A-site disubstituted of La1-xSrxNi0.8Fe0.2O3 perovskite on catalytic activity and reaction mechanism of coal tar cracking
ID:433 View Protection:ATTENDEE Updated Time:2022-05-14 17:17:49 Hits:577 Oral Presentation

Start Time:2022-05-27 11:40 (Asia/Shanghai)

Duration:20min

Session:[S4] Energy Science and Technology » [S4-2] Energy Science and Technology-2

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Abstract
The effect of strontium doping in La1-xSrxNi0.8Fe0.2O3 perovskite catalyst was investigated for tar catalytic cracking in the COREX process at 700 °C. O2-Temperature programmed desorption (O2-TPD) and X-ray photoelectron spectroscopy (XPS) results show that La0.8Sr0.2Ni0.8Fe0.2O3 (Sr 0.2) has more active oxygen species and higher oxygen mobility. The performance of Sr-doped catalysts is higher than LaNi0.8Fe0.2O3, producing less tar and carbon deposition. Moreover, Sr 0.2 exhibited the highest gas yield of 34.6 mmol/gcoal, H2 yield,of 27.5 mmol/gcoal, 100% tar removal rate, and the lowest carbon deposition of 19.4 mg/(g·h). Prediction of the reaction mechanism for catalytic cracking is proposed based on the XPS and O2-TPD results. The perovskite serving as a bridge for oxygen migration and simultaneous oxygen supplementation sustains catalyst activity and durability. Coal tar can be converted into more gas by oxygen supply from catalysts. The appropriate amount of Sr in the perovskite is favorable to high catalytic activity and anti-carbon deposition at high temperatures. This work could provide some guidance for the highly efficient cracking of tar.
 
Keywords
perovskite catalyst, Sr doping, coal tar, reaction mechanism
Speaker
Didi GAI
China University of Mining and Technology

Didi Gai, is a postgraduate student of China University of Mining and Technology. Her research interest is to prepare highly efficient perovskite-type catalysts to crack coal and biomass tar. She has 2 publications in this topic within 2 years of her study. Her work was supported by the Postgraduate Research & Practice Innovation Program of Jiangsu Province and the Assistance Program for Future Outstanding Talents of China University of Mining and Technology.
 

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