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CeO_2的添加对柴油车氧化催化剂Pt/SiO_2-Al_2O_3的NO氧化性能提高的影响(英文) 被引量:1
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作者 黄于芬 张海龙 +5 位作者 杨铮铮 赵明 黄木兰 梁艳丽 王健礼 陈耀强 《物理化学学报》 SCIE CAS CSCD 北大核心 2017年第6期1242-1252,共11页
采用分步浸渍法制备不同CeO_2含量改性SiO_2-Al_2O_3载体的Pt/SiO_2-Al_2O_3柴油车氧化催化剂Pt/SiO_2-Al_2O_3-wCeO_2(质量分数w为0%,5%,10%,15%,30%)。利用固定床反应器,在模拟柴油车行驶条件下测定催化反应活性。活性结果表明,无论CO... 采用分步浸渍法制备不同CeO_2含量改性SiO_2-Al_2O_3载体的Pt/SiO_2-Al_2O_3柴油车氧化催化剂Pt/SiO_2-Al_2O_3-wCeO_2(质量分数w为0%,5%,10%,15%,30%)。利用固定床反应器,在模拟柴油车行驶条件下测定催化反应活性。活性结果表明,无论CO和C3H6存在与否,适量CeO_2的添加均明显提高了Pt/SiO_2-Al_2O_3柴油车氧化催化剂的NO氧化性能。其中,Pt/SiO_2-Al_2O_3-15%CeO_2表现出了最优氧化性能,其能在较宽温度范围内维持61%的NO_2产率。CO-化学吸附结果表明,适量CeO_2的添加有利于提高Pt的分散度,即提高催化剂表面可利用Pt原子比例。透射电镜(TEM)结果证实了CeO_2改性后高分散的Pt颗粒的存在,X射线衍射(XRD)结果也说明CeO_2改性后的载体更利于抑制Pt晶粒的增长。氢气程序升温还原(H2-TPR)和TEM结果均说明CeO_2的添加增强了贵金属-载体间的相互作用,从而更利于PtO_x与CeO_2还原。总之,本文表明CeO_2改性柴油车催化剂(DOC)可以提高催化剂的分散性和还原性,从而提高NO催化氧化性能,其对工业应用中柴油车尾气净化后处理复合系统(DOC+DPF+SCR)的净化效率的提高有重要意义。 展开更多
关键词 ceO2表面改性 柴油车氧化催化剂 NO氧化 表面pt原子比例提高 pt-ce相互作用
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Support interaction of Pt/CeO2 and Pt/SiC catalysts prepared by nano platinum colloid deposition for CO oxidation 被引量:5
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作者 Kang Xi Yong Wang +3 位作者 Kang Jiang Jing Xie Ying Zhou Hanfeng Lu 《Journal of Rare Earths》 SCIE EI CAS CSCD 2020年第4期376-383,共8页
The interaction between Pt and its various supports can regulate the intrinsic electronic structure of Pt particles and their catalytic performance.Herein,Pt/CeO2 and Pt/SiC catalysts were successfully prepared via a ... The interaction between Pt and its various supports can regulate the intrinsic electronic structure of Pt particles and their catalytic performance.Herein,Pt/CeO2 and Pt/SiC catalysts were successfully prepared via a facile Pt colloidal particle deposition method,and their catalytic performance in CO oxidation was investigated.XRD,TEM,XPS and H2-TPR were used to identify the states of Pt particles on the support surface,as well as their effect on the performance of the catalysts.Formation of the Pt-O-Ce interaction is one of the factors controlling catalyst activity.Under the oxidative treatment at low temperature,the Pt-O-Ce interaction plays an important role in improving the catalytic activity.After calcining at high temperature,enhanced Pt-O-Ce interaction results in the absence of metallic Pt0 on the support surface,as evidenced by the appearance of Pt2+species.It is consistent with the XPS data of Pt/CeO2,and is the main reason behind the deactivation of the catalyst.By contrast,either no interaction is formed between Pt and SiC or Pt nanoparticles remain in the metallic Pt0 state on the SiC surface even after aging at 800℃in an oxidizing atmosphere.Thus,the Pt/SiC shows better thermal stability than Pt/CeO2.The interaction between Pt and the active support may be concluded to be essential for CO oxidation at low temperature,but strong interactions may induce serious deactivation of catalytic activity. 展开更多
关键词 NANO PLATINUM COLLOID CO oxidation pt-O-ce interaction ceO2 SiC RARE earths
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