Polycyclic aromatic hydrocarbon formation under simulated coal seam pyrolysis conditions

Liu Shuqin , Wang Yuanyuan , Wang Caihong , Bao Pengcheng , Dang Jinli
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引用次数: 3

Abstract

Coal seam pyrolysis occurs during coal seam fires and during underground coal gasification. This is an important source of polycyclic aromatic hydrocarbon (PAH) emission in China. Pyrolysis in a coal seam was simulated in a tubular furnace. The 16 US Environmental Protection Agency priority controlled PAHs were analyzed by HPLC. The effects of temperature, heating rate, pyrolysis atmosphere, and coal size were investigated. The results indicate that the 3-ring PAHs AcP and AcPy are the main species in the pyrolysis gas. The 2-ring NaP and the 4-ring Pyr are also of concern. Increasing temperature caused the total PAH yield to go through a minimum. The lowest value was obtained at the temperature of 600 °C. Higher heating rates promote PAH formation, especially formation of the lower molecular weight PAHs. The typical heating rate in a coal seam, 5 °C/min, results in intermediate yields of PAHs. The total PAHs yield in an atmosphere of N2 is about 1.81 times that seen without added N2, which indicates that an air flow through the coal seam accelerates the formation of PAHs. An increase in coal particle size reduces the total PAHs emission but promotes the formation of 5- and 6-ring PAHs.

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模拟煤层热解条件下多环芳烃的形成
煤层热解发生在煤层火灾和煤地下气化过程中。这是中国多环芳烃(PAH)排放的重要来源。在管状炉上模拟了煤层的热解过程。采用高效液相色谱法对美国环保局重点控制的16种多环芳烃进行了分析。考察了温度、升温速率、热解气氛和煤粒度对热解效果的影响。结果表明,热解气中的主要组分为3环多环芳烃AcP和AcPy。2环NaP和4环Pyr也值得关注。温度升高使多环芳烃的总产率达到最小值。温度在600℃时达到最低值。较高的加热速率促进多环芳烃的形成,尤其是低分子量多环芳烃的形成。煤层典型升温速率为5℃/min,多环芳烃产率中等。在N2气氛下,多环芳烃的总产率约为未添加N2时的1.81倍,说明气流通过煤层加速了多环芳烃的形成。煤粒度的增大减少了多环芳烃的总排放量,但促进了5环和6环芳烃的形成。
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