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Liu, Shaomian Xue, Wenjuan Ji, Yongjun Xu, Wenqing Chen, Wenxing Jia, Lihua Zhu, Tingyu Zhong, Ziyi Xu, Guangwen Mei, Donghai
...
Simultaneously improving both NOx conversion and N2 selectivity in the selective catalytic reduction of NO by CO (CO-SCR) under O2-containing conditions is highly challenging because of the competitive reactions of NOx and CO with O2. Here, we demonstrate that the interfacial oxygen vacancies (IOVs) generated at the Co3O4-CeO2 heterointerfaces by b...
Liu, Shaomian Xue, Wenjuan Ji, Yongjun Xu, Wenqing Chen, Wenxing Jia, Lihua Zhu, Tingyu Zhong, Ziyi Xu, Guangwen Mei, Donghai
...
Simultaneously improving both NOx conversion and N2 selectivity in the selective catalytic reduction of NO by CO (CO-SCR) under O2-containing conditions is highly challenging because of the competitive reactions of NOx and CO with O2. Here, we demonstrate that the interfacial oxygen vacancies (IOVs) generated at the Co3O4-CeO2 heterointerfaces by b...
Ji, Yongjun Chen, Xiaoli Liu, Shaomian Song, Shaojia Xu, Wenqing Jiang, Ruihuan Chen, Wenxing Li, Huifang Zhu, Tingyu Li, Zhenxing
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Developing efficient catalysts for the selective catalytic reduction of NOx by CO (CO-SCR) is the key challenge for commercializing this technology. Ag-based catalysts with relatively low costs are promising but widely believed to be not efficient enough for this reaction. Here, we demonstrate that atomically dispersed Ag supported on ordered mesop...
Ji, Yongjun Chen, Xiaoli Liu, Shaomian Song, Shaojia Xu, Wenqing Jiang, Ruihuan Chen, Wenxing Li, Huifang Zhu, Tingyu Li, Zhenxing
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Developing efficient catalysts for the selective catalytic reduction of NOx by CO (CO-SCR) is the key challenge for commercializing this technology. Ag-based catalysts with relatively low costs are promising but widely believed to be not efficient enough for this reaction. Here, we demonstrate that atomically dispersed Ag supported on ordered mesop...
v., ioannis
Selective catalytic reduction (SCR) is probably the most widespread process for limiting NOx emissions under lean conditions (O2 excess) and, in addition to the currently used NH3 or urea as a reducing agent, many other alternative reductants could be more promising, such as CxHy/CxHyOz, H2 and CO. Different catalysts have been used thus far for NO...
Souza, Monique S Araújo, Rinaldo S Oliveira, Alcineia C
Published in
Environmental science and pollution research international
Selective catalytic reduction of NO with CO (CO-SCR) was investigated based on optimizing the operating conditions by response surface methodology (RSM) and by appropriately choosing the supported SBA-15 catalysts. The effects of the CO-SCR reaction parameters such as NO:CO molar ratios and oxygen concentrations on the catalytic performance were de...
Wittayakun, Jatuporn Grisdanurak, Nurak Kinger, Gerald Vinek, Hannelore
Published in
Korean Journal of Chemical Engineering
Adsorption behavior of NO and CO as well as their reaction was investigated on cobalt supported zeolite beta (Co/BEA) prepared by solid-state ion exchange (SSIE) and by impregnation (IMP). By temperature programmed desorption (TPD), two NO desorption peaks at 100 and 260‡C were observed over both SSIE and IMP catalysts with complete desorption afte...