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Chemical structure transformation during the later stage of plastic layers during coking using Synchrotron infrared microspectroscopy technique

机译:使用SynchRotron红外微型微型光谱技术在焦化过程中塑料层后期的化学结构转换

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摘要

During the coking process, the carbon structure of coal evolves after the re-solidification of the plastic layers to form a solid residue, i.e., semi-coke, which is known to determine the structure and quality of the final coke product. This paper reports the chemical structural transformations of Australian coking coals during the later stage of the plastic layers that may be related to the evolution of the carbon structures. The plastic layers and semi-coke/coke samples were prepared from four Australian coking coals of different ranks and vitrinite contents in a lab-scale coke oven. The Synchrotron attenuated total reflection Fourier transform infrared (ATR-FTIR) microspectroscopy (Synchrotron IR) was used in combination with the X-ray photoelectron spectroscopy (XPS) to investigate the changes in the chemical structure during coke formation. The Synchrotron IR, as a nondestructive analytical technique, proved to be a useful tool to examine the change in functional groups in the semi-coke samples. The XPS analysis was employed to study the conversion of sp(2) - and sp(3)-bonded carbons. The results suggested that a dramatic chemical structure change took place during the stages following the plastic layers through to the coke/semi-coke regions. The chemical structure changes were strongly impacted by the properties of the parent coals. The carbon structure changes observed in XPS spectra were in good agreement with the aromatic ring condensation degree, which was indicated by the ratio of out-of-plane aromatic C-H to C=C bonds in aromatic rings. The results showed that the carbon structure evolution took place during the later stages of the thermoplastic ranges, forming the semi-coke.
机译:在焦化过程中,煤的碳结构在重新凝固后的塑料层以形成固体残余物,即半焦,已知确定最终焦炭产品的结构和质量。本文在塑料层的后期阶段报道了澳大利亚焦化煤的化学结构转变,这可能与碳结构的演变有关。塑料层和半焦/焦化样品由4个不同等级的澳大利亚焦化煤中的不同等级和玻璃型含量的煤灶制备。变化总反射傅里叶变换红外线(ATR-FTIR)微穴位(Syschrotron IR)与X射线光电子能谱(XPS)组合使用,以研究焦炭形成过程中化学结构的变化。 Synchrotron IR作为非破坏性分析技术证明是一种有用的工具,用于检查半焦样品中官能团的变化。采用XPS分析研究SP(2) - 和SP(3)粘结的碳的转换。结果表明,在塑料层的阶段通过焦炭/半焦区的阶段发生了戏剧性化学结构。化学结构的变化受到母体煤的性质的强烈影响。在XPS光谱中观察到的碳结构变化与芳环缩合程度好,其由平面外芳族C-H与芳环中的C = C键的比率表示。结果表明,碳结构进化在热塑性范围的后期进行,形成半焦。

著录项

  • 来源
    《Fuel》 |2020年第1期|117764.1-117764.8|共8页
  • 作者单位

    Univ Newcastle Chem Engn Callaghan NSW 2308 Australia;

    Univ Newcastle Chem Engn Callaghan NSW 2308 Australia;

    Univ Newcastle Chem Engn Callaghan NSW 2308 Australia;

    Chinese Acad Sci Shanxi Inst Coal Chem Taiyuan 030001 Peoples R China;

    Australian Synchrotron Infrared Microspect IRM Beamline 800 Blackburn Rd Clayton Vic 3168 Australia;

    Univ Newcastle Chem Engn Callaghan NSW 2308 Australia|Univ Sci & Technol Liaoning Sch Chem Engn Key Lab Adv Coal & Coking Technol Liaoning Prov Anshan 114051 Peoples R China;

  • 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

    Coke making; Synchrotron IR; Semi-coke; Chemical structural transformation;

    机译:焦炭制作;同步rotron IR;半焦;化学结构转型;

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