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Modelling diffusion of fragrances: A radial perspective

机译:香水模拟扩散:径向透视

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In the present study, a theoretical model based on Fick's second law for radial diffusion is proposed for modelling the radial diffusion of fragrances. For that, three fragrance systems were studied containing alpha-pinene and limonene as pure components, or a mixture of alpha-pinene, limonene, linalool, and geranyl acetate. This model combines the UNIFAC group contribution method for the vapour-liquid equilibrium with the Fickian radial diffusion model. The experimental gas concentrations of the odorant components were measured in a diffusion tube (1D axial diffusion) and quantified using gas chromatography with a flame ionization detector. The numerical solutions were obtained using the general Process Modelling Systems (gPROMS) software version 4.2.0. An equivalence relation between the 1D axial diffusion model and 1D radial diffusion model was developed. Finally, the odour intensity and character of the studied fragrance systems were assessed using Stevens' power law and the strongest component model, respectively. The obtained results showed good agreement between the numerical simulation and the experimental gas concentration data, suggesting the proposed methodology as an efficient tool to assess the radial diffusion of fragrance systems over time and distance.
机译:在本研究中,提出了一种基于Fick第二辐射扩散法的理论模型,用于建模香料的径向扩散。为此,研究了三种香料系统,含有α-拼烯和柠檬烯作为纯组分,或α-拼烯,柠檬烯,烯烯烃和乙酸甲酸甲酯的混合物。该模型结合了与Fickian径向扩散模型的汽液平衡的Unifac Group贡献方法。在扩散管(1D轴向扩散)中测量气味组分的实验气体浓度,并使用气相色谱法与火焰离子化检测器进行定量。使用一般过程建模系统(GPROM)软件版本4.2.0获得数值解决方案。开发了1D轴向扩散模型和1D径向扩散模型之间的等效关系。最后,使用史蒂文斯的电力法和最强的组成模型评估研究的香味系统的气味强度和特征。所得结果在数值模拟和实验气体浓度数据之间表现出良好的一致性,建议提出的方法作为评估香味系统随着时间的推移径向扩散的有效工具。

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