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1.
采用柠檬酸法制备了Ce-Zr-O2固溶体, 并负载了过渡金属和贵金属Pt, 其中, 以Cu作为活性组分, 在CO氧化反应中表现出最高的活性, CO完全转化的温度约为120 ℃, 明显高于负载1%Pt(质量分数)催化剂的活性. 掺杂少量Zr到CeO2(Ce0.8Zr0.2O2)中对Cu基催化剂有非常好的促进作用. 分别采用等体积浸渍法(IW)、 沉淀沉积法(DP)、 水热法(HT)以及柠檬酸法(CA)制备了Cu负载质量分数为20%的Cu/Ce0.8Zr0.2O2催化剂. 结果表明, 由沉淀沉积法制备的Cu/Ce0.8Zr0.2O2催化剂的活性最高, 在100 ℃时, CO可完全转化. TEM结果表明, CuO物种很好地分散在Ce0.8Zr0.2O2上. 吸附实验数据表明, Cu基催化剂上CO与O2之间较弱的竞争吸附是其活性高于Pt催化剂的主要原因. Cu基催化剂上的氧空位对促进O2的吸附具有重要作用, 也是影响CO低温氧化的重要因素之一.  相似文献   

2.
采用混合搅拌法制备了Ce、Zr掺杂改性的菱铁矿SCR脱硝催化剂,研究了Ce、Zr共同掺杂对催化剂催化脱硝性能及抗硫性的影响。结果表明,3%Ce+3%Zr掺杂菱铁矿催化剂(Ce_(0.03)/Zr_(0.03)-菱铁矿)具有优异的催化脱硝活性,在180-330℃,催化脱硝效率均在92%以上,该催化剂同时具有良好的抗SO_2性能,在210℃下通入体积分数为0.01%的SO_2,8 h后仍有95%以上的催化脱硝效率。通过XRF、BET、XRD、NH_3-TPD、TG等实验手段对催化剂成分、微观孔结构、晶相等进行表征。表征结果显示,Ce、Zr的掺杂能明显提高催化剂的比表面积以及表面结晶分散度,增强催化剂的表面酸性,促进硫酸铵盐在催化剂表面的分解。因此,催化剂具有优异的中低温催化脱硝活性及抗硫性。  相似文献   

3.
采用溶液燃烧法制备出PdO/PdO/Ce1-xPdxO2-δ (PdO/CP)和PdO/Ce1-x-yPdxZryO2-δ (PdO/CPZ)催化剂,通过硝酸处理去除催化剂表面的PdO物种得到对应的PdO/Ce1-xPdxO2-δ (CP)和Ce1-x-yPdxZryO2-δ (CPZ)催化剂。考究四种催化剂(PdO/CP、PdO/CPZ、CP、CPZ)对CO和CH4的氧化活性,并计算得出表面PdO和Pdn+物种的转化频率(TOF)。结果表明Zr的添加对PdO催化剂上CO和CH4的催化氧化活性具有不同的影响。Zr的添加对PdO/CPZ和CPZ催化剂的CO催化活性具有明显的促进作用,前者归因于PdO/CPZ催化剂表面生成了更小颗粒的PdO粒子,后者归因于CPZ催化剂中含有更多的氧空位。对于CH4的催化氧化,Pdn+物种起到关键的作用。由于Zr的掺杂导致CeO2的晶格中Pd物种的含量减少,致使PdO/CPZ催化剂和CPZ催化剂对CH4氧化活性的降低。  相似文献   

4.
A series of MenAg0.3Mo0.5P0.3Oy (Me=Cu, Zn, Mn, W, Ce, Pr, Nd) and Ag0.3Mo0.5P0.3Ox catalysts were prepared. The addition of Ce to Ag0.3Mo0.5P0.3Ox catalysts improved the catalytic performance in selective oxidation of propane to acrolein, and Ce0.1Ag0.3Mo0.5P0.3Ox catalysts showed the highest acrolein selectivity (28.7%) and yield (4.4%). The physicochemical properties of Ag0.3Mo0.5P0.3Ox and CenAg0.3Mo0.5P0.3Ox (n=0.1–0.5) catalysts have been comparatively characterized by BET, XRD, H2-TPR, XPS, EPR and C3H8(C3H6)-TPD. Significant differences in physicochemical properties between Ag0.3Mo0.5P0.3Ox and Ce doped Ag0.3Mo0.5P0.3Ox catalysts have been observed, which is due to the formation of the redox cycle (Ce3++Mo6+Ce4++Mo5+) in the CenAg0.3Mo0.5P0.3Oy catalyst. Such effect modified the reducibility, the concentration of Mo5+, the activation of propane and the transformation of possible intermediate propene to acroelin, which in return greatly influenced the catalytic performance of Ce doped Ag0.3Mo0.5P0.3Ox catalysts in selective oxidation of propane to acroelin. The proper addition of Ce to Ag0.3Mo0.5P0.3Ox catalyst improved the acrolein selectivity and yield.  相似文献   

