利用近红外光谱技术快速检测配方烟丝掺配均匀性
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(1. 郑州轻工业学院烟草科学与工程学院,河南 郑州 450001;2. 河南中烟工业有限责任公司安阳卷烟厂,河南 安阳 455000)

作者简介:

李瑞丽,女,郑州轻工业大学副教授,博士。

通讯作者:

王建民(1963—),男,郑州轻工业大学教授,硕士。E-mail:wjm163@163.com

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基金项目:

郑州轻工业学院博士科研基金项目(编号:2016BSJJ020);河南中烟工业有限责任公司项目 (编号:ZN2015036)


Study on rapid determination of tobacco blending uniformity by Near Infrared Spectroscopy
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(1. School of Tobacco Science and Engineering, Zhengzhou University of Light Industry, Zhengzhou, Henan 450001, China; 2. Anyang Cigarette Factory, China Tobacco Henan Industry Co., Ltd., Anyang, Henan 455000, China)

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    摘要:

    采用主成分分析构建反映主要化学成分含量及衍生指标值的统计量F得分,以F得分作为表征烟丝组分掺配均匀性的特性值。采集不同组分比例烟丝样品的近红外光谱数据,采用MSC结合一阶导数和S-G平滑处理将光谱信息进行预处理,提高信噪比,选择光谱范围为4 281.2~4 485.6,5 542.4~6 024.5,6 043.8~7 135.3 cm-1,采用PLS法建立统计量F得分的近红外光谱模型,模型的决定系数(R2)为0.996,RMSECV为0.269,模型预测性能好,预测精度高。说明利用近红外技术可快速预测配方烟丝样品的统计量F得分,实现卷烟加工过程中烟丝掺配均匀性的快速检测。

    Abstract:

    Based on the principal component analysis, we established F score statistics to reflect comprehensive information about main chemical composition and their ratio and used F score as the characteristic value to characterize the homogeneity of formula tobacco. We detected the near-infrared spectral of tobacco samples with different formula tobacco and founded the near-infrared spectral model of F score by using the partial least square method based on the range of 4 281.2~4 485.6,5 542.4~6 024.5,6 043.8~7 135.3 cm-1 spectroscopy pretreated by multiplicative signal correction and first-order derivative and Savitzkyt-Golay smoothing. The determinant coefficient of F score model was 0.996, and RMSECV was 0.269. The model was found to have good prediction performance and high prediction accuracy. The F statistics score of tobacco samples could be predicted quickly by NIR, and this provided a rapid and efficient monitoring method of tobacco blending uniformity and a technical guidance to the regulation and control of cigarette homogenization production.

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李瑞丽,刘玉叶,李文伟,等.利用近红外光谱技术快速检测配方烟丝掺配均匀性[J].食品与机械,2019,(5):83-87.
LIRuili, LIUYuye, LIWenwei, et al. Study on rapid determination of tobacco blending uniformity by Near Infrared Spectroscopy[J]. Food & Machinery,2019,(5):83-87.

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  • 收稿日期:2018-12-27
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  • 在线发布日期: 2022-11-26
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