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1.
以金属有机骨架材料UIO-66热解制备了具有片层簇状结构ZrO2.UIO-66热解条件影响CoMo S/ZrO2的晶相、表面原子含量、形貌以及比表面积(可达117.7 m2/g).随着热解温度升高,ZrO2晶相呈现由四方相向单斜相的转化,表面Mo含量呈现先减小后增加的趋势,片层结构逐渐变短,而簇状结构则逐渐由蓬松变得致密,比表面积逐渐减小.热解温度为600℃时出现催化剂片层结构的坍塌聚集以及晶相的破坏.当UIO-66热解温度为500℃、热解时间为4 h时,CoMoS/ZrO2明显出现单斜相,表面Mo原子含量较高,片层结构较均一,此催化剂在4-甲基酚加氢脱氧中显示出较高的活性和对甲苯的选择性,4-甲基酚转化率达100%,甲苯的选择性达82%.  相似文献   

2.
制备一系列包含或不包含铜、钼组分的Ni/γ-Al2O3催化剂,并对其进行表征和性能测试。考察了铜、钼负载量,浸渍顺序(包括连续浸渍和共浸渍),反应条件对脂肪酸甲酯加氢脱氧反应性能的影响。根据TG数据,使用过的20Ni-6Cu/γ-Al2O3催化剂其热失重小于20Ni/γ-Al2O3催化剂,这表明,铜的引入能够有效抑制反应过程中催化剂表面的积炭行为。对于20Ni-6Cu/γ-Al2O3和20Ni-6Cu-nMo/γ-Al2O3(n=2、5、8和12)催化剂,NH3-TPD分析结果显示,钼物相的引入对载体γ-Al2O3的酸性位有着显著影响,当钼负载量达到5%时,可以观察到一个新的酸位对应于中强酸位。铜和钼修饰过的催化剂其催化性能要高于Ni/γ-Al2O3催化剂。从XPS的分析可以看出,催化剂中的铜主要以正二价形式存在,钼主要以正四价和正六价形式存在,而且不同的浸渍顺序会影响催化剂表面活性组分的实际含量。此外,脂肪酸甲酯的转化率和烷烃产品的收率也和所制备出来的催化剂的浸渍顺序有关。在所有的催化剂中,使用连续浸渍(先浸渍镍铜组分、浸渍钼组分)所制备的三金属20Ni-6Cu-5Mo/γ-Al2O3催化剂展现了优异的催化性能。在适宜的反应条件下(350 ℃,2.5 MPa,WSHV=2.0 h-1,H2/oil ratio=1250 mL/mL),脂肪酸甲酯的转化率和烷烃产品的收率分别达到98.4%和94.2%。  相似文献   

3.
2-甲基四氢呋喃(2-MTHF)是极具市场潜力的生物燃料、绿色溶剂和化学中间体.采用浸渍法制备Ni/γ-Al2O3催化剂,在固定床反应器评价其2-甲基呋喃(2-MF)气相加氢合成2-甲基四氢呋喃(2-MTHF)反应性能.通过XRD、N2等温吸附-脱附、H2-TPR、NH3-TPD、TEM、H2吸附和XPS对催化剂结构和表面性质进行表征,研究Ni负载量、焙烧温度和反应条件对催化剂性能的影响规律.结果表明:Ni/γ-Al2O3催化剂的Ni金属面积、晶粒尺寸、反应温度和压力都会影响2-MF的转化率;孔结构、酸量和反应温度是影响2-MTHF选择性的主要原因,平均孔径大、酸量大和适宜的反应温度有利于提高2-MTHF选择性. 400℃焙烧的负载量为15%的Ni/γ-Al2O3催化剂, Ni金属面积大、晶粒尺寸小、总酸量多,催化剂表面的金属活性中心与酸性中心协同作用促进了2-MF呋喃环上C=C加氢生成2-MTHF,性能较优.在2 MPa、100℃、WHSV=2.7 h-1、H2/2-MF=6.4的条件下,该催化剂上2-MF转化率为99.8%, 2-MTHF选择性为98.0%,催化剂可以稳定运行40 h.  相似文献   

