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Formation Characteristics of Aerosol Particles from Pulverized Coal Pyrolysis in High-Temperature Environments

机译:高温环境下煤粉热解气溶胶颗粒的形成特征

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摘要

The formation characteristics of aerosol particles from pulverized coal pyrolysis in high temperatures are studied experimentally. By conducting a drop-tube furnace, fuel pyrolysis processes in industrial furnaces are simulated in which three different reaction temperatures of 1000, 1200, and 1400 ℃ are considered. Experimental observations indicate that when the reaction temperature is 1000 ℃, submicron particles are produced, whereas the particle size is dominated by nanoscale for the temperature of 1400 ℃. Thermogravimetric analysis of the aerosol particles stemming from the pyrolysis temperature of 1000 ℃ reveals that the thermal behavior of the aerosol is characterized by a three-stage reaction with increasing heating temperature: (1) a volatile-reaction stage, (2) a weak-reaction stage, and (3) a soot-reaction stage. However, with the pyrolysis temperature of 1400 °C, the volatile- and weak-reaction stages almost merge together and evolve into a chemical-frozen stage. The submicron particles (i.e., 1000 ℃) are mainly composed of volatiles, tar, and soot, with the main component of the nanoscale particles (i.e., 1400 ℃) being soot. The polycyclic aromatic hydrocarbons (PAHs) contained in the aerosols are also analyzed. It is found that the PAH content in generated aerosols decreases dramatically as the pyrolysis temperature increases.
机译:实验研究了煤粉高温热解过程中气溶胶颗粒的形成特征。通过进行下管式炉,模拟了工业炉中的燃料热解过程,其中考虑了三种不同的反应温度:1000、1200和1400℃。实验观察表明,当反应温度为1000℃时,会产生亚微米级的颗粒,而在1400℃的温度下,其粒径以纳米级为主。对热解温度为1000℃产生的气溶胶颗粒进行热重分析后发现,气溶胶的热行为表现为三阶段反应,加热温度升高:(1)挥发性反应阶段,(2)弱反应阶段。反应阶段,和(3)烟灰反应阶段。但是,在1400°C的热解温度下,挥发性和弱反应阶段几乎合并在一起,并演变成化学冷冻阶段。亚微米颗粒(即1000℃)主要由挥发物,焦油和烟灰组成,纳米级颗粒(即1400℃)的主要成分是烟灰。还分析了气溶胶中包含的多环芳烃(PAH)。发现随着热解温度的升高,生成的气溶胶中PAH含量急剧下降。

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