Qi Xuejun, Lin Shuang
School of Architecture and Civil Engineering, Xihua University, Chengdu, 610039, China.
Sci Rep. 2022 Apr 6;12(1):5730. doi: 10.1038/s41598-022-09812-7.
Acid-washing low-rank coal samples were loaded with different content of iron catalyst and then pyrolyzed. FT-IR, Raman spectra, and temperature-programmed experiments were used to investigate the influence of iron on the coal char. The FT-IR results revealed that iron catalyst rises the number of -OH, -CH, and -CH functional groups. The Raman spectra results showed that partial large polyaromatic ring structures transform into small polyaromatic ring structures after the addition of iron. The results of temperature-programmed desorption indicated that the number of surface active sites is increased due to the addition of iron. For low-rank coal char with 3% Fe, the number of active sites increased with the increase of adsorption temperature until 800 °C and then start to decrease. At 750 °C, the adsorption capacity of CO increased with the increase of time and reached saturation state after 45 min. The results of the char-steam isothermal gasification experiment suggested that the iron catalyst enhances the gasification reactivity of low-rank coal. It is verified that iron catalysts can improve the gasification reactivity of low-rank coal by increasing the number of surface active sites.
对酸洗后的低阶煤样品负载不同含量的铁催化剂,然后进行热解。利用傅里叶变换红外光谱(FT-IR)、拉曼光谱和程序升温实验研究铁对煤焦的影响。FT-IR结果表明,铁催化剂增加了-OH、-CH和-CH官能团的数量。拉曼光谱结果表明,添加铁后部分大的多环芳烃结构转变为小的多环芳烃结构。程序升温脱附结果表明,添加铁使表面活性位点数量增加。对于含3%铁的低阶煤焦,活性位点数量随吸附温度升高至800℃而增加,之后开始减少。在750℃时,CO的吸附量随时间增加而增加,45分钟后达到饱和状态。煤焦-水蒸气等温气化实验结果表明,铁催化剂提高了低阶煤的气化反应活性。证实铁催化剂可通过增加表面活性位点数量来提高低阶煤的气化反应活性。