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Study of liquid-phase molecular packing interactions and morphology of fatty acid methyl esters (biodiesel)

机译:脂肪酸甲酯(生物柴油)的液相分子堆积相互作用和形态研究

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Background 1H low field nuclear magnetic resonance (LF-NMR) relaxometry has been suggested as a tool to distinguish between different molecular ensembles in complex systems with differential segmental or whole molecular motion and/or different morphologies. In biodiesel applications the molecular structure versus liquid-phase packing morphologies of fatty acid methyl esters (FAMEs) influences physico-chemical characteristics of the fuel, including flow properties, operability during cold weather, blending, and more. Still, their liquid morphological structures have scarcely been studied. It was therefore the objective of this work to explore the potential of this technology for characterizing the molecular organization of FAMEs in the liquid phase. This was accomplished by using a combination of supporting advanced technologies. Results We show that pure oleic acid (OA) and methyl oleate (MO) standards exhibited both similarities and differences in the 1H LF-NMR relaxation times (T2s) and peak areas, for a range of temperatures. Based on X-ray measurements, both molecules were found to possess a liquid crystal-like order, although a larger fluidity was found for MO, because as the temperature is increased, MO molecules separate both longitudinally and transversely from one another. In addition, both molecules exhibited a preferred direction of diffusion based on the apparent hydrodynamic radius. The close molecular packing arrangement and interactions were found to affect the translational and segmental motions of the molecules, as a result of dimerization of the head group in OA as opposed to weaker polar interactions in MO. Conclusions A comprehensive model for the liquid crystal-like arrangement of FAMEs in the liquid phase is suggested. The differences in translational and segmental motions of the molecules were rationalized by the differences in the 1H LF-NMR T2 distributions of OA and MO, which was further supported by 13C high field (HF)-NMR spectra and 1H HF-NMR relaxation. The proposed assignment allows for material characterization based on parameters that contribute to properties in applications such as biodiesel fuels.
机译:背景技术1 H低场核磁共振(LF-NMR)弛豫法已被建议作为区分具有不同节段或整个分子运动和/或不同形态的复杂系统中不同分子集合的工具。在生物柴油应用中,脂肪酸甲酯(FAME)的分子结构与液相堆积形态会影响燃料的理化特性,包括流动性,寒冷天气下的可操作性,混合等。仍然很少研究它们的液体形态结构。因此,本工作的目的是探索该技术在液相中表征FAME分子结构的潜力。这是通过结合使用支持先进技术来实现的。结果我们显示,在一定温度范围内,纯油酸(OA)和油酸甲酯(MO)标准品在1H LF-NMR弛豫时间(T2s)和峰面积上均表现出相同点和不同点。基于X射线测量,发现两个分子都具有液晶样的顺序,尽管发现MO具有更大的流动性,因为随着温度升高,MO分子在纵向和横向上彼此分离。另外,基于表观流体动力学半径,两种分子均表现出优选的扩散方向。发现了紧密的分子堆积排列和相互作用影响了分子的平移和节段运动,这是由于OA中头部基团的二聚化而不是MO中较弱的极性相互作用。结论提出了FAME在液相中的类液晶排列的综合模型。通过OA和MO的1H LF-NMR T2分布的差异合理化了分子平移和节段运动的差异,这进一步得到了13C高场(HF)-NMR光谱和1H HF-NMR弛豫的支持。拟议的任务允许根据有助于应用(例如生物柴油燃料)性能的参数进行材料表征。

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