5.
采用溶胶凝胶法制备了系列不同Ce/Zr物质的量比的Ru/CexZr1-xO2催化剂,通过X射线衍射(XRD)、氮气吸附-脱附、拉曼(Raman)光谱、储氧能力(oxygen storage capacity,OSC)、热重(TG)以及吡啶红外(Py-FTIR)等手段对其进行了表征,考察了该催化剂在湿式氧化苯酚反应中的性能。结果表明,ZrO2可与CeO2形成固溶体;随着ZrO2掺杂量的增加,CexZr1-xO2固溶体的OSC值增大。相比于CeO2,掺杂ZrO2后催化剂表面的L酸量明显增多。催化剂湿式氧化(catalytic wet air oxidation,CWAO)性能与OSC和表面酸性均有密切的关系:催化剂表面的L酸有利于苯酚氧化生成CO2,而OSC过高会导致催化剂表面积炭,使催化剂失活。当ZrO2掺杂量为25%时,在160℃、2 MPa纯氧条件下,催化氧化苯酚5 h后,苯酚转化率和总有机碳(total organic carbon,TOC)去除率分别为100%和99%,说明该催化剂具有优异的苯酚氧化性能。  相似文献   

6.
采用一锅蒸发诱导自组装法(EISA)制备了一系列不同铈锆物质的量比的铈锆固溶体催化剂,用TGA研究了其热化学循环分解CO_2制CO的催化性能,并采用XRD、Raman光谱、H2-TPR、XPS、SEM和N_2吸附-脱附等手段对催化剂的物相结构、还原性能和表面化学性质进行了表征分析,用热重分析(TGA)研究了铈锆固溶体对热化学循环分解CO_2制CO的催化性能。结果表明,随着Ce/Zr物质的量比增加,铈锆固溶体催化剂的CO_2高温分解活性先增大后减小。Ce/Zr物质的量比为1的Ce_(0.5)Zr_(0.5)O_2催化剂由于具有较多的晶格缺陷和氧空穴,氧迁移能力强,催化活性高,而Ce/Zr物质的量比为3的Ce_(0.75)Zr_(0.25)O_2催化剂具有相对稳定的氧空穴数,循环稳定性好。循环反应后,所有的催化剂均出现了一定程度的烧结,且富锆固溶体发生了相分离,这可能会影响催化剂的性能。  相似文献   

7.
以铈锆固溶体(Ce0.5Zr0.5O2)修饰的高比表面积SiC为载体,采用两步浸渍法制备了Ni、Fe和Co基催化剂,研究了其在煤层气催化燃烧脱氧中的催化活性和稳定性.利用X射线衍射(XRD)、X射线光电子能谱(XPS)、电感耦合等离子体质谱(ICP-MS)、高分辨透射电子显微镜(HRTEM)、比表面积(BET)、热重分析(TGA)和H2程序升温还原(H2-TPR)对催化剂进行了表征.分析结果表明,Ni、Fe和Co部分进入Ce0.5Zr0.5O2固溶体晶格内部,导致催化剂体相形成更多的缺陷;同时Ce0.5Zr0.5O2固溶体有助于加速金属氧化物和金属之间氧化还原过程的进行,促进了氧吸附、传输和对甲烷的活化.另外,SiC和Ce0.5Zr0.5O2固熔体良好的抗积碳性能,有效避免了催化剂在富甲烷反应气氛中因积碳而失活,从而使三种催化剂均具有优良的催化燃烧脱氧活性和稳定性.其中,Co/Ce0.5Zr0.5O2/SiC活性最高,可在320℃活化催化甲烷,并在410℃实现完全脱氧.  相似文献   

