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1.
汽车尾气净化催化剂Ag-ZSM-5选择性催化还原NO   总被引:7,自引:0,他引:7       下载免费PDF全文
评价了Ag-ZSM-5分子筛催化剂选择性还原NO的活性,并运用原位漫反射红外光谱研究NO在该催化剂上的选择性还原机理.结果表明,以丙烯为还原剂,有O2(3.6%)存在时,Ag-ZSM-5有良好活性,在773K时N0还原成N2的转化率达68.8%.基于漫反射红外光谱,认为N0还原为N2的过程中,NO以NOx吸附态形式与丙烯的活化物种CxHy或CxHyOz反应,生成有机-氮氧化物(R-NO2或R-ONO)中间体,再进一步反应,最终生成N2;催化剂表面形成有机-氮氧化物是关键步骤,Ag的作用是促进形成NOx,O2 的作用是促进C3H6活化及NO转化成Nox,并且O2是有效产生有机-氮氧化物不可缺少的条件.  相似文献   

2.
文章对V2O5/ACF(活性炭纤维)进行低温选择性催化还原(SCR)NO的影响研究。实验表明:ACF用硝酸处理形成ACFN,然后采用等体积浸渍法制备V2O5/ACFN催化剂,NO脱除率明显增加。同时研究了V2O5负载量、反应温度、NH3初始浓度、NO初始浓度、O2含量等因素对NO脱除效率的影响,发现V2O5/ACFN在180℃低温时,在NH3/NO为1.1、NO初始体积分数1000×10-6和O2体积分数5%时NO脱除效率较高。  相似文献   

3.
汽车尾气净化催化剂Ag/SAPO-34选择性催化还原NO   总被引:10,自引:1,他引:10  
评价了Ag/SAPO-34分子筛催化剂选择性还原NO的活性,并运用漫反射红外光谱原位研究NO在Ag/SAPO-34催化剂上的选择性催化还原机理.结果表明Ag/SAPO-34有良好的低温活性,在氧气浓度为3.6%和温度为573K~673K时NO还原成N2的转化率达70%;催化剂活性随C3H6浓度的增加而升高,随空速的增加而稍有下降.基于漫反射红外光谱,认为反应机理为:NO、丙烯和氧反应,在Ag/SAPO-34催化剂上生成吸附的有机-氮氧化物,再由这些吸附物种分解成N2,催化还原的关键是形成有机-氮氧化物中间体.氧的作用是充分促进丙烯活化以及增加NOx吸附态含量,并且氧的存在是有效产生一系列中间物不可缺少的条件.  相似文献   

4.
低温条件下Nano-MnOx上NH3选择性催化还原NO   总被引:1,自引:0,他引:1  
采用流变相法制备了无载体Nano-MnOx催化剂,在低温条件下(50~150℃)以NH3为还原剂系统考察了氮氧化物的选择催化还原特性.结果表明,流变相法制备的Nano-MnOx催化剂具有良好的低温催化活性.实验条件下,80℃即可获得98.25%的NO转化率,100~150℃内NO几乎完全转化;SO2和H2O会与NO和NH3在催化剂表面产生竞争吸附,导致催化活性下降,但该影响是可逆的.经分析,较大的比表面积和较低的晶化度是Nano-MnOx具有良好低温活性的2个主要原因.  相似文献   

5.
利用气-固相固定床反应装置考察了Rh交换的Al-MCM-41在高气体空速条件下对贫燃NOx的选择性催化还原活性,考察了氧含量对其的影响。结果表明,在200000h~(-1)的气体空速、O_2/C_3H_6=20、603K时,NO转化率为74.3%。利用原位FTIR技术研究了该催化剂的表面吸附物种及表面程序升温反应行为,并结合实验观察探讨了贫燃条件下Rh-Al-MCM-41催化剂上NO的选择性催化还原机理。  相似文献   

