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1.
采用共沉淀-后浸渍方法制备了表面助剂改性的Cu/ZnO/Al2O3 (CZA)甲醇合成催化剂, 在固定床反应器上以合成气为原料分别考察了三种助剂(Zr、Ba和Mn)对CZA催化剂性能的影响; 以Zr为助剂时反应温度的影响; 并进行了催化稳定性试验. 利用粉末X射线衍射(XRD)、低温氮气吸脱附(N2-sorption)、氧化亚氮(N2O)反应吸附技术、X射线光电子能谱(XPS)、氢气程序升温吸脱附(H2-TPD)、扫描电子显微镜(SEM)和高分辨透射电子显微镜(HR-TEM)技术对催化剂进行了表征.结果显示: 以Zr或Ba作为助剂能够明显提高CZA催化剂耐热前后的甲醇时空收率(STY); Mn的引入降低了CZA催化剂的耐热前活性; Zr的引入降低了CZA催化剂最高活性温度点, 增强了CZA催化剂的催化稳定性; 还原态CZA催化剂表面Cu0和ZnO都能吸附活化氢气, Cu0与ZnO的强相互作用有利于提高催化剂的性能, 耐热后催化剂性能的降低归因于Cu晶粒的长大. 在实验和表征结果基础上,提出了CZA催化剂上合成气制甲醇的“双向同步催化反应历程”.  相似文献   

2.
 研究了 Mo 和 Cu 助剂对 FeK/SiO2 催化剂的性质及费托 (F-T) 合成性能的影响. 采用 N2 物理吸附、H2 程序升温还原、X 射线衍射、穆斯堡尔谱和 X 射线光电子能谱技术对催化剂进行了表征. 结果表明, Mo 加入后与 Fe 产生了较强的相互作用, 抑制了催化剂的还原和碳化; Cu 助剂的加入促进了催化剂的还原和碳化; 当 Mo 和 Cu 共同加入后, 催化剂的还原和碳化行为与单独加入 Cu 助剂时相似. 催化剂 F-T 合成性能在固定床上于 280 oC, 1.5 MPa, 2 000 h-1, H2/CO = 2.0 的合成气中测试. 结果表明, Mo 的加入降低了催化剂活性, 但提高了重质烃 (C5+) 的选择性; Cu 的添加提高了催化剂的活性, 但对稳定 C5+选择性作用不明显. Mo 和 Cu 共同加入后, 催化剂既表现出较为稳定的 C5+选择性, 同时其活性也没有降低.  相似文献   

3.
采用等体积浸渍法制备了负载型Ni/SiO2催化剂,研究了Ce、Zr、La、Co和Fe助剂对催化剂微观结构及其催化二硝基甲苯(DNT,C6H3CH3(NO22)加氢制备甲苯二胺(TDA,C6H3CH3(NH22)性能的影响。通过XRD,BET,H2-TPD、H2-TPR和XPS技术对催化剂进行了表征。结果表明,助剂的引入促进了Ni物种在载体表面的分散,减小了Ni晶粒的尺寸,使得NiO晶粒更易还原。添加La、Fe和Zr助剂增加了有效的Ni活性中心数,有利于催化活性的提高,其中,添加La助剂制备的催化剂催化性能最优,DNT转化率和TDA选择性分别为98.1%和99.1%。但Co和Ce助剂的加入降低了化学氢吸附量,使得有效的Ni活性中心数降低,降低了催化剂的催化活性。  相似文献   

4.
采用溶胶凝胶法和浸渍法制备了Nd掺杂V2O5/TiO2催化剂.用XRD和Raman技术对其晶相结构和分散性进行了表征,并在固定床反应器上评价了其催化活性.然后考察了煅烧温度对催化剂脱硝性能的影响,结合XRD表征结果可知煅烧温度没有改变TiO2的晶型,只影响了其结晶度.同时氮气吸脱附表征及BET计算结果显示350℃煅烧时催化剂比表面积最大.研究了O2浓度以及氨氮比对催化剂脱硝性能的影响.同时考察了Nd掺杂催化剂的稳定性,发现Nd改性催化剂有较好的稳定性.并对Nd掺杂催化剂做了抗硫抗水考察,研究结果表明,Nd掺杂催化剂有较好的耐硫耐水性.  相似文献   

