Yang Fan, Yu Qingbo, Duan Wenjun, Qi Zhenfei, Qin Qin
School of Metallurgy, Northeastern University, Shenyang, Liaoning 110819, P.R. China.
ACS Omega. 2021 Nov 12;6(46):31026-31036. doi: 10.1021/acsomega.1c04135. eCollection 2021 Nov 23.
Electrochemical catalytic coal gasification experiments with Fuxin (FX) coal under a CO atmosphere were conducted to evaluate the effects of power and temperature on coal gasification and char structure evolution during electrochemical catalytic gasification (ECG). When the power was 400 W, with temperature increasing from 800 to 1000 °C, the CO content in the gas products increased by 8.16%, the H content increased by 8.39%, and the CH concentration in the gas products initially increased and then decreased. When the temperature is 900 °C, with power increasing from 0 to 400 W, the CO content in the gas products increased by 58.27%, the H content increased by 81.33%, and the CH concentration in the gas products increased from 1.31 to 2.37%. The gasification reactivity and the concentration of combustible gas generated during ECG were higher than those during common coal gasification. Thermal electrons play important roles in ECG. These electrons could promote ring opening reactions and aromatic compound cracking and inhibit aromatization reactions while increasing the number of oxygen-containing functional groups in char, consequently enhancing the char gasification reactivity.
在CO气氛下对阜新(FX)煤进行了电化学催化煤气化实验,以评估功率和温度对电化学催化气化(ECG)过程中煤气化和焦炭结构演变的影响。当功率为400W时,随着温度从800℃升高到1000℃,气体产物中的CO含量增加了8.16%,H含量增加了8.39%,气体产物中的CH浓度先增加后降低。当温度为900℃时,随着功率从0增加到400W,气体产物中的CO含量增加了58.27%,H含量增加了81.33%,气体产物中的CH浓度从1.31增加到2.37%。ECG过程中的气化反应性和产生的可燃气体浓度高于普通煤气化过程。热电子在ECG中起着重要作用。这些电子可以促进开环反应和芳香族化合物裂解,并抑制芳构化反应,同时增加焦炭中含氧官能团的数量,从而提高焦炭的气化反应性。