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1.
利用液相沉淀法可控合成了均匀的棒状CuFe4Ox催化剂。通过原位X射线粉末衍射(XRD)、高分辨透射电子显微镜(TEM)及程序升温还原(TPR)等手段表征其晶相结构、形貌和还原性能。通过还原棒状CuFe4Ox获得Cu0/Fe3O4 纳米棒,原位X射线光电子能谱(XPS)用于确定Cu0/Fe3O4 表面的相组成。通过液相沉淀法制备棒状CuFe4Ox,在120℃保持3 h后加入Na2CO3溶液至pH等于9时所得棒状形貌最为规整。以异戊醇脱氢反应作为探针反应,比较了Cu0/Fe3O4 纳米棒和Cu0/Fe3O4 纳米颗粒的催化反应性能,发现Cu0/Fe3O4 纳米棒比Cu0/Fe3O4 纳米粒子具有更好的活性和稳定性,表明棒状Fe3O4 担载的Cu纳米粒子具有更好的结构稳定性。  相似文献   

2.
利用液相沉淀法可控合成了均匀的棒状CuFe4Ox催化剂。通过原位X射线粉末衍射(XRD)、高分辨透射电子显微镜(TEM)及程序升温还原(TPR)等手段表征其晶相结构、形貌和还原性能。通过还原棒状CuFe4Ox获得Cu0/Fe3O4纳米棒,原位X射线光电子能谱(XPS)用于确定Cu0/Fe3O4表面的相组成。通过液相沉淀法制备棒状CuFe4Ox,在120℃保持3 h后加入Na2CO3溶液至pH等于9时所得棒状形貌最为规整。以异戊醇脱氢反应作为探针反应,比较了Cu0/Fe3O4纳米棒和Cu0/Fe3O4纳米颗粒的催化反应性能,发现Cu0/Fe3O4纳米棒比Cu0/Fe3O4纳米粒子具有更好的活性和稳定性,表明棒状Fe3O4担载的Cu纳米粒子具有更好的结构稳定性。  相似文献   

3.
通过离子交换法制得Cu/SAPO-34菱沸石分子筛催化剂, 同时研究了NH3和NOx (NO和NO2)在该催化剂上的吸附位、吸附强度、吸附量和吸附速率, 得到了不同反应气氛在Cu/SAPO-34 上的吸附性能及其在NH3选择性催化还原(NH3-SCR)反应中的作用. 研究采用瞬态实验、程序升温脱附(TPD)和漫反射傅里叶变换红外光谱(DRIFTS)等方法进行表征实验. 瞬态实验结果表明NH3是吸附性气体. 程序升温脱附实验和红外漫反射实验结果表明NH3可以吸附在布朗斯特和路易斯酸性位上形成不同的NH3物种, 它们显示不同的SCR活性. NH3在Cu2+上的吸附速率最快, 且键强最强. NOx可以氧化并以硝酸盐/亚硝酸盐的形式吸附在Cu物种上. 最后, 本文讨论了NH3选择性催化还原反应过程中在Cu物种上的中间物种并推测反应机理.  相似文献   

4.
用不同的预处理气氛制备了CeO2/γ-Al2O3载体以调节表面Ce的价态,并以Cu(CH3COO)2为前驱体制备了CuCeAl催化剂。XRD和H2-TPR的结果表明在还原气氛下处理的CeO2/γ-Al2O3载体具有更多的活性氧原子,因此相应的CuCeAl催化剂表面有更多分散态的Cu2+/Cu+物种。NO+CO反应的结果表明分散态的Cu2+/Cu+是NO转化的活性物质,而Cu0在低温下具有较好的N2选择性。因此,同时含有分散态Cu2+/Cu+和少量晶相Cu0的催化剂具有最好的催化性能。  相似文献   