5.
以SiO2气凝胶为载体,采用等体积浸渍法制备了Ni/SiO2及不同金属助剂改性的Ni-M/SiO2(M=Fe、Co、Cu)催化剂,利用ICP、BET、XRD、H2-TPR、H2-TPD等手段对催化剂进行了表征,考察了不同第二金属对催化剂结构与1,4-丁炔二醇加氢性能的影响.结果表明,第二金属与Ni物种具有不同程度的双金属协同效应,其中Cu的加入不仅能够提高Ni活性物种的分散度,而且Ni-Cu双金属间的相互作用改善了NiO物种的还原性能及氢活化能力,有利于氢和1,4-丁炔二醇在活性位点的快速转化.在反应温度50℃,氢压1 MPa,反应时间3 h的加氢评价条件下,15Ni5Cu/SiO2催化剂不仅可以实现1,4-丁炔二醇的完全转化,而且能够有效降低难分离副产物2-羟基四氢呋喃的含量,具有最优的加氢活性和对1,4-丁烯二醇的选择性.  相似文献   

6.
采用等体积浸渍法制备了含微量Li 的15CoxLi/AC 催化剂,考察了微量Li 助剂对15Co/AC催化剂上CO加氢合成高碳醇性能的影响. 采用X射线衍射、程序升温还原和程序升温表面反应技术对15CoxLi/AC 催化剂进行了表征,结果表明,微量Li 的添加可以提高催化剂上CO加氢活性、生成C5+烃的选择性、合成醇的选择性以及高碳醇的分布. 这主要是由于微量Li 助剂与Co物种形成了弱相互作用,促进了催化剂Co物种的分散,形成较小Co晶粒,促进了Co2C的形成.  相似文献   

7.
三组Pt- Ru/C催化剂前驱体对其性能的影响   总被引:1,自引:0,他引:1  
分别以三组不同的Pt和Ru化合物为前驱体, 采用热还原法制备了Pt-Ru/C催化剂, 比较不同前驱体对催化剂性能的影响;通过XRD和TEM技术对催化剂的晶体结构及微观形貌进行了分析. 结果表明以H2PtCl6+RuCl3和自制(NH4)2PtCl6+Ru(OH)3为前驱体的催化剂Pt和Ru没有完全形成合金状态, 在Pt(111)和Pt(200)之间有Ru(101)存在;以Pt(NH3)2(NO2)2和自制含钌化合物为前驱体制备的催化剂未检测出Ru金属或其氧化物的衍射峰, Pt-Ru颗粒在载体上分散均匀, 粒径最小, 为3.7 nm. 利用玻碳电极测试了循环伏安、记时电流和阶跃电位曲线, 考核了上述催化剂对甲醇阳极催化氧化活性的影响;结果表明:以Pt(NH3)2(NO2)2和自制含钌化合物为前驱体制备的催化剂对甲醇的电催化氧化活性最高, 循环伏安曲线峰电流密度达11.5 mA•cm-2.  相似文献   

8.
采用分步浸渍法制备负载型Ru-Fe3O4/γ-Al2O3 催化剂, 并利用透射电子显微镜(TEM)、X 射线衍射(XRD)、N2吸附-脱附(BET)、傅里叶变换红外(FTIR)光谱与X射线光电子能谱(XPS)表征催化剂的纳米颗粒粒径分布、晶相组成、表面结构及吸附物种等性质. 将Ru-Fe3O4/γ-Al2O3催化剂用于3,4-二氯硝基苯选择性原位液相加氢反应, 考察了反应条件对催化活性的影响, 并讨论了不同制备条件下催化剂的稳定性能. 结果表明, 在473 K、液压3 MPa、原料质量分数2%, 乙醇/水体积比75:25 的反应条件下, 3,4-二氯硝基苯的转化率为100%, 3,4-二氯苯胺的选择性高达96.4%. Fe3O4含量对催化剂稳定性能有显著影响, 当Ru和Fe 的质量分数分别为2%和6%时, 催化剂可稳定200 h以上. 表面吸附CO与积碳是导致催化剂失活的主要原因, 以Fe3O4作为高效的助剂, 进行水汽转换(WGS)反应与费托合成(FTS)可移除CO, 而采用煅烧法去除表面积碳. 晶相变化与纳米颗粒的聚集可能导致催化剂部分失活, 其原因以及再生方法需进一步考察.  相似文献   

