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Kinetic Study on Alpha-Form Crystallization of Mixed-Acid Triacylglycerols POP, PPO, and Their Mixture

机译:混合酸三酰基甘油,PPO及其混合物的α-α-结晶的动力学研究

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The crystallization behavior of the metastable α form of triacylglycerols (TAGs) plays a critical role as a precursor for the crystallization of more stable β′ and β forms for various applications in food and pharmaceutical products. However, precise analysis of the crystallization kinetics of α has not been performed, likely due to its rapid and complex behavior. This paper presents the observation results of the initial stages of the isothermal crystallization kinetics of α forms of 1,3-dipalmitoyl-2-oleoyl-glycerol (POP), 1,2-dipalmitoyl-3-oleoyl-rac-glycerol (rac-PPO), and molecular compound (MC) crystals of a POP/rac-PPO (1/1) mixture (MCPOP/PPO) using synchrotron radiation time-resolved X-ray diffraction and polarized optical microscopy. In all the TAGs, α crystals with a worm-like morphology started to grow rapidly in the first stage. Then, the α crystals slowly transformed into more stable forms in different manners for different TAG samples. In POP, the conversion was simple, as the α-2 form transformed into γ-3, whereas in rac-PPO, the lamellar distance values of the α-2 form continuously decreased with time and changed into the α-3 form. In the MCPOP/PPO crystals, in contrast, separate crystallization of α-2 of a rac-PPO fraction initially occurred, followed by the crystallization of α-2 of POP, and the two α forms merged into α-2 of MCPOP/PPO. This separate crystallization was caused by large differences in the crystallization kinetics of the α forms of POP and rac-PPO.
机译:亚乙基甘油(标签)的亚乙基甘油(标签)的结晶行为在食品和药物产品中的各种应用中的更稳定β'和β形式的前体起着重要作用。然而,由于其快速和复杂的行为,尚未进行α结晶动力学的精确分析。本文介绍了1,3-二普酰-2-油牛 - 甘油(POP),1,2-二普咪酰-3-OXEOYL-RAL-甘油(RAC-)α形式的等温结晶动力学的初始阶段的观察结果。 PPO)和POP / RAC-PPO(1/1)混合物(MCPOP / PPO)的分子化合物(MC)晶体使用同步辐射时间分辨X射线衍射和偏振光学显微镜。在所有标签中,具有蠕虫形态的α晶体在第一阶段开始迅速生长。然后,α晶体以不同的标签样品的不同方式将α晶体慢慢转化为更稳定的形式。在POP中,转化率简单,随着α-2形式转化为γ-3,而在RAC-PPO中,α-2形式的层状距离值随时间连续降低并变为α-3形式。在MCPOP / PPO晶体中,相比之下,最初发生RAC-PPO级分的α-2的单独结晶,然后进行POP的α-2结晶,并且两种α形式合并为MCPOP / PPO的α-2 。这种单独的结晶是由Pop和Rac-PPO的α形式的结晶动力学差异引起的。

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