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1.
Summary The effect of transition metals (Cr, Mn, Fe, Co, Ni and Cu) on the selective hydrogenation of cinnamaldehyde (CMA) to the corresponding semi-hydrogenated product over Pt/CNTs catalyst has been studied in ethanol at 343 K under 2.0 MPa H2 pressure. PtNi/CNTs catalyst shows good catalytic activity and selectivity of C=C bond hydrogenation, 68.4% for conversion of CMA and 97.0% for selectivity of hydrocinnamaldehyde (HCMA). PtCo/CNTs catalyst shows good catalytic activity and selectivity of C=O bond hydrogenation, 91.3% for conversion of CMA and 88.2% for selectivity of cinnamylalcohol (CMO).  相似文献   

2.
The Pt-Sn-B/carbon nanotubes (CNTs) catalyst was prepared by impregnation-chemical reduction method. Its catalytic performance was evaluated by liquid-phase hydrogenation of chloronitrobenzene (CNB). The results showed that the catalyst had higher catalytic performance than common hydrogenation catalysts. The conversion of CNB could reach 99.9%, and the dechlorination of chloroaniline (CAN) was less than 1.9% when catalyzed by Pt-Sn-B/CNTs and more than 8.0% when catalyzed by common hydrogenation catalysts. X-ray diffraction and selected area electron diffraction analysis showed that Pt-Sn-B/CNTs had an amorphous alloy structure that can improve catalytic performance. Transmission electron micrograph image showed that the catalyst particles were highly distributed on the surface of CNTs. The hydrodechlorination of CNB was mainly affected by the unique structure of CNTs and the nature of the amorphous metals on the surface of CNTs. The relationship between the interaction of CNTs and amorphous metals and the catalytic performance of the catalyst is also discussed. Translated from the Chinese Journal of Catalysis, 2005, 26(3) (in Chinese)  相似文献   

3.
碳纳米管负载Pt-Sn-B非晶态催化剂催化氯代硝基苯   总被引:16,自引:0,他引:16  
 用浸渍-化学还原法制备了碳纳米管负载的Pt-Sn-B非晶态催化剂,并采用透射电子显微镜、X射线衍射、选区电子衍射、X射线能谱等表征手段研究了催化剂在碳纳米管表面的存在状态、组成及其非晶性质. 将此催化剂用于三种氯代硝基苯的液相催化加氢反应,结果表明该催化剂具有较好的加氢性能和较高的抑制脱卤性能. 在不添加脱卤抑制剂的情况下,三种氯代硝基苯的转化率均高于99.8%,脱卤率小于1.9%. 而将通用加氢催化剂用于相同的反应时,产物的脱卤率均高于8%. 碳纳米管的特殊结构与表面金属的非晶性质是影响氯代硝基苯加氢性能的主要因素. 讨论了碳纳米管与表面非晶态金属的作用规律及其与催化加氢性能的关系.  相似文献   

4.
Neodymium is used as a promoter of Ni‐B/CNTs amorphous alloy catalyst to modify its catalytic properties. Ni‐B/CNTs and Ni‐Nd(5wt%)‐B/CNTs catalysts were prepared by the impregnation chemical reduction method. Their catalytic performances were examined in acetylene selective hydrogenation, which is a crucial step in industrial polymerization processes, with the aim of the complete elimination of alkynes from alkene feedstocks. Experiments showed that the latter exhibited higher acetylene hydrogenation activity but lower ethylene selectivity. Catalysts were characterized by ICP, CO‐chemisorption, XPS, XRD and H2‐TPD techniques. On the basis of characterizations, the modification of Nd on Ni‐B/CNTs catalyst was related to its geometric and electronic effects.  相似文献   

