Zou Li, Wang Yungang, Bai Yanyuan, Liu Yang, Zhao Qinxin
Key Laboratory of Thermal Fluid Science and Engineering of MOE, School of Energy and Power Engineering, Xi'an Jiaotong University, Xi'an 710049, P. R. China.
ACS Omega. 2021 Dec 20;7(1):1121-1131. doi: 10.1021/acsomega.1c05694. eCollection 2022 Jan 11.
Investigating the difference in the combustion performance and microcharacteristics of oxidized and raw pulverized coal (PC) can contribute to effectively prevent and control the spontaneous combustion of deposited coal dust in high-temperature environment and further help guarantee the safe operation of coal-fired boiler. In this study, the combustion performance and thermokinetic and microcharacteristics of three raw coal samples and their preoxidized forms were explored by a thermogravimetric analyzer (TGA) and Fourier transform infrared spectroscopy (FTIR). According to the characteristic temperatures and variations of the mass loss rate during heating, the entire combustion process of PC was divided into four periods. For each type of coal, the preoxidized PC had relatively lower characteristic temperatures than the corresponding raw PC. The preoxidized samples had larger values of ignition index ( ) and comprehensive combustibility index (), but lower values of burnout index ( ) than raw samples. The values of apparent activation energy () for the preoxidized PC were below that of the corresponding raw PC at the same conversion rate (α), which suggested the preoxidized PC required relatively less energy to react and was more prone to spontaneous combustion. In addition, although parts of -OH, C=O, and aliphatic hydrocarbon groups were consumed after the preoxidation treatment, the increase in C-O and -COO- bonds compensated for the adverse effect of the reduction of the aforementioned groups on coal combustion.
研究氧化煤粉与原煤的燃烧性能及微观特性差异,有助于有效防治高温环境下沉积煤尘的自燃,进而保障燃煤锅炉的安全运行。本研究采用热重分析仪(TGA)和傅里叶变换红外光谱仪(FTIR),对三种原煤及其预氧化形式的燃烧性能、热动力学和微观特性进行了探究。根据加热过程中的特征温度和质量损失率变化,将煤粉的整个燃烧过程分为四个阶段。对于每种煤,预氧化煤粉的特征温度相对低于相应的原煤。预氧化样品的着火指数()和综合燃烧指数()值较大,但燃尽指数()值低于原煤样品。在相同转化率(α)下,预氧化煤粉的表观活化能()值低于相应原煤,这表明预氧化煤粉反应所需能量相对较少,更易自燃。此外,虽然预氧化处理后部分-OH、C=O和脂肪烃基团被消耗,但C-O和-COO-键的增加弥补了上述基团减少对煤燃烧的不利影响。