8.
Structural peculiarities of Ce–Zr–La–O and Ce–Zr–La–O/Ru samples in mean of catalytic properties are compared. The samples (Ce:Zr = 1:1, La = 10÷30 mol.%, Ru = 1.5 wt.%) were obtained by sol–gel method (X-samples) and co-precipitation (P-samples). It is shown that Ce0.45Zr0.45La0.1O2−δ/Ru X-samples are characterized by high thermal stability and the highest catalytic activity in partial methane oxidation reaction. According to XRD, BET, FTIR, EPR and XPS data it is concluded that the difference in the samples catalytic activity is caused by various disposition of Ru-containing phase on the support surface. The distinction in the dimension of Ru-containing particles (3D or 2D) is conditioned by structural peculiarities of Ce0.45Zr0.45La0.1O2−δ and Ce0.35Zr0.35La0.3O2−δ P- and X-samples.  相似文献   

9.
Volatile organic compounds (VOCs) are both harmful to human health and the environment; however, catalytic combustion offers a promising method for VOC purification because of its high efficiency without secondary pollution. Although manganese-based catalysts have been well studied for VOC catalytic oxidation, their catalytic activity at low temperature must be improved. Alkali metals as promoters have the potential to modulate the electronic and structural properties of the catalysts, improving their catalytic activity. Herein, a Ce0.65Zr0.35O2 support was prepared by co-precipitation and MnOx/Ce0.65Zr0.35O2 catalysts were obtained through the incipient-wetness impregnation method. The catalytic properties of K-modified MnOx/Ce0.65Zr0.35O2 for toluene oxidation with different molar ratios of K/Mn were investigated. In addition, the catalysts were characterized by XRD, UV/visible Raman, Hydrogen temperature program reduction (H2-TPR), Oxygen temperature programmed desorption (O2-TPD), X-ray photoelectron spectroscopy (XPS) and in situ diffuse reflectance FTIR spectroscopy (DRIFTS) experiments. The results showed that alkali metal doping with K significantly improved the catalytic activity. In particular, when the molar ratio of K/Mn was 0.2, the monolith catalyst Mn/Ce0.65Zr0.35O2-K-0.2 exhibited the best performance with the lowest complete conversion temperature T90 of 242 ℃ at a GHSV of 12000 h−1. The XRD results suggested that MnOx was uniformly distributed on the surface of the catalyst and that Mn4+ partially reduced to Mn3+ on the addition of K. The Raman spectrum demonstrated that with increasing K content, both the β- and α-MnO2 phases coexisted on the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst, increasing the number of surface defect sites. The H2-TPR experiment results confirmed that Mn/Ce0.65Zr0.35O2-K-0.2 exhibited the lowest reduction temperature and good reducibility. From the O2-TPD experiments, it was clear that Mn/Ce0.65Zr0.35O2-K-0.2 contained the most surface adsorbed oxygen species and excellent lattice oxygen mobility, which benefitted the toluene oxidation activity. In addition, the XPS results suggested that the content of surface adsorbed oxygen species of the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst was the highest among all the tested samples. In addition, toluene-TPSR in N2 as measured by in situ DRIFTs analysis demonstrated that available lattice oxygen was present in the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst. Therefore, the Mn/Ce0.65Zr0.35O2-K-0.2 catalyst exhibited the best redox properties and oxygen mobility of the prepared samples and showed excellent activity toward toluene oxidation. Therefore, it was concluded that the addition of an appropriate amount of K improved the redox performance of the catalyst and increased the number of surface defect sites and mobility of the lattice oxygen of the catalyst as well as the concentration of the surface active oxygen species, thereby significantly improving catalytic ability.  相似文献   

10.
采用自蔓延高温燃烧合成法制备了CeWTiO_x系列催化剂并考察了其氨选择性催化还原NO_x(NH_3-SCR)性能。利用X射线衍射、N_2吸附-脱附、H_2程序升温还原、X射线光电子能谱、NH_3程序升温脱附表征和分析了催化剂晶相、结构、氧化还原能力和酸性强度与其活性之间的关系。结果表明,Ce_(40)W_(10)TiO_x催化剂在150-430℃NO转化率可达80%以上,含硫条件下200℃NO转化率可保持在97%左右。结果表明,该催化剂的低温活性和抗硫性能主要与W的掺杂有关。钨的存在减弱了Ce-O键的强度,降低了CeO2的结晶度和减小了晶粒粒径,增加了催化剂表面活性氧含量和酸量,提高了其性能。  相似文献   

11.
采用初始浸渍法制备了不同Mg/Al物质的量比的Ce-La/MgAl2O4-x催化剂,并通过低温N2-吸附脱附、XRD、H2-TPR和CO-TPR等手段对其进行了表征。结果表明,在Mg/Al物质的量比为0.5时,催化剂催化CO还原NO的性能最好。这主要是因为适量Mg的添加促进了CeO2的分散和Ce-O-La固溶体的形成,从而使得表面Ce3+和氧空穴增加。两者的协同作用使得Ce-La/MgAl2O4-0.5表现出最佳的催化性能。另外,适量Mg的引入可以抑制Ce(SO42和Ce2(SO43的形成,从而提高了Ce-La/MgAl2O4-0.5催化剂抗硫中毒能力。  相似文献   