5.
采用一步法水热合成不同Cu/Al比的Cu-SAPO-34催化剂,并对其丙烯选择性催化还原NO(C3H6-SCR)性能进行了研究。通过N2吸附-脱附、X射线衍射(XRD)、X射线光电子能谱(XPS)、程序升温还原(H2-TPR)和原位漫反射傅里叶变换红外光谱(In situ DRIFTS)等研究手段对催化剂进行表征,考察Cu-SAPO-34中Cu物种含量对催化剂的物理化学性质和反应活性的影响。结果表明,当铜负载量为2.76%~4.12%(w/w)时,Cu-SAPO-34催化剂在富氧条件下300~400℃内表现出非常有吸引力的C3H6-SCR活性,可实现~100%的脱硝效率和~100%的N2选择性。原位红外光谱研究表明,Cu-SAPO-34分子筛骨架上孤立的Cu2+离子是NO吸附和活化形成NO2-/NO3-中间物种的主要活性位,并通过C3H6-SCR反应过程中Cu2+/Cu+氧化还原循环来实现Cu2+离子的持续供给。  相似文献   

6.
采用X射线衍射、扫描电镜、原子吸收、程序升温还原、X射线吸收近边吸收谱、X射线光电子能谱、氮吸附等手段对水热合成(HS)、等体积浸渍(PVI)与离子交换(IE)法制备的CuSAPO-34样品进行了表征,并评价了老化前后催化剂上C3H6-SCR与NH3-SCR脱除模拟柴油车尾气中NOx的反应活性.结果表明,IE法制得的催化剂活性最高,尤其在C3H6-SCR低温阶段;PVI法制得的催化剂活性最差.制备方法影响CuSAPO-34催化剂的比表面积、孔径分布和活性组分价态从而改变其催化活性.各催化剂均存在Cu+和Cu2+,但比例明显不同.HS样品以Cu2+为主,另两种样品则含较多的Cu+.老化不仅部分破坏了分子筛的形貌、降低了分子筛的比表面积,尤其是表面Cu含量,而且有部分Cu生成了CuSO4,使得老化后催化剂的脱硝活性降低.PVI法制得的催化剂老化后活性下降幅度最小,表明该分子筛抗老化能力较强.  相似文献   

7.
主要考察了NO2对Cu/SAPO-34 分子筛催化剂在整个温度范围内(100-500 ℃)NH3选择性催化还原(SCR)NO性能的影响. 研究所使用样品为新鲜Cu/SAPO-34 催化剂在750 ℃下水热处理4 h 的稳定期样品.通过X射线衍射(XRD)和扫描电子显微镜(SEM)对样品的结构以及形貌进行表征,采用SCR活性评价、动力学实验以及原位漫反射傅里叶变换红外光谱(in situ-DRIFTS)表征催化剂的性能以及催化剂表面物种的变化. 活性评价实验结果表明,NO2会抑制催化剂的低温(100-280 ℃)活性,但其存在会提高催化剂的高温(280 ℃以上)活性. 与此同时,随着反应物中NO/NO2的摩尔比例减少,由于NH4NO3物种的分解,副产物(N22O)的浓度增大. 动力学结果表明,Cu/SAPO-34 催化剂上快速SCR反应的表观活化能(Ea=64.02 kJ·mol-1)比标准SCR反应的表观活化能(Ea=48.00 kJ·mol-1)更大. In situ-DRIFTS实验结果表明NO比NO2更容易在催化剂表面形成硝酸盐,并且NO2更容易与吸附在Brønsted 酸性位上的NH3物种反应生成NH4NO3. 低温下,催化剂表面的NH4NO3物种会覆盖SCR反应的活性位,造成活性降低,但在高温时,形成的NH4NO3物种一部分会被NO还原为N2,而另一部分会直接热分解为N2O,造成催化剂的选择性降低.  相似文献   

8.
固定铜铁的总质量不变, 采用共浸渍法制备铜铁双金属催化剂. 为了更好地了解催化剂的性质, 分别用N2吸附-脱附、H2-程序升温还原(H2-TPR)、NH3-程序升温脱附(NH3-TPD)、X射线衍射(XRD)和X射线光电子能谱(XPS)方法对制备的催化剂进行表征. 研究发现在100000 h-1空速下, 铜铁双金属催化剂呈现出好的活性和氮气选择性. 在低温区, 随着铜含量的增加, 活性和氮气的选择性增加, 然而在高温区氮气的选择性直接和铁的含量相关. 其中催化剂Fe0.25Cu0.75/ZSM-5, 在350℃氨的转化率达到最高, 在300℃氮气的选择性上升到97%. Fe0.75Cu0.25/ZSM-5 在500 ℃有很高的氮气选择性甚至可以达到98%. 并且所有的催化剂均产生很少的N2O副产物. 表征结果显示催化剂的酸量和铜物种的含量可以影响催化剂的活性, 并且高的还原能力和铁含量有助于高温氮气选择性的提高.  相似文献   

