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Adsorption and desorption behaviors of flavor molecules into a microporous pillared clay mineral and the application to flavor capsule composites

机译:风味分子在微孔柱状粘土矿物中的吸附和解吸行为及其在风味胶囊复合材料中的应用

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We have investigated adsorption and desorption behaviors of Hinokitiol, Vanillin and 3-Phenyl-2-propen-1-ol (POO) into microporous montmorillonite pillared with tetramethylammonium ions (TMA-Mnt) in order to examine the ability of TMA-Mnt to retain volatile flavor molecules, with a view to applying TMA-Mnt as a capsule for the preparation of flavor/polymer composites. The treatment of TMA-Mnt with Hinokitiol, Vanillin and POO in n-hexane at 313 K caused the adsorption of these molecules on the internal and external surfaces of TMA-Mnt. Their adsorption isotherms, having Langmuir adsorption form, revealed that these compounds occupy 62-131, 23-62 and 38-102% of these total capacities in TMA-Mnt. Differential thermal analysis and thermo gravimetric (DTA-TG) measurements of the resultant Hinokitiol/, Vanillin/ and POO/TMA-Mnt compounds showed that exothermic peaks and weight losses due to the decomposition or desorption of these molecules were observed above their sublimation temperatures. This indicates that their desorptions were suppressed above the sublimation temperatures owing to their immobilization in TMA-Mnt. Detailed analyses revealed that the adsorption of these compounds into the micropores decreases their volatility at higher temperatures, demonstrating the ability of TMA-Mnt to retain the volatile flavor compounds. Hinokitiol/ TMA-Mnt compound was subsequently mixed with molten poly(ethylene terephthalate) (PET) to examine the desorption behavior of Hinokitiol molecules from the PET composite. A comparison of Hinokitiol/TMA-Mnt/PET and Hinokitiol/PET exposed to temperatures of 333, 373 and 413 K showed that the desorption of Hinokitiol molecules was suppressed in Hinokitiol/TMA-Mnt/ PET due to their entrapment in the micropores of TMA-Mnt, while the molecules were easily desorbed from Hinokitiol/PET. Consequently, we have found that TMA-Mnt successfully encapsulates volatile flavor compounds in a polymer composite.
机译:我们研究了Hinokitiol,Vanillin和3-Phenyl-2-propen-1-ol(POO)在带有四甲基铵离子(TMA-Mnt)的微孔蒙脱土中的吸附和解吸行为,以便研究TMA-Mnt保留的能力挥发性香料分子,以期将TMA-Mnt用作制备香料/聚合物复合材料的胶囊。在313 K在正己烷中用Hinokitiol,Vanillin和POO处理TMA-Mnt导致这些分子吸附在TMA-Mnt的内表面和外表面上。它们具有Langmuir吸附形式的吸附等温线表明,这些化合物在TMA-Mnt中占这些总容量的62-131%,23-62%和38-102%。所得Hinokitiol /,Vanillin /和POO / TMA-Mnt化合物的差示热分析和热重(DTA-TG)测量表明,在这些分子的升华温度以上,观察到由于这些分子的分解或解吸而引起的放热峰和重量损失。这表明,由于它们固定在TMA-Mnt中,因此在高于升华温度时,其解吸作用受到抑制。详细的分析表明,这些化合物在微孔中的吸附会降低其在较高温度下的挥发性,这表明TMA-Mnt能够保留挥发性风味化合物。随后将Hinokitiol / TMA-Mnt化合物与熔融的聚对苯二甲酸乙二醇酯(PET)混合,以检查Hinokitiol分子从PET复合材料中的解吸行为。将Hinokitiol / TMA-Mnt / PET和Hinokitiol / PET暴露于333、373和413 K的温度进行比较,结果表明Hinokitiol / TMA-Mnt / PET中的Hinokitiol分子解吸由于其滞留在TMA微孔中而受到抑制-Mnt,而分子很容易从Hinokitiol / PET中解吸。因此,我们发现TMA-Mnt成功地将挥发性风味化合物包封在聚合物复合材料中。

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