9.
研究了钠、钾助剂对FeMn 合成低碳烯烃催化剂结构及性能的影响. 低温N2吸附、X射线光电子能谱(XPS)、X射线衍射(XRD)、H2程序升温还原(H2-TPR)、CO/CO2程序升温脱附(CO/CO2-TPD)、Mössbauer 谱和CO+H2反应的研究结果表明,增加Mn助剂含量促进了活性相的分散和低碳烯烃的生成,而过多锰助剂在催化剂表面的富集则降低了费托合成反应的CO转化率;钾助剂和钠助剂的加入均抑制了催化剂的还原并且促进了CO2和CO的吸附. 比较还原后(H2/CO摩尔比为20)和反应后(H2/CO摩尔比为3.5)催化剂的体相结构可以发现,在FeMn、FeMnNa和FeMnK催化剂中,由于钾助剂的碱性和CO吸附能力较强,因此体相中FeCx的含量相对较高;而活性测试结果表明,FeMnNa催化剂拥有最好的CO转化率(96.2%)和低碳烯烃选择性(30.5%,摩尔分数).  相似文献   

10.
李庆远  季生福  胡金勇  蒋赛 《催化学报》2013,34(7):1462-1468
采用浸渍法制备了SiO2, γ-Al2O3, CaO和TiO2负载的Ni催化剂, 以及不同MgO含量的MgO-7.5%Ni/γ-Al2O3催化剂,利用X射线衍射和N2吸附-脱附技术表征了催化剂的结构,在固定床反应器上评价了它们在稻草水蒸气催化重整制合成气反应中的催化性能,考察了反应条件对催化剂性能的影响.结果表明, 以γ-Al2O3为载体时Ni催化剂活性最高,其中7.5%Ni/γ-Al2O3催化剂的H2收率可达1071.3ml/g,H2:CO的体积比为1.4:1;同时,MgO的添加进一步提高了该催化剂的性能,当MgO含量为1.0%时,H2收率可达1194.6ml/g,H2:CO体积比可达3.9:1.可见MgO的加入促进了Ni基催化剂上稻草水蒸气催化重整制合成气反应的进行,同时使得合成气中CO发生水-汽转换反应,从而大大提高了合成气中H2含量.  相似文献   

11.
Cu/Zn/Si catalysts with different polyethylene glycol (PEG) content were prepared by a complete liquid-phase method, and characterized by XRD, H2-TPR, N2-adsorption, and XPS. The influence of PEG content on the higher alcohols synthesis from syngas was investigated. The results showed that addition of PEG can influence the texture and surface properties of the catalysts, and therefore affect their activity and product distribution. With an increase in PEG content, BET surface area, Cu crystallite size and surface active ingredient content of the catalysts first increased and then decreased, the CO conversion had similar variation tendency. However, the pore volume and pore diameter of the catalyst increased, and the binding energy of the active component and the content of Cu2O decreased, which resulted in higher catalyst selectivity towards higher alcohols. The highest C2+OH selectivity in total alcohols was 60.6 wt %.  相似文献   

12.
A series of nanosized Co/Zn/Mn/K composite catalysts for Fischer-Tropsch synthesis (FTS) were prepared by supercritical fluid drying (SCFD) method and common drying (CD) method. The nanosized cobalt-based catalysts were characterized by XRD, TEM and BET techniques. Their catalytic performances were tested in a slurry-bed reactor under FTS reaction conditions. The drying and crystallization were carried out simultaneously during SCFD, therefore, the catalysts prepared by SCFD method have ideal structure and show the FTS performance superior to the others prepared by CD method. The FTS activity and selectivity were improved via adding Zn, Mn and K promoters, and less CH4 and CO2 as well as higher yield of C5+ products were achieved. The optimal performance of a 92% CO conversion and a 65% C5+ product yield was obtained over a catalyst with the component of Co/Zn/Mn/K = 100/50/10/7. Furthermore, the catalytic performance was studied under the conditions of liquid-phase and supercritical phase slurry-bed, and C5+ product yield were 57.4% and 65.4%, respectively. In summary, better catalytic performance was obtained using the nanosized catalyst prepared by SCFD method under supercritical reaction conditions, resulting in higher conversion of CO, less CO2 byproduct, and higher yield of C5+ products.  相似文献   

