of cigarettes.Volatile constituents of composite aromatic plants Granules were carried forward into mainstream smoke,which as material basis were characterized by GC-MS.

关键词

香料植物/特征香韵/流化床制粒/感官质量/香料与香精

Key words

aromatic plants/aroma note/fluidized bed granulation/sensory quality/perfumes and essences

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基金项目

云南省重点新产品开发计划项目(2015BA006)

云南中烟科技项目(2015CP04)

出版年

2016
精细化工
大连化工研究院设计院 中国化工学会精细化工专业委员会 辽宁省化工研究院

精细化工

CSTPCDCSCD北大核心
影响因子:0.557
ISSN:1003-5214
被引量9
参考文献量18
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