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首页> 外文期刊>Fuel >Determining the molecular weight distribution of Pocahontas No. 3 low-volatile bituminous coal utilizing HRTEM and laser desorption ionization mass spectra data
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Determining the molecular weight distribution of Pocahontas No. 3 low-volatile bituminous coal utilizing HRTEM and laser desorption ionization mass spectra data

机译:利用HRTEM和激光解吸电离质谱数据测定风中奇缘3号低挥发性烟煤的分子量分布

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摘要

Knowledge of the molecular weight distribution is important for rationalizing coal behavior. While many analytical approaches generate average data, inclusion of coal's inherent structural diversity would improve molecular representations of coal and their usefulness. The molecular weight distribution of Pocahontas No. 3 coal was estimated based on a new approach coupling HRTEM lattice fringe image data and laser desorption ionization mass spectra (LDIMS), constrained by elemental and NMR data. Assuming a shape for the large aromatic coal molecules allows the determination of the aromatic raft size distribution, and prediction of the molecular weight distribution from the HRTEM lattice fringe image analyses. Similar-shaped molecular weight profiles were obtained from these different techniques. Both distributions showed a sharp rise, fall and long tail, with the HRTEM profile being shifted to a lower mass in comparison to the LDIMS data. The mean molecular weight of an aromatic raft, 289 Da, was similar to 299 Da a value reported from NMR data. Cross-linking the fringes generated a diverse network structure of aromatic clusters with a reasonable aromatic H/C ratio and a molecular weight distribution within the appropriate ranges from laser desorption data. A rationale for molecular diversity determination, necessary for large-scale molecular modeling, for a high-rank coal is proposed.
机译:分子量分布的知识对于合理化煤行为很重要。尽管许多分析方法可以得出平均数据,但包含煤炭固有的结构多样性将改善煤炭的分子表征及其实用性。基于耦合HRTEM晶格条纹图像数据和激光解吸电离质谱(LDIMS)的新方法,并结合元素数据和NMR数据,估算了风中奇缘3号煤的分子量分布。假定大的芳族煤分子的形状可以确定芳族筏的尺寸分布,并根据HRTEM晶格条纹图像分析预测分子量分布。从这些不同的技术获得了类似形状的分子量分布图。两种分布都显示出急剧的上升,下降和长尾巴,与LDIMS数据相比,HRTEM轮廓转移到了较低的质量。芳族筏的平均分子量为289 Da,与299 Da相似,这是根据NMR数据报告的值。交联条纹产生了具有合理的芳香烃H / C比和分子量分布的芳香族簇的多样化网络结构,这些分布在激光解吸数据的适当范围内。提出了用于高级煤的大规模分子建模所必需的分子多样性确定的原理。

著录项

  • 来源
    《Fuel》 |2010年第7期|p.1461-1469|共9页
  • 作者单位

    The EMS Energy Institute, Department of Energy and Mineral Engineering, The Pennsylvania State University, 126 Hosier Building, University Park, PA 16802, United States;

    rnThe EMS Energy Institute, Department of Energy and Mineral Engineering, The Pennsylvania State University, 126 Hosier Building, University Park, PA 16802, United States;

    rnThe EMS Energy Institute, Department of Energy and Mineral Engineering, The Pennsylvania State University, 126 Hosier Building, University Park, PA 16802, United States Department of Biochemistry and Molecular Biology and Department of Chemistry, 212 Biochemistry, Michigan State University, East Lansing, MI 48824, United States;

    rnThe EMS Energy Institute, Department of Energy and Mineral Engineering, The Pennsylvania State University, 126 Hosier Building, University Park, PA 16802, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    HRTEM lattice fringe image analyses; coal structure; structural diversity;

    机译:HRTEM晶格条纹图像分析;煤结构结构多样性;

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