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Some aspects of influence of the composition of volatile products and extracted material on grain swelling processes and volume changes of commercial coals of different rank

机译:挥发性产品和提取物成分对不同等级商品煤的晶粒膨胀过程和体积变化的影响的某些方面

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摘要

The course of pyrolysis process of the three industrial samples of lower, middle, and higher rank coals was studied using the TG/FT-IR technique and a laboratory unit for investigation of carbonization process by X-raying. The coal samples from the zones of plastic layer were studied by scanning electron microscopy and next extracted by a mixture of chloroform and methanol. The obtained extracts were analyzed by FT-IR and UV spectroscopies and STEM-HAADF technique.It was stated that the composition of volatile products of a lower rank coal (LRC) is characterized by the greatest relative content of saturated and unsaturated hydrocarbons in comparison with a middle rank coal (MRC) and a higher rank coal (HRC). However, a higher contribution ratio of water vapour is observed in the composition of volatile matter of HRC. It is suggested that low molecular products of destruction formed inside swelling grains of MRC can react with each other and form new compounds with a greater molecular mass. These can be macro-molecules of heteroorganic compounds. The STEM-HAADF images showed that there are topological structures of various types in the material of extracts from the gas-saturated zone of coals of different rank. The presence of inorganic elements in the extracted material changes depending on coal rank. Heterorganic compounds of different shape and composition can catalyze the reactions taking place during thermal destruction of coals in a selective way. In MRC, these reactions will cause a decrease in pressure inside its swelling grains and without their substantial growth in volume. Such reactions do not take place in grains of HRC. Moreover, an increased contribution of water vapour formed during destruction can cause its adsorption inside grains and an increase in volume of swelling grains. This can be the cause for an increase in generation of dangerous coking pressure in the charge of studied HRC.
机译:利用TG / FT-IR技术和X射线研究碳化过程的实验室单元,研究了低,中,高等级煤的三个工业样品的热解过程。通过扫描电子显微镜研究了来自塑料层区域的煤样品,然后用氯仿和甲醇的混合物萃取。通过FT-IR和UV光谱法以及STEM-HAADF技术对所得提取物进行了分析。结果表明,低级煤(LRC)的挥发性产物的组成与饱和烃和不饱和烃相比具有最大的相对含量。中级煤(MRC)和高级煤(HRC)。然而,在HRC的挥发性物质的组成中观察到更高的水蒸气贡献率。建议在MRC溶胀晶粒内部形成的低分子破坏产物可以相互反应并形成具有更大分子量的新化合物。这些可以是杂有机化合物的大分子。 STEM-HAADF图像显示,来自不同等级煤的气体饱和区的提取物材料中存在各种类型的拓扑结构。提取的物料中无机元素的存在随煤级的变化而变化。不同形状和组成的杂化化合物可以选择性地催化煤热分解过程中发生的反应。在MRC中,这些反应将导致其膨胀颗粒内部的压力降低,而体积却没有实质性增长。此类反应不会在HRC晶粒中发生。此外,破坏过程中形成的水​​蒸气的增加贡献可导致其在谷物内部的吸附和膨胀谷物的体积的增加。这可能是导致所研究的HRC装料中危险焦化压力增加的原因。

著录项

  • 来源
    《Fuel》 |2019年第1期|554-568|共15页
  • 作者单位

    Jan Kochanowski Univ Humanities & Sci, Inst Chem, 15G Swietokrzyska Str, PL-25410 Kielce, Poland;

    Jan Kochanowski Univ Humanities & Sci, Inst Chem, 15G Swietokrzyska Str, PL-25410 Kielce, Poland;

    Jan Kochanowski Univ Humanities & Sci, Inst Chem, 15G Swietokrzyska Str, PL-25410 Kielce, Poland;

    JSW SA, 4 Jana Pavla II Str, PL-44330 Jastrzebie Zdroj, Poland;

    Jagiellonian Univ Krakow, Fac Chem, 2 Gronostajowa Str, PL-30387 Krakow, Poland;

  • 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

    TG/FT-IR; Change in volume; ATR; UV; SEM; STEM-HAADF;

    机译:TG / FT-IR;体积变化;ATR;UV;SEM;STEM-HAADF;

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