12.
通过共沉淀法制备了一系列Mn掺杂量不同的Ce1-xMnxO2催化剂, 并将其用于催化CO2和甲醇直接合成碳酸二甲酯(DMC). 通过X射线衍射(XRD)、 氮气吸附-脱附、 透射电子显微镜(TEM)、 X射线光电子能谱(XPS)和程序升温脱附(TPD)等手段研究了Ce1-xMnxO2表面性质对催化CO2和甲醇直接合成DMC反应活性的影响. 结果表明, Mn离子进入CeO2晶格中形成固溶体, 随着Mn掺杂量增加, 催化剂表面弱酸碱位数量逐渐降低, 中强酸碱和强酸碱位数量增加, 催化剂表面氧空位含量呈先增加后减少的变化趋势, 当Mn掺杂量较少时, 催化剂表面Mn2+比例较高, 有利于Ce4++Mn2+→Ce3++Mn3+反应的进行, 促进催化剂表面氧空位生成; 进一步提高Mn掺杂量时, 催化剂表面Mn4+比例提高, 有利于Ce3++Mn4+→Ce4++Mn3+反应的进行, 导致催化剂表面氧空位含量减少. 研究发现Ce1-xMnxO2催化剂活性与表面氧空位含量线性相关.  相似文献   

13.
采用氧化还原共沉淀法制备了一系列不同Mn/Ce比的Mn-Ce催化剂,用N_2吸附、XRD、XRF、XPS等手段进行了表征,对其低浓度甲烷催化燃烧活性进行了研究。结果表明,Mn/Ce比对Mn-Ce催化剂的活性有较大的影响;当Mn/Ce比从3∶7增加到9∶1时,其催化活性逐渐增加,甲烷转化率为50%的温度(t_(50))从501℃降低到446℃;而进一步增加Mn含量则会导致其催化活性降低。表征结果显示,Mn-Ce催化剂活性与其比表面积、表面Mn~(4+)浓度、Ce~(3+)含量和晶格氧浓度等密切相关;物相KMn_8O_(16)有利于Mn-Ce催化剂活性的提升。  相似文献   

14.
研究了用臭氧氧化法及草酸盐分解法制备Pr(Ⅳ)复合氧化物Ce0.8Pr0.2O2的过程,通过测定各种Ce:Pr摩尔比下所形成产物中Pr(Ⅳ)的含量,确定出当Ce:Pr≥4:1时,复合氧化物中的Pr(Ⅳ)全部为正四价态.X射线粉末衍射分析结果表明,化学计量式为Ce0.8Pr0.2O2的复合氧化物为面心立方晶格,其晶胞参数明显不同于CeO2和PrO2.据此推断了Ce0.8Pr0.2O2的空间结构,并讨论了Pr(Ⅳ)能稳定存在的原因.  相似文献   

15.
采用乙二醇还原法,利用不同金属前驱体(CuSO_4/CuCl_2、K_2PtCl_4/H_2PtCl_6)制备了铂铜总质量分数为20%的四种PtCu/C催化剂,并通过透射电子显微镜(TEM)、X射线衍射(XRD)、循环伏安法(CV)和线性扫描伏安法(LSV)对催化剂进行物相结构表征及电化学性能测试。结果表明,以CuSO_4和K_2PtCl_4为前驱体组合制备出的PtCu/C催化剂性能最优。所制备的PtCu/C催化剂金属颗粒平均粒径为2.3nm,粒径范围窄,在碳载体上负载均匀;电化学活性面积(ECSA)达到73.0m2/gPt,质量比活性(MA)为126.65mA/mgPt,均优于商业Pt/C催化剂。  相似文献   