6.
Ce-Mn/TiO2催化剂选择性催化还原NO的低温活性及抗毒化性能   总被引:2,自引:1,他引:2  
刘炜  童志权  罗婕 《环境科学学报》2006,26(8):1240-1245
用浸渍法制备了Ce-Mn/TiO2催化剂,考察了其在O2存在条件下选择性催化还原(SCR)NO的活性和抗SO2及H2O毒化的性能.结果表明,反应温度、空间速度、NO进口浓度和NH3/NO摩尔比对NO转化率的影响较小;在120℃的低温条件下,该催化剂显示了良好的催化活性,NO的转化率始终保持在95%以上.该催化剂有良好的同时抗SO2和H2O毒化能力.  相似文献   

7.
利用气-固相因定床反应装置考察了Rh交换的Al-MCM-41在高气体空速条件下对贫燃NOx的选择性催化还原活性,考察了氧含量对其的影响。结果表明,在200000h^-1的气体空速、O2/C3H6=20、603K时,NO转化率为74.3%。利用原位FTIR技术研究了该催化剂的表面吸附物种及表面程序升温反应行为,并结合实验观察探讨了贫燃条件下Rh-Al-MCM-41催化剂上NO的选择性催化还原机理。  相似文献   

8.
介绍了利用NH3选择性催化还原(sCR)烟气脱硝技术的机理、动力学模拟以及着重介绍了用于SCR过程中的各种催化剂的研究进展,最后分析了在SCR脱硝过程中的主要影响因素。并展望了今后脱硝过程中的方向,是进一步探讨各种催化剂的催化机理,从而研究更为合适的催化剂。  相似文献   

9.
富氧条件下氢部分选择性催化还原NO研究   总被引:1,自引:0,他引:1  
研制成功了低钯含量活性非均布Pd Al2 O3催化剂 ,实现了富氧条件下 ,氢部分选择性催化还原NO过程。实验表明在该催化剂上 ,低温、富氧条件下NO的转化率高达 80 %~ 10 0 %。室温下 (~ 2 0℃ ) ,NO对氢氧反应有强烈的抑制作用 ,氢氧反应进行后 ,NO还原反应开始明显进行 ,其与氢氧反应为竞争的平行反应  相似文献   

10.
低温等离子体改性对Fe2O3/ACF低温选择性催化还原NO的影响   总被引:1,自引:1,他引:1  
利用N2低温等离子体对过量溶液浸渍法制备的Fe2O3/ACF(活性炭纤维)催化剂进行了改性,运用BET比表面积、扫描电子显微镜(SEM)、X射线衍射光谱(XRD)和傅立叶变换红外光谱(FT\|IR)对催化剂进行表征.同时,对催化剂的NH3选择性催化还原(SCR)NO的催化性能进行了研究.结果表明,活性组分最佳负载量的质量分数为10.3%;N2等离子体改性最优改性电压为6kV,改性时间为3min;随着反应温度的升高,空白ACF上NO转化率先升高再下降,而催化剂上NO转化率呈上升趋势.在NO体积分数1000×10-6、NH3体积分数1000×10-6、O2体积分数5%、空速10040h-1和反应温度240℃的条件下,催化剂3.7%Fe2O3/ACF和10.3%Fe2O3/ACF经N2等离子体改性后,其NO转化率(相对于未改性的)分别提高了16.43%和6.84%.N2等离子体改性催化剂提高了活性组分在ACF上的分散度,增加了ACF表面的含氮官能团,从而提高了催化剂的SCR低温活性.  相似文献   

11.
The catalyst of Fe-Mo/ZSM-5 has been found to be more active than Fe-ZSM-5 and Mo/ZSM-5 separately for selective catalytic reduction (SCR) of nitric oxide (NO) with NH_3.The kinetics of the SCR reaction in the presence of O_2 was studied in this work.The results showed that the observed reaction orders were 0.74-0.99,0.01-0.13,and 0 for NO,O_2 and NH_3 at 350-450℃,respectively. And the apparent activation energy of the SCR was 65 kJ/mol on the Fe-Mo/ZSM-5 catalyst.The SCR mechanism was also deduced. Adsorbed NO species can react directly with adsorbed ammonia species on the active sites to form N_2 and H_2O.Gaseous O_2 might serve as a reoxidizing agent for the active sites that have undergone reduction in the SCR process.It is also important to note that a certain amount of NO was decomposed directly over the Fe-Mo/ZSM-5 catalyst in the absence of NH_3.  相似文献   