4.
CoMo/ZrO2-Al2O3催化剂的制备及其加氢脱氧性能   总被引:1,自引:0,他引:1  
以ZrOCl2·6H2O和Al2(SO4)3为原料,采用超声波共沉淀法制得一系列不同ZrO2质量分数的ZrO2- Al2O3复合氧化物载体;并以该复合氧化物为载体,采用等体积浸渍法制得Co和Mo质量分数分别为6.0%和16.0%的CoMo/ZrO2-Al2O3催化剂。BET、XRD、H2-TPR和NH3-TPD等表征结果表明,ZrO2-Al2O3复合氧化物载体具有较高的比表面积与较大的孔容、孔径,随着复合载体中ZrO2质量分数的增加,复合载体比表面积逐渐减小。ZrO2-Al2O3复合载体能高度分散活性组分,钴钼负载量接近其在载体上的单层分散阈值。相比于CoMo/Al2O3,CoMo/ZrO2-Al2O3催化剂具有较高的还原性能和较多的表面酸性活性中心,由此导致其在苯酚加氢脱氧(HDO)反应中,具有较高的加氢脱氧活性和苯选择性。
  相似文献   

5.
采用浸渍法制备了不同NiO含量的Ni/Al2O3催化剂,并进行了2-甲基呋喃加氢制2-甲基四氢呋喃性能的考察。结果表明,在制备的NiO负载量为10%、20%、25%、30%和40%的Ni/Al2O3催化剂中,随着NiO负载量增加,加氢反应的选择性与2-甲基呋喃的转化率均呈现出先增加后减小的趋势。其原因是由于适当增加NiO负载量有利于催化剂表面活性中心的形成,有利于加氢反应的进行;但是过度负载的NiO容易堵塞Al2O3载体中的介孔通道,降低反应的转化率与选择性。在釜式反应器中进行反应,对加氢反应条件进行了优化,发现在反应压力为3 MPa、反应温度150℃、机械搅拌速率为1000 r/min时,Ni/Al2O3催化2-甲基呋喃加氢制2-甲基四氢呋喃具有较高的选择性。当NiO负载量为25%时,2-甲基四氢呋喃的选择性最高为97.1%,2-甲基呋喃的转化率达到99.4%。  相似文献   

6.
采用共沉淀法制备出复合载体TiO2-Al2O3,用N2-吸附、XRD和吡啶吸附红外光谱等手段进行表征。采用原位硫化法制备Ni-Mo-S/TiO2-Al2O3负载型催化剂,以苯酚为模型化合物研究其加氢脱氧催化性能。主要研究铝源和沉淀剂对TiO2-Al2O3复合载体性能的影响以及其作为载体对Ni-Mo-S/TiO2-Al2O3催化苯酚加氢脱氧反应的影响。结果表明,以氯化铝为铝源制备的复合载体具有较大的孔容和孔径,孔容达1.12cm3/g,孔径达18.0nm;以硫酸铝为铝源和以碳酸氢铵为沉淀剂制备的复合载体具有较大的比表面积,高达295m2/g;氨水沉淀制备的复合载体具有较多的L酸;以硫酸铝为铝源制备的复合载体形成少量的B酸。TiO2-Al2O3作为载体影响Ni-Mo-S/TiO2-Al2O3负载型催化剂加氢脱氧性能的主要因素是载体的酸性和载体的比表面积。在300℃,4.0MPa条件下Ni-Mo-S/TiO2-Al2O3催化苯酚的转化率达81.9%,产物中无氧化合物的总选择性达100%,脱氧率达79.4%。  相似文献   

7.
采用化学还原法合成Ni-P非晶态合金,添加Co元素对非晶态合金进行改性,采用XRD、SEM、XPS、DSC等方法对非晶态合金进行结构与性能的表征。以香草醛加氢脱氧制2-甲氧基-4-甲基苯酚(MMP)为探针考察催化剂的加氢脱氧(HDO)性能。结果表明,Ni与Co之间的协同作用不仅有助于Ni的还原,增加催化剂活性中心数目,而且提高了非晶态合金分散度、无序度和热稳定性。在优化的反应条件下:n_(Co)/(n_(Co)+n_(Ni))(物质的量比)=0.08、H_2分压为2.0 MPa、反应温度为150℃、反应时间为180 min、催化剂用量为0.05 g,香草醛的转化率达到100%,MMP选择性为82.7%。催化剂循环五次后,香草醛的转化率保持100%,MMP的选择性下降到68.7%。  相似文献   

