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基于叶片保水力的烟叶烘烤水分干燥模型构建

魏硕 宋朝鹏 李生栋 徐宸 汪代斌 李常军 杨超 黄克久 陈少鹏 郭保银

南方农业学报2017,Vol.48Issue(8):1477-1482,6.
南方农业学报2017,Vol.48Issue(8):1477-1482,6.DOI:10.3969/j.issn.2095-1191.2017.08.23

基于叶片保水力的烟叶烘烤水分干燥模型构建

Tobacco leaf moisture drying model during flue curing based on leaf water holding capacity

魏硕 1宋朝鹏 1李生栋 1徐宸 2汪代斌 2李常军 2杨超 2黄克久 2陈少鹏 2郭保银2

作者信息

  • 1. 河南农业大学 烟草学院,郑州 450002
  • 2. 中国烟草总公司 重庆市公司,重庆 400020
  • 折叠

摘要

Abstract

[Objective]The relationship between moisture drying model parameters and water holding capacity of to-bacco leaves from different tobacco production areas,tobacco varieties,and stalk positions were studied in this experi-ment in order to provide a simple and easy method for moisture prediction during flue curing process and lay a foundation for precise flue curing.[Method]Leaves at different stalk positions of flue-cured tobacco varieties K326 and Yunyan87 in Jiangxi and Hunan were used as test samples. Weighing method was used to measure the water holding capacity of different leaves,moisture content variation in tobacco leaves during curing was fitted combining moisture drying model principle and moisture drying model. Regression analysis was used to analyze water holding capacity of tobacco leaves and the model parameters.[Result]Water holding capacity of leaves at different stalk positions increased with the rising of stalk poso-tions. Among different flue-cured tobacco varieties,water holding capacity of K326 was always higher than Yunyan 87. Water holding capacities of tobacco leaves from Jiangxi tobacco production area were always higher than those from Hunan tobacco production area,except that water holding capacity of K326 upper leaves in Hunan tobacco production ar-ea were higher than those from Jiangxi. Fitting determination coefficient R2 of Wang and Singh model were all bigger than 0.95 in different tobacco production areas,tobacco varieties and stalk positions. In the model,drying parameter a was positively correlated to water holding capacity of tobacco leaves,but it was negatively correlated with drying parameter b. The linear regression result between water holding capacity and model drying parameter a and b indicated that the signifi-cant level P of water holding capacity and model drying parameter a and b were smaller than 0.05,and linear fitting deter-mination coefficient(R2)were higher than 0.95.[Conclusion]The change of tobacco leaf moisture ratio is in line with the Wang and Singh model during normal bulk curing process,and there is extreme significant correlation between water holding capacity of tobacco leaves and drying model parameter a and b. Therefore,changes of tobacco leaves moisture during flue curing process can be predicted by accurate prediction model for water holding capacity of tobacco leaves.

关键词

烟叶保水力/烟区/品种/部位/干燥模型

Key words

water holding capacity of tobacco leaf/tobacco production area/variety/position/drying model

分类

农业科技

引用本文复制引用

魏硕,宋朝鹏,李生栋,徐宸,汪代斌,李常军,杨超,黄克久,陈少鹏,郭保银..基于叶片保水力的烟叶烘烤水分干燥模型构建[J].南方农业学报,2017,48(8):1477-1482,6.

基金项目

中国烟草总公司科技项目(Ts-01-2011006) (Ts-01-2011006)

南方农业学报

OA北大核心CSCDCSTPCD

2095-1191

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