期刊论文详细信息
Green Processing and Synthesis
Effect of calcination temperature on rare earth tailing catalysts for catalytic methane combustion
article
Ran Zhao1  ZiChen Tian1  Zengwu Zhao1 
[1] School of Materials and Metallurgy, Inner Mongolia University of Science and Technology;Inner Mongolia Autonomous Region Rare Earth Secondary Resources Sustainable Utilization Engineering Technology Research Center, Inner Mongolia University of Science and Technology
关键词: rare earth tailings;    low-concentration methane;    catalytic combustion;    calcination;   
DOI  :  10.1515/gps-2020-0053
来源: De Gruyter
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【 摘 要 】

Bayan Obo tailings are rich in rare earth elements (REEs), iron, and other catalytic active substances. In this study, mine tailings were calcined at different temperatures and tested for the catalytic combustion of low-concentration methane. Upon calcination at 600°C, high catalytic activity was revealed, with 50% CH 4 conversion at 587°C (space velocity of 12,000 mL/g h). The physicochemical properties of catalysts were characterized using thermogravimetric analysis, X-ray diffraction, scanning electron microscopy, hydrogen temperature-programmed reduction (H 2 -TPR), and X-ray photoelectron spectroscopy (XPS). Compared to the raw ore sample, the diffraction peak intensity of Fe 2 O 3 increased post calcination, whereas that of CeCO 3 F decreased. A porous structure appeared after the catalyst was calcined at 600°C. Additionally, Fe, Ce, Ti, and other metal elements were more highly dispersed on the catalyst surface. H 2 -TPR results revealed a broadening of the reduction temperature range for the catalyst calcined at 600°C and an increase in the reduction peak. XPS analysis indicated the presence of Ce in the form of Ce 3+ and Ce 4+ oxidation states and the coexistence of Fe in the form of Fe 2+ and Fe 3+ . Moreover, XPS revealed a higher surface O ads /O latt ratio. This study provides evidence for the green reuse of Bayan Obo mine tailings in secondary resources.

【 授权许可】

CC BY   

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