12.
The catalyst of Fe-Mo/ZSM-5 has been found to be more active than Fe-ZSM-5 and Mo/ZSM-5 separately for selective catalytic reduction (SCR) of nitric oxide (NO) with NH3. The kinetics of the SCR reaction in the presence of O2 was studied in this work. The results show that the observed reaction orders were 0.74-0.99, 0.01-0.13, and 0 for NO, O2 and NH3, respectively, at 350-450℃. And the apparent activation energy of the SCR was 65 kJ/mol on the Fe-Mo/ZSM-5 catalyst. The SCR mechanism was also deduced. Adsorbed NO species can react directly with adsorbed ammonia species on the active sites to form N2 and H2O. Gaseous O2 might serve as a reoxidizing agent for the active sites that have undergone reduction in the SCR process. It is also important to note that a certain amount of NO was decomposed directly over the Fe-Mo/ZSM-5 catalyst in the absence of NH3.  相似文献   

13.
采用尿素沉淀法制备了一系列Fe_2O_3/SAPO-34催化剂,考察了催化剂焙烧温度(200、300、400、500℃)对低温NH_3选择性催化还原(NH_3-SCR)NO性能的影响,并利用X射线衍射(XRD)、N_2吸附-脱附、原子吸收光谱(AAS)、场发射扫描电镜(FE-SEM)、X射线光电子能谱(XPS)、H_2程序升温还原(H_2-TPR)、NH_3程序升温脱附(NH_3-TPD)等多种手段对催化剂的表面结构和物理化学性质进行表征分析.XRD和FE-SEM分析表明,在较低的焙烧温度(400℃)下,铁物种能够高度均匀地负载在SAPO-34表面上.NH_3-TPD和H_2-TPR分析表明,高分散状态的Fe_2O_3使催化剂暴露出更多的强酸位和活性位,有利于提高催化剂的NH_3吸附和活化能力及氧化还原性能,从而使催化剂呈现出更高的低温SCR活性.BET和XPS分析表明,在较低的焙烧温度下,Fe_2O_3/SAPO-34催化剂具有更大的比表面积和更高的化学吸附氧比例,促进NO氧化为中间产物NO_2,从而加快低温SCR反应的进行.活性测试结果表明,300℃焙烧的Fe_2O_3/SAPO-34催化剂具有最佳的低温活性和较强的抗硫抗水性能,在空速为40000 h~(-1)的条件下,且反应温度为190~240℃时,NO转化率达90%以上且N_2选择性接近100%.  相似文献   

14.
The reaction mechanisms of selective catalytic reduction (SCR) of nitric oxide (NO) by methane (CH4) over solid superacid-based catalysts were proposed and testified by DRIFTS studies on transient reaction as well as by kinetic models. Catalysts derived from different supports would lead to different reaction pathways, and the acidity of solid superacid played an important role in determining the reaction mechanisms and the catalytic activities. Higher ratios of Br?nsted acid sites to Lewis acid sites would lead to stronger oxidation of methane and then could facilitate the step of methane activation. Strong Br?nsted acid sites would not necessarily lead to better catalytic performance, however, since the active surface NOy species and the corresponding reaction routes were determined by the overall acidity strength of the support. The reaction routes where NO2 moiety was engaged as an important intermediate involved moderate oxidation of methane, the rate of which could determine the overall activity. The reaction involving NO moiety was likely to be determined by the step of reduction of NO. Therefore, to enhance the SCR activity of solid superacid catalysts, reactions between appropriate couples of active NOy species and activated hydrocarbon intermediates should be realized by modification of the support acidity.  相似文献   

