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首页> 外文期刊>Biotechnology for Biofuels >Liquid-phase characterization of molecular interactions in polyunsaturated and n-fatty acid methyl esters by 1 H low-field nuclear magnetic resonance
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Liquid-phase characterization of molecular interactions in polyunsaturated and n-fatty acid methyl esters by 1 H low-field nuclear magnetic resonance

机译:利用 1 H低场核磁共振技术对多不饱和和正脂肪酸甲酯中分子相互作用的液相表征

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Background To identify and develop the best renewable and low carbon footprint biodiesel substitutes for petroleum diesel, the properties of different biodiesel candidates should be studied and characterized with respect to molecular structures versus biodiesel liquid property relationships. In our previous paper, 1 H low-field nuclear magnetic resonance (LF-NMR) relaxometry was investigated as a tool for studying the liquid-phase molecular packing interactions and morphology of fatty acid methyl esters (FAMEs). The technological potential was demonstrated with oleic acid and methyl oleate standards having similar alkyl chains but different head groups. In the present work, molecular organization versus segmental and translational movements of FAMEs in their pure liquid phase, with different alkyl chain lengths (10–20 carbons) and degrees of unsaturation (0–3 double bonds), were studied with 1 H LF-NMR relaxometry and X-ray, 1 H LF-NMR diffusiometry, and 13 C high-field NMR. Results Based on density values and X-ray measurements, it was proposed that FAMEs possess a liquid crystal-like order above their melting point, consisting of random liquid crystal aggregates with void spaces between them, whose morphological properties depend on chain length and degree of unsaturation. FAMEs were also found to exhibit different degrees of rotational and translational motions, which were rationalized by chain organization within the clusters, and the degree and type of molecular interactions and temperature effects. At equivalent fixed temperature differences from melting point, saturated FAME molecules were found to have similar translational motion regardless of chain length, expressed by viscosity, self-diffusion coefficients, and spin-spin (T2 ) 1 H LF-NMR. T2 distributions suggest increased alkyl chain rigidity, and reduced temperature response of the peaks’ relative contribution with increasing unsaturation is a direct result of the alkyl chain’s morphological packing and molecular interactions. Conclusions Both the peaks’ assignments for T2 distributions of FAMEs and the model for their liquid crystal-like morphology in the liquid phase were confirmed. The study of morphological structures within liquids and their response to temperature changes by 1 H LF-NMR has a high value in the field of biodiesel and other research and applied disciplines in numerous physicochemical- and organizational-based properties, processes, and mechanisms of alkyl chains, molecular interactions, and morphologies.
机译:背景技术为了确定和开发最佳的可再生和低碳足迹的石油柴油生物柴油替代品,应研究候选生物柴油的特性,并就分子结构与生物柴油液体特性之间的关系进行表征。在我们以前的论文中,研究了1 H低场核磁共振(LF-NMR)弛豫法,作为研究液相分子堆积相互作用和脂肪酸甲酯(FAME)形态的工具。具有相似的烷基链但不同的头基的油酸和油酸甲酯标准品证明了该技术的潜力。在目前的工作中,使用1 H LF-化合物研究了具有不同烷基链长度(10-20个碳)和不饱和度(0-3个双键)的FAME在纯液相中的分子组织与节段和平移运动。 NMR弛豫法和X射线,1 H LF-NMR扩散法和13 C高场NMR。结果根据密度值和X射线测量结果,提出FAME在其熔点以上具有类似液晶的顺序,由无规液晶聚集体和它们之间的空隙构成,其形态特性取决于链长和链的程度。不饱和。还发现FAME表现出不同程度的旋转和平移运动,这通过簇内的链组织,分子相互作用的程度和类型以及温度效应得以合理化。在与熔点相等的固定温度差下,发现饱和FAME分子具有相似的平移运动,而与链长无关,由粘度,自扩散系数和自旋(T2)1 H LF-NMR表示。 T2分布表明烷基链的刚性增加,并且随着不饱和度的增加,峰的相对响应的温度响应降低,这是烷基链的形态堆积和分子相互作用的直接结果。结论确认了FAME的T2分布的峰分配和它们在液相中的类液晶形态模型。通过1 H LF-NMR研究液体中的形态结构及其对温度变化的响应,在生物柴油以及其他基于烷基的理化和组织性质,工艺和机理的研究和应用学科中具有很高的价值。链,分子相互作用和形态。

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