9.
史光  朱繁  喻瑞 《分子催化》2023,37(4):405-418
氮氧化物(NOx)是一种重要的大气污染物, 它造成严重的环境问题, 同时威胁人类健康. 以钢铁烧结烟气为代表的固定源和以柴油机尾气为代表的移动源是氮氧化物的主要来源. 氨气选择性催化还原法(NH3-SCR)是目前最有效且应用最广泛的NOx脱除技术. 然而, 无论是固定源还是移动源上NH3-SCR催化剂, 都不可避免地会被SO2毒化, 造成催化剂失活, 限制了NH3-SCR技术的进一步应用. 因此, 研究NH3-SCR催化剂的SO2中毒机制以及提高催化剂的抗硫性能至关重要. 我们对固定源脱硝的金属氧化物和移动源上脱硝的Cu基分子筛这两类不同催化剂体系的SO2中毒机制的研究进展进行了介绍, 并对这两种催化剂上提高抗硫性能改性方法的研究进展进行了评述, 为未来的研究提供了参考.  相似文献   

10.
采用共沉淀的方法制备了CeTiOx和CeZrTiOx两种用于NH3选择性催化还原NOx的催化剂.两种催化剂在不同的高温条件下进行热老化以考察Zr的添加对CeTiOx催化剂热稳定性的影响.NH3-SCR活性数据显示,经过650、750和850 ℃的高温老化处理,Zr改性后的催化剂较CeTiOx催化剂具有更好的催化活性和N2选择性.XRD、Raman和H2-TPR结果表明添加Zr可以阻止Ce物种的烧结并且抑制金红石相TiO2的生成.催化剂的SEM图像显示Zr的添加可以抑制颗粒随着焙烧温度升高而产生的聚集长大.XPS的Ce3d光谱表明,随着老化温度的提升,CeTiOx催化剂表面的Ce3+/Ce4+比相对于CeZrTiOx催化剂下降更加明显.这意味着随着Zr的添加,更多的晶格缺陷和氧空缺出现在Zr改性催化剂的表面,这有利于催化性能的提升.另外,NH3-TPD结果表明经过相同的高温老化,改性的催化剂保持了更多的Brönsted酸性位,提高了催化活性并抑制了氨的氧化.因此,Zr的添加提高了催化剂的热稳定性能.  相似文献   

11.
Tao Lin 《Acta Physico》2008,24(7):1127-1131
Monolith catalysts were prepared using TiO2 and ZrO2-TiO2 as supports with MnO2 as active component and Fe2O3 as promoter. The catalytic activities at low temperature and stability at high temperature for selective catalytic reduction of NOx with NH3 (NH3-SCR) in the presence of excessive O2 were studied after the catalysts calcined at different temperatures. The catalysts were characterized by X-ray diffraction (XRD), specific surface area measurements (BET), oxygen storage capacity (OSC), and temperature programmed reduction (H2-TPR). The results indicated that the catalyst supported on ZrO2-TiO2 had excellent stability at high temperature, and possessed high specific surface area and oxygen storage capacity, and had strong redox property. The results of the catalytic activities indicated that the monolith manganese-based catalyst using ZrO2-TiO2 as support had evidently improved the activity of NH3-SCR reduction reaction at low temperature, and it showed great potential for practical application.  相似文献   

