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首页> 外文期刊>Journal of thermal analysis and calorimetry >Characterization of moisture mobility and diffusion in fresh tobacco leaves during drying by the TG-NMR analysis
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Characterization of moisture mobility and diffusion in fresh tobacco leaves during drying by the TG-NMR analysis

机译:TG-NMR分析在干燥过程中新鲜烟叶中水分迁移率和扩散的特征

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摘要

Curing is an essential procedure in tobacco primary processing. The moisture mobility and diffusion characteristics during drying are the key factors that affect the curing condition optimization. In the present study, the thermogravimetric analysis (TG) was integrated to the online nuclear magnetic resonance analysis (NMR) to investigate the drying characteristics of fresh tobacco leaves (FTL) during hot air drying at 50 and 60 degrees C. The results of TG were used to analyze the drying kinetics and obtain the effective diffusion coefficient of moisture of FTL during drying. The moisture diffusion coefficient of FTL was 4.1782E-09m(2)s(-1) at 50 degrees C and 5.7777E-09m(2)s(-1) at 60 degrees C, respectively. The moisture mobility of the samples at different drying stages was monitored by the NMR analyzer. T-2 spectra showed that the initial ratios of semi-bound water and bound water in FTL were 93.2 and 6.8%, respectively. The drying rate showed a decreasing trend with the reduction in relaxation time of T-22 peak from about 80ms to about 30ms, especially for the ones dried at 60 degrees C. The reduced relaxation time of T-22 peak indicated that water activity in FTL was weakened during drying. Moisture distribution obtained by magnetic resonance imaging in FTL at different drying stages can reveal the moisture transfer path.
机译:固化是烟草初级处理中的基本程序。干燥过程中的水分迁移率和扩散特性是影响固化条件优化的关键因素。在本研究中,将热重分析(TG)集成到在线核磁共振分析(NMR),以研究在50和60摄氏度的热风干燥过程中新鲜烟草叶(FTL)的干燥特性。TG的结果用于分析干燥动力学,并在干燥过程中获得FTL的有效扩散系数。 FTL的水分扩散系数分别在50℃和5.7777E-09M(2)S(2)S(2)S(2)S(2)S(2)S(2)S(-1)处为60℃。通过NMR分析仪监测不同干燥阶段的样品的水分迁移率。 T-2光谱表明,FTL中半结合水和结合水的初始比例分别为93.2和6.8%。干燥速率表明,T-22峰值的弛豫时间降低降低趋势从约80ms至约30ms,特别是在60℃下干燥的时间。T-22峰的降低的松弛时间表明FTL中的水活性在干燥过程中被削弱了。在不同干燥阶段的FTL中通过磁共振成像获得的水分分布可以揭示水分转移路径。

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