8.
以Al2O3为载体,RuCl3·xH2O及Ni(NO32·6H2O为活性组分前驱体,采用吸附-沉淀法制备系列Ru-Ni/Al2O3催化剂,以马来酸二甲酯(DMS)催化加氢为探针反应,考察了活化条件和Ni的添加量对催化剂性能的影响。随Ni负载量的升高,Ru-Ni/Al2O3催化剂活性呈现先升高后降低的趋势,在Ni:Ru的原子比为6:1时(催化剂Ru1Ni6/Al)催化活性最高。催化剂Ru1Ni6/Al在氢气中200 ℃直接还原后的平均转化率与氢气中400 ℃还原后的平均转化率接近,达到了单组分Ru/Al催化剂的1.5倍以上。XPS、XRD、H2-TPR数据表明,Ru与Ni之间发生了较强的相互作用,Ni的加入促进了金属Ru在载体上的分散,提高了催化活性。  相似文献   

9.
采用废弃的鸡蛋壳作载体,沉积沉淀法制备了一系列不同Co3O4含量Co3O4/鸡蛋壳催化剂,并在连续流动微反装置上考察了N2O分解性能。结果表明,当Co3O4质量分数为20%时,催化剂表现出优异的N2O分解性能。在空速10000 h-1和N2O含量0.1%的条件下,400℃可实现N2O完全转化;其比活性约为Co3O4催化剂的4.3倍(反应温度为440℃);同时,该催化剂对原料气中3%O2、3.3%H2O和/或2.0×10-4 NO表现出较强的耐受性和较高的稳定性。分析催化剂的多种表征结果发现,CaCO3作为鸡蛋壳的主要成分,与活性组分Co3O4紧密结合,两者的强相互作用导致20%Co3O4...  相似文献   

10.
在碱性条件下制备了三氧化二铝负载的铱(Ir/γ-Al2O3)催化剂,并用于苯乙酮及其衍生物的不对称催化加氢反应.考察了不同的碱、碱浓度、手性二胺(1S,2S)-1,2-二苯基乙二胺[(1S,2S)-DPEN]浓度、反应温度和反应压力对催化剂及反应的影响.结果显示,在优化反应条件下,该催化剂表现出较高的催化活性和良好的对映选择性,其中异丁酰苯不对称催化加氢反应的对映选择性达到了80.3%.该催化剂不需要使用任何稳定剂,制备方法简单,催化性能稳定,通过简单的离心分离即可循环使用.  相似文献   

11.
Co3O4/SiO2 catalysts for CO oxidation were prepared by conventional incipient wetness impregnation followed by calcination at various temperatures. Their structures were char-acterized with X-ray diffraction (XRD), laser Raman spectroscopy, X-ray photoelectron spectroscopy (XPS), temperature-programmed reduction (TPR) and X-ray absorption fine structure (XAFS) spectroscopy. Both XRD and Raman spectroscopy only detect the ex-istence of Co3O4 crystallites in all catalysts. However, XPS results indicate that excess Co2+ ions are present on the surface of Co3O4 in Co3O4(200)/SiO2 as compared with bulk Co3O4. Meanwhile, TPR results suggest the presence of surface oxygen vacancies on Co3O4 in Co3O4(200)/SiO2, and XAFS results demonstrate that Co3O4 in Co3O4(200)/SiO2 con-tains excess Co2+. Increasing calcination temperature results in oxidation of excess Co2+ and the decrease of the concentration of surface oxygen vacancies, consequently the for-mation of stoichiometric Co3O4 on supported catalysts. Among all Co3O4/SiO2 catalysts,Co3O4(200)/SiO2 exhibits the best catalytic performance towards CO oxidation, demon-strating that excess Co2+ and surface oxygen vacancies can enhance the catalytic activity of Co3O4 towards CO oxidation. These results nicely demonstrate the effect of calcination temperature on the structure and catalytic performance towards CO oxidation of silica-supported Co3O4 catalysts and highlight the important role of surface oxygen vacancies on Co3O4.  相似文献   

12.
采用NaBH4溶液处理经水热、热处理步骤制得Co3O4纳米棒,得到表面富含氧空位以及无定型CoBx的Co3O4(CoBx/Co3O4)氧析出(OER)电催化剂。利用X射线衍射(XRD)、场发射扫描电镜(FESEM)、透射电镜(TEM)、X射线光电子能谱仪(XPS)等技术表征了催化剂的物相、微观形貌、元素组成以及表面化学键结构等。通过电化学工作站测试了电极材料的OER活性、稳定性、电化学阻抗等。结果表明,经NaBH4处理后,Co3O4表面高价态Co被还原至低价态Co,最终其表面有无定型CoBx的生成,并含有大量氧空位,有效提升了OER性能。在1.0 mol·L^-1 KOH电解质溶液中,达到10 mA·cm^-2的电流密度时,CoBx/Co3O4所需的过电位由Co3O4的346 mV降至298 mV。  相似文献   