15.
铁基催化剂的微波水热处理对其SCR脱硝性能的影响   总被引:1,自引:0,他引:1  
利用微波对共沉淀制备的铁铈钛复合氧化物催化剂前驱体进行水热处理,探讨了微波水热处理对铁基催化剂低温SCR脱硝性能的优化;并对微波水热处理条件的影响进行了正交分析.结果表明:对铁基催化剂前驱体进行微波水热处理,可提高其低温SCR脱硝性能,使其脱硝温度窗口向低温偏移;且微波水热处理的低温优化效果与催化剂中Fe/Ti摩尔比密切相关,Fe/Ti摩尔比越小,微波水热处理的低温优化越强;微波加热方式和微波辐射时间会影响微波水热处理对铁基催化剂SCR脱硝性能的低温优化;在相同微波辐射时间条件下,当P30逐渐变为P80,微波水热处理对铁基催化剂低温SCR脱硝的促进作用降低;在P30条件下,微波辐射15min使铁基催化剂具有最佳低温SCR脱硝活性.  相似文献   

16.
以MnOx/TiO2作为催化剂的低温SCR反应过程中还原剂NH3的作用   总被引:2,自引:0,他引:2  
研究了在以MnOx/TiO2作为催化剂的低温SCR反应过程中,还原剂NH3所起的作用.当系统中NH3浓度较低时,增加气相中NH3的浓度可以大幅度提高NO的去除率.但当系统中NH3浓度较高时,NO去除率基本不随NH3浓度变化而变化.并且瞬态研究中,NH3对NO去除率的影响较为复杂.为了探明NH3在SCR反应中的作用,用原位傅立叶红外检测了各个反应历程中NH3在催化剂表面形成的基团变化及其活性特征.结果表明,在SCR反应过程中,在催化剂表面形成的配位态的NH3是参与反应的主要物质.并且在催化剂表面,此种NH3会与NO生成的硝酸盐形成竞争吸附,当催化剂活性点首先被硝酸盐占领时,将会影响配位态NH3的生成,从而在一定程度上降低了NO的转化率.  相似文献   

17.
Pt supported on mesoporous silica SBA-15 was investigated as a catalyst for low temperature selective catalytic reduction(SCR) of NO by C 3 H 6 in the presence of excess oxygen.The prepared catalysts were characterized by means of XRD,BET surface area,TEM,NO-TPD,NO/C 3 H 6-TPO,NH 3-TPD,XPS and 27 Al MAS NMR.The effects of Pt loading amount,O 2 /C 3 H 6 concentration,and incorporation of Al into SBA-15 have been studied.It was found that the removal efficiency increased significantly after Pt loading,but an optimal loading amount was observed.In particular,under an atmosphere of 150 ppm NO,150 ppm C 3 H 6,and 18 vol.% O 2,0.5% Pt/SBA-15 showed remarkably high catalytic performance giving 80.1% NOx reduction and 87.04% C 3 H 6 conversion simultaneously at 140°C.The enhanced SCR activity of Pt/SBA-15 is associated with its outstanding oxidation activities of NO to NO 2 and C 3 H 6 to CO 2 in low temperature range.The research results also suggested that higher concentration of O 2 and higher concentration of C 3 H 6 favored NO removal.The incorporation of Al into SBA-15 improved catalytic performance,which could be ascribed to the enhancement of catalyst surface acidity caused by tetrahedrally coordinated AlO 4.Moreover,the catalysts could be easily reused and possessed good stability.  相似文献   

18.
将Ag-Rh浸渍到共沉淀法合成的Ce-Zr-Al上,制备出Ag(0.04)-Rh(x)/Ce0.5Zr0.5O2-75%Al2O3系列催化剂,采用BET比表面积、X射线衍射光谱(XRD)和原位漫反射傅里叶变换红外光谱(DRIFTS)对催化剂进行表征,并探讨催化剂在贫燃条件下选择性还原NO的活性和反应机理.结果表明,Ag-Rh双组分催化剂的活性较单组分Ag、Rh催化剂的高.Rh负载量为0.7%(质量分数)时,NO转化率达最佳(90.3%),且反应的起燃温度低、活性温度范围宽(300~500℃).DRIFTS结果显示,Rh的添加不仅有利于催化剂表面NO的吸附,而且能促进Ag催化生成关键反应中间体—CO—NH—,进而显著提高NO的转化率.  相似文献   

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