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1.
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   

2.
Mn/Fe-Mn改性HZSM-5在NH3-SCR中的催化性能   总被引:2,自引:0,他引:2  
采用离子交换法制备了不同Mn含量及不同Fe/Mn物质的量比的HZSM-5改性分子筛,并以NH3为还原剂,在体积空速为12000 h-1条件下,考察了上述催化剂选择性催化还原NO性能.同时,运用环境扫描电镜(ESEM)、比表面积(BET)和X-射线衍射(XRD)等方法对催化剂进行了表征.结果表明,改性催化剂中活性组分在载体表面呈高度分散形式,催化活性较高,复合改性较单独改性性能更为优越,适量Fe的加入提高了催化剂催化活性和稳定性;(0.25)Fe-Mn/HZSM-5(Fe/Mn物质的量比为0.25)的NO转化率于300℃时最高达到98%,在300~500℃范围内NO转化率均保持在90%以上.实验还研究了不同焙烧温度下制备的(0.25)Fe-Mn/HZSM-5对NO转化率的影响.结果表明,焙烧温度对催化剂的活性影响较大,550℃为最佳焙烧温度.  相似文献   

3.
Niobium oxide as the promoter was doped in the V/WTi catalyst for the selective catalytic reduction(SCR)of NO.The results showed that the addition of Nb_2O_5could improve the SCR activity at low temperatures and the 6 wt.%additive was an appropriate dosage.The enhanced reaction activity of adsorbed ammonia species and the improved dispersion of vanadium oxide might be the reasons for the elevation of SCR activity at low temperatures.The resistances to SO_2of 3V6Nb/WTi catalyst at different temperatures were investigated.FTIR spectrum and TG-FTIR result indicated that the deposition of ammonium sulfate species was the main deactivation reason at low temperatures,which still exhibited the reactivity with NO above 200°C on the catalyst surface.There was a synergistic effect among NH_3,H_2O and SO_2that NH_3and H_2O both accelerated the catalyst deactivation in the presence of SO_2at 175°C.The thermal treatment at 400°C could regenerate the deactivated catalyst and get SCR activity recovered.The particle and monolith catalysts both kept stable NO_xconversion at 225°C with high concentration of H_2O and SO_2during the long time tests.  相似文献   

4.
Fe-MnOx-CeO2/ZrO2低温催化还原NO性能研究   总被引:2,自引:2,他引:0  
刘荣  杨志琴 《环境科学》2012,33(6):1964-1970
以纳米ZrO2为载体,用浸渍法制备出Fe-MnOx-CeO2/ZrO2催化剂,考察了活性组分配比和助剂负载量对催化剂低温NH3选择性催化还原NO活性的影响,并对催化剂进行了XRD、SEM、EDS和BET表征;探讨了温度、H2O和SO2对Fe-MnOx-CeO2/ZrO2催化剂低温下NH3选择性催化还原NO的影响,结果表明,无SO2和H2O条件下,8%Fe-10%MnOx-CeO2/ZrO2催化剂具有良好的催化活性和稳定性.120℃时,催化剂的脱硝效率为85.23%,当温度升至180℃时,脱硝效率可达到92.0%.SO2和H2O共存条件下,催化剂易失活,采用傅立叶变换红外光谱对各反应阶段的催化剂进行了表征,对其失活机制进行深入研究,结果表明,催化剂失活的主要原因是催化剂表面硫酸铵盐的沉积和催化剂本身活性成分的硫酸盐化.  相似文献   

5.
采用等体积浸渍法制备了一系列Mn-Ce-Ox复合氧化物脱硝催化剂用于NH3选择性催化还原(NH3-SCR)NO。考察了Mn/Ce摩尔比、焙烧温度、H2O和SO2对Mn-Ce-Ox复合氧化物脱硝催化剂活性的影响及催化剂中毒再生性能。结果表明:当NH3:NO=1:1,空速为5 000 h-1,550℃焙烧制得的Mn/Ce摩尔比为5∶1的Mn-Ce-Ox复合脱硝催化剂活性最佳,活性温度窗口为100~260℃,在此温度区间内催化剂活性大于90%。200℃时,Mn-Ce-Ox复合催化剂活性最高为97.84%;在10%(V/V)H2O蒸汽和300×10-6SO2共存条件下,200℃时,催化剂活性在开始反应2.5 h内迅速下降至53%左右,并在之后的6 h内没有明显变化;中毒催化剂经常温水洗再生处理、质量分数为3%的硝酸溶液再生处理和550℃焙烧2 h再生处理后200℃活性均能恢复到90%以上,其中中毒催化剂经质量分数为3%硝酸处理后活性恢复率最高。  相似文献   

