Novel Fe-doped CePO4 catalyst for selective catalytic reduction of NO with NH3: The role of Fe3+ ions.

Novel Fe-doped CePO4 catalyst for selective catalytic reduction of NO with NH3: The role of Fe3+ ions.
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DOI:
10.1016/j.jhazmat.2019.121212
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发表时间:
2020-02
影响因子:
13.6
通讯作者:
Yiqing Zeng;Wang Song;Yanan Wang;Shule Zhang;Tianxiao Wang;Q. Zhong
Yiqing Zeng;Wang Song;Yanan Wang;Shule Zhang;Tianxiao Wang;Q. Zhong
中科院分区:
环境科学与生态学1区
文献类型:
--
作者:
Yiqing Zeng;Wang Song;Yanan Wang;Shule Zhang;Tianxiao Wang;Q. Zhong

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首次通过简单的共沉淀法成功合成了新型Fe掺杂CePO4(FexCe1-x)催化剂,与FePO4和CePO4相比,表现出优异的NH3-SCR性能。为了研究Fe3+离子对CePO4催化剂NH3-SCR活性的促进作用,进行了各种表征。研究发现FexCe1-x催化剂的NH3容量受P位点控制并取决于其比表面积。有趣的是,FexCe1-x 中的 Fe 物种不是 NH3 吸附的路易斯酸位点,但它可以促进 NH3 的活化。更重要的是,Fe3+掺杂可以诱导Fe3++ Ce3+⇆ Fe2++ Ce4+的氧化还原平衡,从而显着改善CePO4催化剂的氧化还原性能。因此,FexCe1-x催化剂催化活性的提高可归因于更高的表面积、更好的氧化还原性能和易于活化的NH3的共同作用。其中,FexCe1-x催化剂优异的氧化还原性能是提高其高催化活性的主要原因。最后,通过原位DRIFT分析反应过程,提出CePO4和FexCe1-x上的NH3-SCR反应主要通过Eley-Rideal机理发生。我们预计这项工作可以促进新型NH3-SCR催化剂的发展。
Novel Fe-doped CePO4(FexCe1-x) catalyst was firstly successfully synthesizedviaa simple co-precipitation method and demonstrated excellent NH3-SCR performance in comparison with FePO4and CePO4. In order to study the promoting effects of Fe3+ion on the NH3-SCR activity of CePO4catalyst, various characterizations were conducted. It was found that NH3capacity of FexCe1-xcatalyst was controlled by P sites and depended on their specific surface area. Interestingly, Fe species in FexCe1-xwere not a Lewis acid site for NH3adsorption, but it could promote the activation of NH3. More importantly, Fe3+doping could induce the redox equilibrium of Fe3++ Ce3+⇆ Fe2++ Ce4+, which significantly improved redox properties of CePO4catalyst. Accordingly, improved catalytic activity of FexCe1-xcatalysts could be attributed to the collective effects of the higher surface area, better redox properties and easily activated NH3. Among them, superior redox property of FexCe1-xcatalysts was the main reason boosting their high catalytic activity. Finally, the reaction process analyzed by in situ DRIFT proposed that the NH3-SCR reaction over CePO4and FexCe1-xoccurred mainlyviaEley-Rideal mechanism. We anticipated this work could promote the development of novel NH3-SCR catalyst.