13.
采用沉淀氧化法制备了Co3O4/CeO2催化剂。分别在干、湿条件下进行了一氧化碳氧化反应研究。运用FT-IR表征手段,在钴铈复合氧化物上进行了CO吸附及CO/O2共吸附研究。结果表明,与纯的Co3O4样品相比,Co3O4/CeO2具有明显的抗湿气能力。Co3O4/CeO2催化剂在进行CO氧化时,表面形成了类碳酸盐物种。当环境温度低于453 K时,催化剂上类碳酸盐的生成与形成类碳酸盐物种后受热分解存在着动态平衡。当环境温度高于493 K,催化剂上生成的类碳酸盐物全部受热分解。氧化铈的加入提高了催化剂的抗湿气性能。较小粒径的Co3O4与CeO2产生的强相互作用可使CeO2向Co3O4提供氧,因而间接提供了CO氧化需要的氧。  相似文献   

14.
Developing enzyme-free sensors with high sensitivity and selectivity for H2O2 and glucose is highly desirable for biological science.Especially,it is attractive to exploit noble-metal-free nanomaterials with large surface area and good conductivity as highly active and selective catalysts for molecular detection in enzyme-free sensors.Herein,we successfully fabricate hollow frameworks of Co3O4/N-doped carbon nanotubes(Co3O4/NCNTs)hybrids by the pyrolysis of metal-organic frameworks followed by calcination in the air.The as-prepared novel hollow Co3O4/NCNTs hybrids exhibit excellent electrochemical performance for H2O2 reduction in neutral solutions and glucose oxidation in alkaline solutions.As sensor electrode,the Co3O4/NCNTs show excellent non-enzymatic sensing ability towards H2O2 response with a sensitivity of 87.40μA(mmol/L)^-1 cm^-2,a linear range of 5.00μmol/L-11.00 mmol/L,and a detection limitation of 1μmol/L in H2O2 detection,and a good glucose detection performance with 5μmol/L.These excellent electrochemical performances endow the hollow Co3O4/NCNTs as promising alternative to enzymes in the biological applications.  相似文献   

15.
The targeted catalytic transfer hydrodeoxygenation (CTHDO) of vanillin (VAN) to 2-methoxy-4-methylphenol (MMP) holds promise as a noteworthy subject in the domain of bio-oil utilization, offering potential as a future biofuel and finding versatile use in fragrances and pharmaceutical industry. In this study, stable, cost-effective Ni nanoparticles supported on montmorillonite (MMT) clay was synthesized for eco-friendly, alcohol-mediated CTHDO of VAN to MMP. The Ni(10 %)/MMT catalyst achieved >99 % VAN conversion and 95.2 % MMP selectivity using isopropanol (IPA) as a solvent and hydrogen donor. Characterization encompassing PXRD, SEM, TEM, and XPS confirmed successful Ni integration onto MMT. NH3-TPD, pyridine-IR, and H2-TPR analysis evaluated catalyst surface acidity and reducibility. The synergy between surface-modulated acidity of MMT and Ni nanoparticles collectively facilitated IPA and VAN activation, driving CTHDO performance. The Ni(10 %)/MMT catalyst displayed sustained activity over five recycles. Its exceptional stability and performance underscore its potential as an eco-friendly, sustainable, non-noble transition metal-based catalyst for the hydrogenating lignin bio-oil model compounds, contributing to greener catalytic advancements.  相似文献   

16.
采用水热合成法制备了Co3O4及复合Ag/Co3O4、CuO/Co3O4一维纳米产品。用XRD,FE-SEM和TEM手段对产品进行了表征。采用循环伏安法研究了合成产品修饰的玻碳电极在碱性溶液中对对硝基苯酚的电催化还原性能。与裸玻碳电极相比,1mmol·L-1的对硝基苯酚在用Co3O4、特别是CuO/Co3O4修饰的玻碳电极上还原的峰电流明显增大,用Ag/Co3O4(Ag/Co原子比分别为1∶5和2∶5)修饰的玻碳电极催化还原对硝基苯酚时,尽管还原峰电流增大不是太大,但其峰电位明显降低(分别降低0.265和0.371V)。  相似文献   