13.
碳助剂对完全液相法制备的 Cu-Zn-Al 催化剂性能的影响   总被引:1,自引:0,他引:1  
黄伟  李文辉  孙景晓  阴丽华 《催化学报》2010,31(11):1393-1398
 采用完全液相法制备了 Cu-Zn-Al 催化剂, 研究了碳纳米管和碳微球的加入对该催化剂 CO 加氢合成低碳醇反应性能的影响, 并用 X 射线粉末衍射、氮气吸附、氢气程序升温还原和氨气程序升温脱附-质谱等方法对催化剂进行了表征. 结果表明, 用完全液相法制备的 Cu-Zn-Al 甲醇合成催化剂具有一定的合成低碳醇和低碳烃的能力, 这种能力归结于较大 Cu0 晶粒的产生. 一定量碳微球的加入可大大减小 Cu0 晶粒度, 从而大幅度提高甲醇选择性.  相似文献   

14.
采用完全液相法在不同热处理时间下制备了CuZnAl催化剂,利用X射线光电子能谱(XPS)、X射线衍射(XRD)、H2程序升温还原(H2-TPR)、NH3吸附-脱附(NH3-TPD-MS)和N2物理吸附-脱附等方法对其结构进行了表征分析,并在浆态床反应器上对其催化合成气制C2+OH的性能进行了研究。研究发现,延长热处理时间增强了催化剂中Cu和Al物种之间的相互作用力,改变了其中Cu+的量,从而影响Cu+-Cu0活性位的协同作用。同时,热处理时间的延长减少了催化剂的表面酸量,增大了孔容和孔径;催化剂表面较少的弱酸位及较大孔容和孔径均有利于C2+OH的生成。热处理时间为7 h时所制备的CuZnAl催化剂表现出了优良的低碳醇合成催化活性,CO转化率和总醇中C2+OH的质量分数分别达到了38.1%和65.9%。  相似文献   

15.
The vanadium phosphorous oxide (VPO) catalysts, supported on mesoporous hexagonal molecular sieves (HMS) with different vanadium loadings, were prepared by precipitation method on organic phase. Techniques such as XRD, BET and SEM, were used for characterization of the catalyst. The bulk VPO catalyst contains vanadyl pyrophosphate phase ((VO)2P2O7), and a small amount of VOPO4. The high surface area, large pore volume and pore size of HMS in VPO/HMS samples, provide an excellent dispersion of same phase of VPO compound on the support surface. Oxidation of various alcohols was studied in the liquid phase over VPO/HMS catalyst, using tert‐butylhydroperoxide (TBHP) as an oxidant. The activity of VPO/HMS samples were considerably increased with respect to bulk VPO catalyst. At 90 °C, the obtained activities were 0.567 and 6.545 gpro.g?1VPOh?1 over the bulk VPO and 20 wt% VPO/HMS catalysts, respectively. The effects of substrates, reaction time, reaction temperature, solvents, catalyst recycling and leaching of VPO in liquid phase reaction were also investigated. The following order has been observed for the percentage of conversions of alcohols: Benzylic alcohol > Secondary alcohol ~ Primary alcohol. The kinetic of benzyl alcohol oxidation using excess TBHP over VPO/HMS catalyst was investigated at temperatures of 27, 60 and 90 °C, and followed a pseudo‐first order with respect to benzyl alcohol.  相似文献   

