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Quantitative Analyses of Chemical Structural Change and Gas Generation Profile of Coal upon Heating toward Gaining New Insights for Coal Pyrolysis Chemistry

机译:煤炭热解化化学加热时煤化学结构变化及煤气发电曲线的定量分析

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摘要

Chemical structure of coal is evolutionary changed during pyrolysis that accompanies gas release. The chemical structural change and gas formation profiles play important roles in determining caking property and physical properties such as strength and size of the resultant coke. However, analyses of volatile components and structural analysis of solid char have been mostly performed individually, and it is difficult to combine both and to obtain quantitative understanding on the thermal decomposition of coal at mechanistic level. In this study, simultaneous analyses of solid chemical structures of the heat treated coals and gas formation profiles were conducted for two kinds of coals that were pyrolyzed at an identical condition. On-line gas analysis with a quadrupole mass spectrometer and spectroscopic methods (NMR and FT-IR) were employed for quantitative evaluation of gas formation characteristics and solid chemical structure, respectively. The information obtained were then integrated to acquire new insight for coal pyrolysis mechanism. Here an approach to quantify the transferable hydrogen that contributes to stabilize radicals formed in pyrolyzing coal was proposed. It includes the quantitative assessment of aromatic cluster growth, decomposition of hydroxyls, and releases of hydrogen and pyrolytic water into gas phase. The proposed approach suggested that a bituminous coal that exhibits plasticity during pyrolysis had 3.5 mol/kg-coal transferable hydrogen, whereas the amount of transferable hydrogen of the sub-bituminous coal, a non-caking coal, was 1.3 mol/kg-coal, during pyrolysis up to 500°C.
机译:伴有气体释放的热解期间煤的化学结构是进化的变化。化学结构变化和气体形成型材在确定粘结性和物理性质等中起重要作用,例如所得焦炭的强度和尺寸。然而,挥发性组分的分析和固体焦炭的结构分析主要是单独进行的,并且难以结合两者并获得对机械水平的煤的热分解的定量理解。在该研究中,对热处理煤和气体形成型材的固体化学结构的同时分析进行了两种在相同条件下热解的煤。用四极谱质谱仪和光谱法(NMR和FT-IR)在线气体分析分别用于分别对气体形成特征和固体化学结构进行定量评价。然后将获得的信息纳入以获取对煤热解机制的新见解。这里提出了一种方法来量化有助于稳定在热解煤中形成的自由基的可转移氢的方法。它包括对芳族聚类生长,羟基分解的定量评估,并将氢气和热解水分解成气相。所提出的方法表明,在热解中表现出可塑性的烟煤具有3.5摩尔/千克 - 煤可转移氢,而亚沥青煤的可转移氢,非粘合煤,为1.3mol / kg煤,在热解期间,高达500°C。

著录项

  • 来源
    《ISIJ international》 |2019年第8期|1376-1381|共6页
  • 作者单位

    Department of Chemical Systems Engineering Graduate School of Engineering Nagoya University Nagoya 464-8601 Japan.;

    Interdisciplinary Graduate School of Engineering Sciences Kyushu University 6-1 Kasuga Koen Kasuga 816-0823 Japan.;

    Interdisciplinary Graduate School of Engineering Sciences Kyushu University 6-1 Kasuga Koen Kasuga 816-0823 Japan.;

    Department of Chemical Systems Engineering Graduate School of Engineering Nagoya University Nagoya 464-8601 Japan.;

    Department of Chemical Systems Engineering Graduate School of Engineering Nagoya University Nagoya 464-8601 Japan.;

    Kashima Works Nippon Steel & Sumitomo Metal Corporation 2-1 Hikari Kashima Ibaraki 314-0014 Japan.;

    Kansai Coke and Chemicals Company Limited Amagasaki 660-0095 Japan.;

    Interdisciplinary Graduate School of Engineering Sciences Kyushu University 6-1 Kasuga Koen Kasuga 816-0823 Japan. Institute for Materials Chemistry and Engineering Kyushu University Kasuga-koen 6-1 Kasuga Fukuoka 816-8580 Japan;

    Department of Chemical Systems Engineering Graduate School of Engineering Nagoya University Nagoya 464-8601 Japan;

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

    coal; cokes; mechanism; reaction; hydrogen transfer; plasticity;

    机译:煤炭;焦炭;机制;反应;氢转移;可塑性;

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