17.
A variety of spherical and structured activated charcoal supported Pt/Fe3O4 composites with an average particle size of ~100 nm have been synthesized by a self-assembly method using the difference of reduction potential between Pt (IV) and Fe (Ⅱ) precursors as driving force. The formed Fe3O4 nanoparticles (NPs) effectively prevent the aggregation of Pt nanocrystallites and promote the dispersion of Pt NPs on the surface of catalyst, which will be favorable for the exposure of Pt active sites for high-efficient adsorption and contact of substrate and hydrogen donor. The electron-enrichment state of Pt NPs donated by Fe3O4 nanocrystallites is corroborated by XPS measurement, which is responsible for promoting and activating the terminal C=O bond of adsorbed substrate via a vertical configuration. The experimental results show that the activated charcoal supported Pt/Fe3O4 catalyst exhibits 94.8% selectivity towards cinnamyl alcohol by the transfer hydrogenation of cinnamaldehyde with Pt loading of 2.46% under the optimum conditions of 120℃ for 6 h, and 2-propanol as a hydrogen donor. Additionally, the present study demonstrates that a high-efficient and recyclable catalyst can be rapidly separated from the mixture due to its natural magnetism upon the application of magnetic field.  相似文献   

18.
The effects of doping of Co3O4with MgO (0.4–6 mol%) and V2O5 (0.20–0.75 mol%) on its surface and catalytic properties were investigated using nitrogen adsorption at −196°C and decomposition of H2O2 at 30–50°C. Pure and doped samples were prepared by thermal decomposition in air at 500–900°C, of pure basic cobalt carbonate and basic carbonate treated with different proportions of magnesium nitrate and ammonium vanadate. The results revealed that, V2O5 doping followed by precalcination at 500–900°C did not much modify the specific surface area of the treated Co3O4 solid. Treatment of Co3O4 with MgO at 500–900°C resulted in a significant increase in the specific surface area of cobaltic oxide. The catalytic activity in H2O2 decomposition, of Co3O4 was found to suffer a considerable increase by treatment with MgO. The maximum increase in the catalytic reaction rate constant (k) measured at 40°C on Co3O4 due to doping with 3 mol% MgO attained 218, 590 and 275% for the catalysts precalcined at 500, 700 and 900°C, respectively. V2O5-doping of Co3O4 brought about a significant progressive decrease in its catalytic activity. The maximum decrease in the reaction rate constant measured at 40°C over the 0.75 mol% V2O5-doped Co3O4 solid attained 68 and 93% for the catalyst samples precalcined at 500 and 900°C, respectively. The doping process did not modify the activation energy of the catalyzed reaction but much modified the concentration of catalytically active constituents without changing their energetic nature. MgO-doping increased the concentration of CO3+–CO2+ ion pairs and created Mg2+–CO3+ ion pairs increasing thus the number of active constituents involved in the catalytic decomposition of H2O2. V2O5-doping exerted an opposite effect via decreasing the number of CO3+–CO2+ ion pairs besides the possible formation of cobalt vanadate.  相似文献   

19.
以硝酸钴和丙三醇为反应物通过反应条件的改变控制制备出Co3O4纳米线.利用粉末X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)对产物的形貌与结构进行了表征.实验发现,在低扫描速率下,Co3O4纳米线电极的循环伏安(CV)曲线呈现出两对氧化还原峰.恒电流充放电实验中,氧化钴纳米线电极在1A.g-1电流密度下的电容为163F.g-1;在1和4A.g-1条件下,其容量随循环次数的增加先上升后下降,1000次充放电循环后容量保持率分别在98%和80%以上,继续增加循环次数则容量下降比较明显.锂离子电池性质测试中,氧化钴纳米线的放电容量为1124mAh.g-1,然而放电容量随循环次数增加下降较快.基于实验结果,对Co3O4纳米线的形成机理及其结构与电化学性质之间的关系进行了探讨.  相似文献   

20.
Highly efficient Co3O4/TiO2 monolithic catalysts with enhanced stability were in-situ grown on Ti mesh for CO oxidation,which could completely oxidize CO at 120℃.The comprehensive catalytic performance is competitive to some noble metal catalysts and conventional Co3O4 powder catalysts,which holds great potential toward industrial applications.Meanwhile,the in-situ synthesis strategy of Co3O4/TiO2 monolithic catalysts on flexible mesh substrate in this work can be extended to the development of a variety of oxide-based monolithic catalysts towards diverse catalysis applications.  相似文献   

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