12.
Spherical MCM-41 with various copper and iron loadings was prepared by surfactant directed co-condensation method. The obtained samples were characterized with respect to their structure (X-ray diffraction, XRD), texture (N2 sorption), morphology (scanning electron microscopy, SEM), chemical composition (inductively coupled plasma optical emission spectrometry, ICP-OES), surface acidity (temperature programmed desorption of ammonia, NH3-TPD), form, and aggregation of iron and copper species (diffuse reflectance UV-Vis spectroscopy, UV-Vis DRS) as well as their reducibility (temperature programmed reduction with hydrogen, H2-TPR). The spherical MCM-41 samples modified with transition metals were tested as catalysts of selective catalytic reduction of NO with ammonia (NH3-SCR). Copper containing catalysts presented high catalytic activity at low-temperature NH3-SCR with a very high selectivity to nitrogen, which is desired reaction products. Similar results were obtained for iron containing catalysts, however in this case the loadings and forms of iron incorporated into silica samples very strongly influenced catalytic performance of the studied samples. The efficiency of the NH3-SCR process at higher temperatures was significantly limited by the side reaction of direct ammonia oxidation. The reactivity of ammonia molecules chemisorbed on the catalysts surface in NO reduction (NH3-SCR) and their selective oxidation (NH3-SCO) was verified by temperature-programmed surface reactions.  相似文献   

13.
The application of layered zeolites of MWW topology in environmental catalysis has attracted growing attention in recent years; however, only a few studies have explored their performance in selective catalytic reduction with ammonia (NH3-SCR). Thus, our work describes, for the first time, the one-pot synthesis of Fe-modified NH3-SCR catalysts supported on MCM-22, MCM-36, and ITQ-2. The calculated chemical composition of the materials was Si/Al of 30 and 5 wt.% of Fe. The reported results indicated a correlation between the arrangement of MWW layers and the form of iron in the zeolitic structure. We have observed that one-pot synthesis resulted in high dispersion of Fe3+ sites, which significantly enhanced low-temperature activity and prevented N2O generation during the reaction. All of the investigated samples exhibited almost 100% NO conversion at 250 °C. The most satisfactory activity was exhibited by Fe-modified MCM-36, since 50% of NO reduction was obtained at 150 °C for this catalyst. This effect can be explained by the abundance of isolated Fe3+ species, which are active in low-temperature NH3-SCR. Additionally, SiO2 pillars present in MCM-36 provided an additional surface for the deposition of the active phase.  相似文献   

14.
A series of MoO3 doped Fe2O3 catalysts prepared by the co-precipitation method were investigated in the selective catalytic reduction of NO by NH3 (NH3-SCR). The catalysts displayed excellent catalytic activity from 225 to 400°C and high tolerance to SO2/H2O poisoning at 300°C. To characterize the catalysts the N2-BET, XRD, Raman, NO-TPD, NH3-TPD and in situ DRIFTS were carried out. It was found that the main reason explaining a high NH3-SCR performance might be the synergistic effect between Fe and Mo species in the catalyst that could enhance the dispersion of Fe2O3 and increase NH3 adsorption on the catalyst surface.  相似文献   

15.
采用共沉淀法制备了系列铜负载量不同的Cu/Fe2O3水煤气变换(WGS)催化剂,并考察了铜负载量对催化剂结构和水煤气变换反应性能的影响. 结果表明,Cu/Fe2O3催化剂呈现出良好的水煤气反应性能,当CuO质量分数为20%时,催化剂的WGS性能最优,250 ℃时CO转化率高达97.2%,同时热稳定性也最好. 运用X射线粉末衍射(XRD)、N2物理吸脱附和H2程序升温还原(H2-TPR)等手段对Cu/Fe2O3催化剂的物相、织构特征及还原性能进行了表征,结果表明,CuFe2O4物种的存在极大地改善了催化剂的还原性能和WGS反应活性. 这是由于CuFe2O4特殊的尖晶石结构有利于Cu微晶的稳定;同时,CuFe2O4在低温下即被还原为单质铜,有利于促进催化剂体系中电子的转移. 此外,通过(NH4)2CO3溶液处理,研究了独立相CuO对Cu/Fe2O3催化剂WGS反应性能的影响,结果发现,独立相CuO的存在,有利于H原子在各组分传递,从而促进催化剂的CuFe2O4的还原,改善Cu/Fe2O3催化剂的WGS反应性能.  相似文献   

16.
Si coordination structures have been proven to greatly influence the ammonia-selective catalytic reduction (NH3-SCR) catalytic properties and the hydrothermal stability of Cu-based silicoaluminophosphateform catalysts.However,the role of various Si coordination structures in the NH3-SCR reaction over CuSAPO-34 catalyst remains unknown.Herein,a batch of Cu-SAPO-34 samples with various Si contents was synthesized via a one-pot method to study the role of Si coordination struc...  相似文献   

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