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首页> 外文期刊>Organic Geochemistry: A Publication of the International Association of Geochemistry and Cosmochemistry >A molecular dynamics study of natural organic matter: 1. Lignin, kerogen and soot
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A molecular dynamics study of natural organic matter: 1. Lignin, kerogen and soot

机译:天然有机物的分子动力学研究:1.木质素,干酪根和煤烟

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摘要

Molecular dynamics (MD) simulations were performed on molecular models of a spectrum of natural organic matter (NOM) samples represented by two lignin samples (a softwood lignin and a hardwood lignin), a kerogen (Green River Shale kerogen) and a soot sample (n-hexane soot). Simulated thermodynamic properties of each model, including glass transition temperature (T-g), thermal expansion coefficient (alpha), density (rho) and solubility parameter (delta) were compared against experimental data for corresponding samples. Results revealed relatively good agreement for glass transition temperature and solubility parameter for softwood lignin, Green River Shale kerogen and n-hexane soot models. An unexpectedly low solubility parameter for a hardwood lignin model suggests, however, certain model deficiencies in terms of intermolecular interactions. In addition, a lower density for a n-hexane soot model relative to the sample was attributed to the small cluster size and poor parallel stacking of aromatic clusters in the model. Discussion of the results is provided in the context of utilizing thermodynamic properties as constraints for improved structural modeling of NOM.
机译:分子动力学(MD)模拟是在以两种木质素样品(软木木质素和硬木木质素),干酪根(Green River Shale干酪根)和烟灰样品(正己烷烟灰)。将每个模型的模拟热力学性质,包括玻璃化转变温度(T-g),热膨胀系数(α),密度(rho)和溶解度参数(delta)与相应样品的实验数据进行了比较。结果显示,软木木质素,Green River页岩干酪根和正己烷烟灰模型的玻璃化转变温度和溶解度参数相对较好。但是,对于硬木木质素模型,出乎意料的低溶解度参数表明,在分子间相互作用方面,某些模型存在缺陷。另外,相对于样品,正己烷烟灰模型的密度较低归因于模型中的团簇尺寸小和芳香族团簇平行堆积差。在利用热力学性质作为约束来改进NOM的结构建模的情况下,对结果进行了讨论。

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