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Methodology for Studying Molecular and Supramolecular Structures of Coals and Carbonaceous Materials

机译:研究煤和碳质材料的分子和超分子结构的方法

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摘要

Those studying coals have to account for petrographic nonuniformity (the optical structural level), different types of chemical bonding between structural fragments, the existence of aromatic clusters in the organic matter, the appearance of a supramolecular order between aromatic clusters, and further orientation ordering of crystallites under the action of the geological pressure. Combinations of conventional chemical strategies with advanced physicochemical methods, such as IR, NMR, EPR, and X-ray spectros-copy; X-ray diffraction; electronic and scanning microscopy; and some others, are pertinent for structure determination. The appearance of supramolecular structures is a manifestation of molecular-level structural rearrangements, which are characteristic of coals, cokes, pitches, and various pyrolytic carbons. This necessitates the use of optical, electronic, and scanning microscopy along with other chemical methods. The occurrence of mineral components in coals can appreciably limit the resolution of IR spectroscopy and X-ray crystallography.
机译:那些研究煤炭的人必须考虑岩石学的不均匀性(光学结构水平),结构片段之间化学键的不同类型,有机物中芳族簇的存在,芳族簇之间的超分子序的出现以及进一步的取向顺序。微晶在地质压力的作用下。将常规化学策略与先进的物理化学方法(例如IR,NMR,EPR和X射线光谱法)相结合; X射线衍射;电子和扫描显微镜;和其他一些与结构确定有关。超分子结构的出现是分子水平结构重排的表现,其是煤,焦炭,沥青和各种热解碳的特征。这需要与其他化学方法一起使用光学,电子和扫描显微镜。煤中矿物成分的出现会明显限制红外光谱和X射线晶体学的分辨率。

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  • 来源
    《Solid Fuel Chemistry》 |2009年第6期|333-340|共8页
  • 作者

    G. B. Skripchenko;

  • 作者单位

    Institute for Fossil Fuels-Science and Technology Center for Complex Processing of Solid Fossil Fuels, Russian Academy of Sciences, Leninskii pr. 29, Moscow, 119991 Russia;

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