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时间:2020-03-26
《吸附相反应技术制备MnOxCeO2SiO2催化剂及其低温选择性催化还原NOx.pdf》由会员上传分享,免费在线阅读,更多相关内容在行业资料-天天文库。
1、物理化学学报(WuliHuaxueXuebao)JulyActa尸.一Chim.Sin.2014,30(7),1303-1308l303[Article]doi:10.3866/PKU.WHXB201405062www.whxb.pku.edu.cn吸附相反应技术制备MnO√CeO2,SiO2催化剂及其低温选择性催化还原NOx高琳心’蒋新郭森。(浙江大学化学工程与生物ST_程学系,杭州310027;浙江大学环境与资源学院,杭州310058)摘要:采用吸附相反应技术制备得到了MnOJCeOJSiO催化剂,通过X射线衍射(XRD)、透
2、射电子显微镜(TEM)、高分辨透射电子显微镜(HRTEM)、紫外激光拉曼(Raman)等手段对催化剂进行了表征.HRTEM分析表明活性组分MnO与CeO:都均匀分布在载体SiO表面:XRD分析表明Mn。O特征峰随着CeO含量的增加逐渐减小至完全消失,CeO的加入降低了MnO的结晶程度,增加了MnO的分散性:Raman光谱表明催化剂表面的Mn离子能够进入CeO晶格,激发出空穴氧,随着CeO负载量的增加,催化剂氧空穴浓度先升高后降低.以NH。为还原剂,考评催化剂的NO低温选择性催化还原(SCR)性能,催化剂催化活性随CeO负载量增加先
3、升高后降低,与催化剂氧空穴浓度变化规律一致。说明催化剂活性受氧空穴浓度影响,氧空穴浓度升高,催化剂催化活性升高.关键词:MnOJCeO/Si02催化剂:低温:选择性催化还原氧空穴:吸附相反应技术中图分类号:0643MnO】f,CeO2,SiO2CatalystsPreparedbyAdsorptionPhaseReactionTechniqueforSelectiveCatalyticReductionofNOatLow-TemperatureGAoLin.Xin’JIANGXin’,GUOSenfDepartmentofChem
4、ical&BiologicalEngineering,ZhejiangUniversity,Hangzhou31002ZR.ChinaCollegeofEnvironmentalandResourceSciences,Zh~iangUniversity,Hangzhou310058,R.China)Abstract:MnOCeOgSiO2catalystswerepreparedbytheadsorptionphasereactiontechniqueandwerecharacterizedbyX-raydifraction(XR
5、D),transmissionelectronmicroscopy(TEM),high-resolutiontransmissionelectronmicroscopy(HRTEM),andRamanspectroscopy.HRTEMshowedthatMnOandCeO2particleswereuniformlycoatedonthesur『ace0fSiO2,TheXRDspectrashowedthattheintensityoftheMn3O4difractionpeaksgraduallydecreasedandth
6、encompletelydisappearedwiththeincreasmentoftheCeO2content,whichindicatedthatCeO2reducedthecrystallinityofMnOandimprovedthedispersibilityofMnO.RamanspectroscopyindicatedthatMnionsonthesurraceofcatalystscouldenterintothelatticeofCeO2,replaceoxygenions,andf0rmoxygenvacan
7、cies.WiththeincreasmentofCeO2content.thedensityofoxygenvacanciesinitiallyincreasedandthendecreased.Weusedthecatalystsforselectivecatalyticreduction(SCR)ofNOwithNH3.ThecatalyticactivityinitiallyincreasedandthendecreasedwiththeincreasmentofCeO2content.similartothechange
8、inthedensityofoxygenvacancies.Thus,thecatalyticactivityoftheMnOJCeOJSiO2catalystsincreaseswithincreasingthedensityofoxygenva
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