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Ammonia-free selective catalytic reduction of NO by coal-based activated carbon supported Cu-Mn oxides at low temperature
被引:0
|作者:
Fu, Hui
[1
]
Zhang, Junfeng
[1
]
Huang, Yan
[1
]
Zhao, Lingkui
[1
]
机构:
[1] Xiangtan Univ, Coll Environm & Resources, Xiangtan 411105, Peoples R China
来源:
JOURNAL OF ENVIRONMENTAL CHEMICAL ENGINEERING
|
2024年
/
12卷
/
05期
基金:
中国国家自然科学基金;
关键词:
Coal -based activated carbon;
Selective catalytic;
NO reduction;
Cu-Mn oxides;
NITRIC-OXIDE;
MANGANESE OXIDE;
FLUE-GAS;
HETEROGENEOUS REDUCTION;
SIMULTANEOUS REMOVAL;
LIGNITE CHAR;
OXIDATION;
POTASSIUM;
OXYGEN;
COMBUSTION;
D O I:
10.1016/j.jece.2024.113228
中图分类号:
X [环境科学、安全科学];
学科分类号:
08 ;
0830 ;
摘要:
Selective catalytic reduction of ammonia is the most widely technology for removing NOx, but there were serious ammonia leakage and high temperature reaction. To overcome these limitations, a series of Cu and Mn metals supported on coal-based activated carbon (CuxMny/CAC) were synthesized, for ammonia-free catalytic reduction of NO at low temperature. The results demonstrated that Cu and/or Mn catalysts significantly improved lowtemperature SCR performance and char-NO reaction selectivity when combined with CAC. In particular, Cu6Mn4/CAC showed excellent NO removal rate (100 %) and higher char-NO selectively (111.21 mg/g) at 290 degrees C under O2-rich condition. Characterization analyses revealed that Cu6Mn4/CAC had a larger BET surface area and preferable pore structure, and the synergistic effect mainly came from the redox cycle between CuOx and MnOy, as well as the interaction between Cu-Mn oxides and the CAC support. Cu-Mn metals promote the adsorption of NO and O2 in the char-NO process, leading to the generation of abundant surface adsorption oxygen species (O2- , O22-, and O-) and C(O) complex, which facilitated the char-NO reaction. Therefore, a mechanism for ammoniac-free selective catalytic reduction of NO by Cu6Mn4/CAC was proposed. These finding provide new insights for developing low-temperature ammonia-free denitrification technology and improving high-value utilization of coal resources.
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