6.
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   

7.
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   

8.
NOx emission abatement catalysts V2O5 supported on various TiO2 including anatase, rutile and mixture of both were investigated with various physico-chemical measurements such as BET, NH3-TPD, NARP, XRD and so on, and the effect of TiO2 surface properties on the SCR (selective catalytic reduction) activity of V20s/TiO2 catalysts was studied. It was found that the TiO2 surface properties had strong affect on the SCR activity of V2Os/TiO2 catalysts. The stronger acidic property resulted in the higher exposure of active sites as well as the higher SCR activity.  相似文献   

9.
Mo/ZSM-5 catalysts with different Mo content were prepared by impregnation method. The effect of Mo content on the property of Mo/ZSM-5 catalysts and their performance for selective catalytic reduction(SCR) of NO with ammonia was investigated by XRD, ICP,XPS and NO-TPD respectively. The results showed that the catalytic activity of Mo/ZSM-5 for SCR of NO is strongly influenced by the Mo loading in HZSM-5 zeolites. The NOx conversion reached the highest value of 64.2% at 375℃ when Mo content is about 10.9%, and the temperatures at which the maximum of NOx conversion obtained were declined with the increase of Mo content. From XRD results, it can be seen that it exhibits the distinct interaction between Mo and HZSM-5 when Mo content is about 10.9%. This may result in a suitable phase structure in Mo/ZSM-5 catalyst, which is advantageous for NO reduction. XPS and NO-TPD results also showed that the catalytic activity of Mo/ZSM-5 may be related to the Mo percent on the surface.  相似文献   

10.
在低温选择性催化还原(SCR)反应条件下考察了烟气残余SO2对Mn/TiO2和Mn-Ce/TiO2催化剂选择性催化还原活性的影响,同时对SO2的影响机理进行了探讨.结果发现,Mn/TiO2催化剂在SO2反应气氛中失活很快,硫铵盐的沉积和活性组分的硫酸化是催化剂失活的重要原因;Ce的加入可以有效地抑制催化剂活性组分的硫酸化,同时还能降低硫酸盐在催化剂表面的稳定性,从而可以提高催化剂的抗硫性.  相似文献   

11.
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   

12.
低温磁性铁基SCR烟气脱硝的实验研究   总被引:3,自引:2,他引:1  
姚桂焕  张琦  秦烨  王芳  陆芳  归柯庭 《环境科学》2009,30(10):2852-2857
在流化床反应器中,以磁性铁氧化物(Fe3O4、γ-Fe2O3)颗粒为床料,氨为还原剂,进行了中低温SCR烟气脱硝实验研究,然后对反应辅加磁场,初步研究磁场对磁性γ-Fe2O3催化剂SCR脱硝的影响,并对床料进行了XRD分析.结果表明,Fe3O4的SCR活性较差,γ-Fe2O3的SCR活性较佳,在250℃其催化脱硝效率能达到90%,但在250℃以上Fe2O3会对氨的氧化起作用,因而在250℃及以下的邻近温度区间是最佳催化温度区间.此外,在150~290℃,外加磁场能促进γ-Fe2O3对NO的吸附,提高脱硝效率,使250℃时的脱硝效率达到95%左右,但在290℃以上,则会降低脱硝效率.为了抑制氨的氧化,发挥磁场对γ-Fe2O3脱硝的作用,适合在200~250℃低温区间内采用γ-Fe2O3催化剂进行SCR脱硝.  相似文献   

13.
SO2对Ag/Al2O3催化剂上CH3OH还原NO性能的影响   总被引:1,自引:0,他引:1  
用溶胶-凝胶混合法制备了Ag负载量为5%的Ag/A12O3催化剂.研究了富氧条件下,SO2对CH3OH在催化剂上还原NO性能的影响.结果表明,反应气不含SO2和H2O时,NO还原活性温度较低,有显著量N2O生成,这被归因为反应过程中,部分氧化态Ag被还原为金属Ag.添加SO2或同时添加SO2和H2相似文献   

14.
锰前驱体对MnO_x/TiO_2催化剂低温选择性催化还原NO_x影响   总被引:1,自引:0,他引:1  
以醋酸锰和硝酸锰为前趋体通过浸渍法制备了MA和MN两种系列的MnOx/TiO2催化剂,结合BET、XRD、TPR及FT-IR等手段对催化剂进行了表征,并进行了比较,同时对两种系列的催化剂进行了选择催化还原脱硝的活性测试。结果表明,MA和MN均具有良好的低温催化活性,脱销效率随温度的变化趋势基本相同,在80℃时已经达到80%的脱硝效率;随着温度的升高,在200℃时效率上升至接近100%。通过对催化剂性能测试比较表明,锰的含量对于催化剂的活性有一定的影响。总体上看,MN具有更好的活性,脱销效率较高,并且其活动的窗口也是相对更宽,可能是因为以硝酸锰为前躯体制的的催化剂中MnO2的含量相对较多,即两类前驱体在制备过程中与载体之间的相互作用不同,导致最终催化剂表面活性组分MnOX结构和价态的不同,从而影响催化剂的低温活性。  相似文献   