16.
The promotional effect of Fe-Mo species introduced into HZSM-5 (Zeolyst Int., SiO2/Al2O3 ≈ 30) zeolite catalyst by the wetness impregnation method for the 1-hexene aromatization was investigated. The structure and catalytic performance for the aromatization of 1-hexene over xFeyMo-ZSM-5 catalysts in comparison with unmodified HZSM-5 catalysts were studied. The xFeyMo-ZSM-5 catalysts contain fixed loading (5 wt%) and variable Fe/Mo ratio. The catalysts were characterized by BET, ICP-AES, HRSEM-EDS, HRTEM, XRD, FTIR, H2-TPR, NH3-TPD, and pyridine DRIFT spectroscopy. The characterization data confirmed the existence of Fe and Mo species in the zeolite matrix. With Fe and Mo species implementation to HZSM-5 zeolite, the amount of the acid sites decreased, but the selectivities to C9+ aromatics increased. The catalyst evaluation was performed at 350 °C for 6 h on-stream at atmospheric pressure using a fixed-bed quartz tube reactor. The selectivity to products of different carbon number was affected by the Fe/Mo ratio within the zeolite. It was found the product distribution of grouped fractions of C1–C17+ from the liquid product. The results indicate that the optimum ratio of Fe/Mo is 1–1.5. The highest selectivity for gasoline and distillate ranges was obtained for the 2.5wt%Fe2.5wt%Mo- and 3wt%Fe2wt%Mo-ZSM-5 samples, which was higher than that for parent HZSM-5 catalyst.  相似文献   

17.
The effect of the impregnation and co-precipitation-kneading methods on the catalytic performance of the Ni/H-ZSM-5 catalyst was evaluated via catalytic reductive deoxygenation of cyclohexanone in a fixed bed. The catalysts were characterized by X-ray diffraction, nitrogen adsorption, and NH3-temperature programmed desorption. A sharply acidic and textural change was observed on the catalysts prepared by the different methods, while the metal active phase structure was almost the same. The results of the cyclohexanone reductive deoxygenation reaction indicated that the catalyst based on the co-precipitation-kneading method afforded a higher yield of cyclohexane, and thus proved that the co-precipitation-kneading method is suitable for the preparation of a bi-functional catalyst.  相似文献   

18.
Polymerization at temperatures lower than the temperature of catalyst formation induces no changes in the solid phase of the catalyst formed by Al(C2H5)3 + TiCl4. In polymerizations with catalysts of this class, maximum activity is observed when the titanium component of the catalyst is trivalent. Any different behavior indicates the presence of aluminum alkyl chlorides in the liquid phase of the catalyst.  相似文献   

19.
Cobalt catalysts supported on a series of mesoporous SBA-15 materials isomorphically substituted with zirconium (Zr/Si atomic ratio = 1/20) with different pore sizes (5.7 nm, 7.8 nm, 11.6 nm, 17.6 nm) have been synthesized. The catalysts were characterized by transmission electron microscopy, 29Si solid state magic angle spinning (MAS) NMR, N2 adsorption-desorption measurements, X-ray powder diffraction, X-ray photoelectron spectroscopy, H2-temperature programmed reduction, H2-temperature programmed desorption and O2 titrations. The results indicated that larger pore size led to weaker interactions between cobalt and the supports which lowered the temperature of both reduction steps (Co3O4→CoO and CoO→Co0). The catalytic performances of the catalysts in Fischer-Tropsch synthesis (FTS) were tested in a fixed bed reactor. It was found that the FTS catalytic activity and product selectivity depended strongly on the pore size of the catalysts. The catalyst with a pore size of 7.8 nm showed the best FTS activity, and the catalyst with a pore size of 17.6 nm showed the highest selectivity to C12–C20 and C20+ hydrocarbons.  相似文献   

20.
Fe modified and un-modified K/Mo2C were prepared and investigated as catalysts for CO hydrogenation reaction. Compared with K/Mo2C catalyst, the addition of Fe increased the production of alcohols, especially the C2+OH. Meanwhile, considerable amounts of C5+ hydrocar- bons and C2= -C4= were formed, whereas methane selectivity greatly decreased. Also, the activity and selectivity of the catalyst were readily affected by the reaction pressure and temperature employed. According to the XPS results, Mo4+ might be responsible for the production of alcohols, whereas the low valence state of Mo species such as Mo0 and/or Mo2+ might be account for the high activity and selectivity toward hydrocarbons.  相似文献   

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