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首页> 外文期刊>The Korean journal of chemical engineering >Impact of pressure on the carbon structure of char during pyrolysis of bituminous coal in pressurized entrained-flow reactor
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Impact of pressure on the carbon structure of char during pyrolysis of bituminous coal in pressurized entrained-flow reactor

机译:加压气流床反应器中烟煤热解过程中压力对炭结构的影响

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摘要

The impact of pressure on the carbon structure of a Chinese bituminous coal was investigated using a pressurized entrained-flow reactor in the temperature and pressure ranges of 700-900 degrees C and 0.1-4.0MPa, respectively. Pyrolysis pressure had a significant influence on the physiochemical and carbon structure of chars. The specific surface area and the swelling ratio of chars reached their highest values at 1.0MPa. Fourier transform infrared spectroscopy (FTIR) analysis showed that higher pressures enhanced the decomposition of functional groups in chars. Raman spectroscopy analysis results revealed that at elevated pressures, the organic matrix and functional groups were removed from the char structure, leading to higher ordering of the carbon structure. During X-ray diffraction (XRD) analysis, parameters such as the stacking height (L-c), interlayer spacing (d(002)) and lateral size of the graphite structures (L-a) were used to evaluate the graphitic structures in chars. The results showed an increase in L-c, L-a, and the average number of graphene sheets with pyrolysis pressure, indicating a more ordered carbon structure at elevated pressures. The d-spacing of char was in the range of 3.34-3.37 angstrom, similar to typical graphitic structures.
机译:使用加压气流床反应器,分别在700-900摄氏度和0.1-4.0MPa的温度和压力范围内研究了压力对中国烟煤碳结构的影响。热解压力对炭的物理化学和碳结构有重要影响。炭的比表面积和溶胀率在1.0MPa时达到最高值。傅立叶变换红外光谱(FTIR)分析表明,较高的压力增强了炭中官能团的分解。拉曼光谱分析结果表明,在升高的压力下,有机碳和官能团从炭结构中去除,导致碳结构的有序化。在X射线衍射(XRD)分析过程中,使用诸如堆积高度(L-c),层间间距(d(002))和石墨结构的横向尺寸(L-a)之类的参数来评估炭中的石墨结构。结果显示,随着热解压力的增加,L-c,L-a和平均石墨烯片数增加,表明在升高的压力下碳结构更加有序。炭的d间距在3.34-3.37埃的范围内,类似于典型的石墨结构。

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