15.
以堇青石蜂窝陶瓷为载体的新型钒氧化物脱氮催化剂研究   总被引:18,自引:2,他引:16  
以TiO2/Al2O3/堇青石蜂窝陶瓷为载体,以V2O5-MoO3-WO3为活性组分,用于氨法选择性催化还原烟气中NO的新型催化剂,并对该催化剂的活性性能和微观结构进行了评价和表征.同时,将该催化剂的活性性能与其它几种活性组分相同但载体、制备方法、结构不同的催化剂进行了对比.对比结果表明,该新型催化剂能取得最好的选择性催化还原氮氧化物催化性能BET、FT IR、XPS表征实验结果表明,其高催化活性得益于大比表面积及大孔体积,而TiO2/Al2O3/堇青石蜂窝陶瓷载体及其制备方法对获得好的催化剂构型起了至关重要的作用.  相似文献   

16.
掺杂15%TiO2对γ-Al2O3改性制备了TiO2/γ-Al2O3复合氧化物载体,以此复合氧化物及TiO2、γ-Al2O3为载体用浸渍法负载钒钨制备了一系列催化剂,采用比表面积和孔结构分析、X射线衍射(XRD)、高分辨电镜(HRTEM)、原位红外(in situ FT-IR)等技术对载体和催化剂进行宏观-微观表征,同时在模拟氨气选择性催化还原NO(NH3-SCR)的反应条件下对催化剂的脱硝反应活性进行考察,比较研究TiO2掺杂对V2O5-WO3/TiO2和V2O5-WO3/γ-Al2O3催化剂的改性作用。结果发现,少量TiO2掺杂制得的TiO2/γ-Al2O3复合载体中,TiO2和γ-Al2O3之间的协同作用使得V2O5-WO3/TiO2/γ-Al2O3催化剂的选择性催化还原脱硝效率及活性窗口明显优于单一载体制备的催化剂,并表现出了良好的热稳定性;各种表征结果表明,TiO2/γ-Al2O3复合载体中TiO2高度分散在γ-Al2O3上,复合载体具有较大的比表面积,载体表面存在大量的Br?nsted酸位和较多的活性中间产物,这些可能是TiO2/γ-Al2O3复合载体催化剂具有较好SCR活性的原因。  相似文献   

17.
Herein, a series of niobium oxide supported cerium nanotubes(Ce NTs) catalysts with different loading amount of Nb2O5(0–10 wt.%) were prepared and used for selective catalytic reduction of NOxwith NH3(NH3-SCR) in the presence of CH2Cl2. Commercial V2O5-WO3-TiO2 catalyst was also prepared for comparison. The physcial properties and chemical properties of the Nb2O5 lo...  相似文献   

18.
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   

19.
SO2对Mn-Cu-Ce/TiO2低温选择催化还原NO的影响   总被引:2,自引:1,他引:1  
研究了SO2对Mn-Cu-Ce/TiO2选择催化还原 NO 的影响,并采用傅立叶变换红外光谱、x射线衍射光谱及暂态响应技术对Mn-Cu-Ce/TiO2催化剂的SO2中毒机理进行了探讨.结果表明,SO2 可强吸附在Mn-Cu-Ce/TiO2表面的 CuO 活性位上.并生成 CuSO4,由于 CuSO4 在低温时对SCR 反应有抑制作用,因而,催化剂的活性下降;暂态响应实验结果表明,Mn-Cu-Ce/TiO2催化剂上的SCR反应主要遵循 Langmuir-Hinshelwood机理.通过对催化剂进行硫酸化或 NO 预吸附,可以消除SO2对 Mn-Cu-Ce/TiO2的毒害作用.  相似文献   

20.
SO2对CoH-ZSM-5催化CH4还原NO催化性能的影响   总被引:1,自引:1,他引:0  
研究了富氧条件下SO2对CoH-ZSM-5上CH4选择还原NO(CH4-SCR)的影响,应用SO2-TPSR,NO+(O2)-TPD等方法研究了产生中毒的原因并定量研究了被毒化的活性位.反应在773 K进行时,加入体积分数78×10-6SO2,NO的转化率由72%逐渐降低并稳定在58%,提高反应温度至823 K,NO稳定转化率上升至62%.同时加入2.5  相似文献   

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