16.
采用沉淀法合成了CeO_2载体,再经浸渍法负载活性组分得到CuO/CeO_2催化材料,探究了铈源(Ce(NO_3)_3·6H_2O、Ce Cl_3·6H_2O、Ce(NH_4)_2(NO_3)_6、Ce(SO_4)_2·4H_2O)对CuO/CeO_2催化性能的影响。通过采用XRD、SEM、N_2O滴定、BET和H_2-TPR等表征手段对催化材料的结构和性质研究发现,四种铈源合成的CuO/CeO_2催化材料在Cu比表面积、还原性能以及活性组分和载体间的相互作用方面存在着明显差别。其中,由Ce(NO_3)_3·6H_2O合成的CuO/CeO_2催化材料的Cu比表面积较大,CuO还原温度较低,CeO_2载体与CuO之间相互作用较强,在甲醇水蒸气重整反应过程中,表现出较佳的催化活性,在反应温度为553 K,水醇比n(H_2O)/n(MeOH)为1.2,甲醇水蒸气气体空速(GHSV)为1760 h~(-1)时,甲醇的转化率为100%,重整气中CO摩尔含量为0.84%。  相似文献   

17.
通过溶胶-凝胶法将TiO2溶胶负载在堇青石载体上, 再浸渍Mn和Ce活性组分, 得到整体式催化剂, 并用于NH3选择性催化还原(SCR)NOx. 结果表明, 添加Ce以后, 催化剂的低温脱硝活性得到明显提高, 在空速6000 h-1时, 120 ℃下NO转化率由71.1%提高到97.8%, 并且在120~240 ℃范围内, NO的转化率均保持在95%以上. Ce改性后催化剂具有较大的比表面积和孔体积; 催化剂表面含有更高含量的Mn4+和较多的表面化学吸附氧, 增加了NH3的吸附能力, 并进一步促进了NO氧化活性, 使SCR活性显著提高.  相似文献   

18.
将钛酸丁酯作为Ti源,硝酸铈作为Ce源,硝酸钴作为Co源,采用溶胶-凝胶水热法制备出Ce-TiO_2和Ce-Co-TiO_2催化剂。对所制备的改性TiO_2催化剂进行BET、XRD、SEM、UV-vis、XPS、NH_3-TPD等表征分析测试,并以NO为研究对象对不同改性TiO_2催化剂进行了可见光催化实验,探究改性TiO_2催化剂脱除NO的效率。结果表明,以硝酸铈为Ce源(掺杂物质的量比1%),硝酸钴为Co源(掺杂物质的量比5%),在水热反应温度为160℃的条件下反应24 h后在200℃下煅烧得到的Ce(1%)-Co(5%)-TiO_2催化剂性能最好。其对浓度为762μg/m~3的NO可见光催化效率高达92.69%,在浓度提高至1148μg/m~3时在室温下的可见光催化效率仍可达85.94%,与纯TiO_2相比效率提高了近50%。而且Ce (1%)-Co (5%)-TiO_2催化剂的抗硫性能与连续使用次数都比商用催化剂(掺杂有V_2O_5的商用TiO_2)好。  相似文献   

19.
从Pd纳米粒子出发制备了具有核壳结构的新型纳米Pd@SiO2/Ce0.4Zr0.6O2三效催化剂及作为参比的Pd/Ce0.4Zr0.6O2催化剂, 采用X射线衍射、 透射电子显微镜、 氢气程序升温还原和氮气低温吸附-脱附等技术对催化剂的物化性质进行了表征, 研究了Pd@SiO2/Ce0.4Zr0.6O2和Pd/Ce0.4Zr0.6O2催化剂的三效反应催化活性和热稳定性. 结果表明, SiO2壳层可以抑制Pd粒子的团聚, 同时还能抑制Pd物种的再分散, 减少Pd的流失. 具有核壳结构的纳米Pd@SiO2/Ce0.4Zr0.6O2催化剂具有更好的三效催化活性和更高的热稳定性.  相似文献   

20.
ZnO-CeO2/SBA-15 catalysts were prepared by two kinds of solid-state grinding method and used for the production of 1,3-butadiene(1,3-BD) from ethanol.A mixture of SBA-15(with or without organic template) and metal precursors were ground in solid-state.The obtained catalysts were characterized by TG,N2 adsorption-desorption,TEM,XRD,Py-FTIR and NH_3-TPD techniques.Superior dispersion of metal oxides and more exposed acid sites were achieved on the catalyst lOZn_1Ce_5-AS with the presence of organic template in SBA-15 during the solid-state grinding process.The catalytic performance was evaluated in a fixed-bed reactor and a 1,3-butadiene selectivity of as high as 45% is achieved.This is attributed to the coupling effect of Zn and Ce species in the mesopores of SBA-15,in which Zn promotes ethanol dehydrogenation and Ce enhances aldol-condensation,respectively.Additionally,solvent-free method inspires new catalyst synthesis strategy for the production of 1,3-butadiene from ethanol.  相似文献   

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