5.
分别采用乙醇-异丙醇、H2和NaBH4还原方法制备了凹凸棒土负载铂催化剂(分别标记为Pt/PAL(I)、Pt/PAL(II)和Pt/PAL(III)), 其在对氯硝基苯(p-CNB)的催化选择加氢反应中表现出不同的催化性能. 在Pt/PAL(II)催化剂上, 对氯苯胺(p-CAN)的选择性达到了100%, 并且在p-CNB 完全转化的情况下, 脱氯反应得到了完全的抑制. 在Pt/PAL(I)和Pt/PAL(III)催化剂上, 尽管脱氯反应没有得到完全的抑制, 但也分别得到99.7%和99.9%的p-CAN选择性. Pt/PAL(I)催化剂表现出最高的催化活性,转化频率(TOF)值高达27010 h-1. Pt/PAL(II)和Pt/PAL(III)催化剂表现出稍微低的催化活性, TOF值分别为17193 和24871 h-1. 利用透射电镜(TEM)、X射线衍射(XRD)和傅里叶变换红外光谱(FTIR)对催化剂样品进行了表征, 结果表明优异的催化性能主要归因于铂粒子尺寸和凹凸棒土载体的影响.  相似文献   

6.
谷牧  何代平  江平  尹兴春  陈虎 《应用化学》2015,32(10):1164-1169
采用浸渍还原法制备了活性炭负载Pt-Fe双金属催化剂(Pt-Fe/AC),考察了其催化对氯硝基苯加氢性能。 与Pt/AC催化剂比较,该催化剂对催化对氯硝基苯加氢表现出高活性和优异的抑制脱氯性能,在乙醇为溶剂、催化剂Pt0.003-Fe0.04/AC(下标为元素在催化剂中的质量分数)用量为0.02 g/g对氯硝基苯、1 MPa H2和30 ℃条件下反应150 min,对氯硝基苯完全转化为对氯苯胺,而且即使在较高的反应温度和H2压力下,脱氯反应也得到了完全抑制。 采用X射线衍射(XRD)、透射电子显微镜(TEM)及X射线光电子能谱(XPS)等技术手段对Pt-Fe/AC催化剂进行了表征。 结果表明,Pt、Fe高度分散在活性炭上,Pt与Fe之间的相互作用对纳米Pt粒子的电子结构有一定的调变作用,使纳米Pt处于缺电子态,减弱了Pt与对氯苯胺苯环之间的电子反馈,这可能是Pt-Fe/AC对催化对氯硝基苯加氢表现出高活性和优异的抑制脱氯性能的主要因素。  相似文献   

7.
Reduced graphene oxide (RGO) supported ruthenium (Ru) catalyst was prepared by an impregnation method using RuCI3 as a precursor and RGO as a support. The catalyst Ru/RGO was used for the selective hydrogenation ofp-chloronitrobenzene (p-CNB) to p-chloroaniline (p-CAN), showing a selectivity of 96% at complete conversion of p-CNB at 60 ℃ and 3.0 MPa H2. The Ru/RGO catalyst was extremely active for the hydrogenation of a series of nitroarenes, which can be attributed to the small sized and the fine dispersity of the Ru nanoparticles on the RGO sheets characterized by TEM. Moreover, the catalyst also can be recycled five times without the loss of activity.  相似文献   

8.
宋华  汪淑影  李锋 《化学通报》2011,(10):947-951
采用十六烷基三甲基溴化铵(CTAB)/正丁醇/环己烷/H2PtCl6微乳液体系,以N2H4.H2O为还原剂,ZrO2为载体,制备Pt/ZrO2催化剂。以对氯硝基苯(p-CNB)选择加氢反应为探针,考察微乳液组成及载体焙烧温度对Pt/ZrO2催化剂催化活性的影响。由TEM、XRD对载体和催化剂进行表征。结果表明,采用微乳...  相似文献   

9.
分别以碳纳米管(CNTs), SiO_2, TiO_2, γ-Al_2O_3, TiO_2-SiO_2和活性炭(AC)为载体(M),以Ni和B为活性组分,采用浸渍-化学还原法制备了一系列负载型Ni-B非晶态合金催化剂(Ni-B/M).采用电感耦合等离子体光谱(ICP), XRD, TEM和DSC研究了Ni-B/CNTs的非晶性质,Ni的担载量及其热稳定性.将Ni-B/M用于催化三种氯代硝基苯液相加氢合成氯代苯胺的反应.结果表明,Ni-B/M在反应中表现出较高的活性和良好的选择性,其中Ni-B/CNTs可使三种氯代硝基苯的转化率均高于99.8%,加氢脱氯率小于3%.讨论了CNTs和Ni-B之间的相互作用对催化剂性能的影响.  相似文献   

10.
碳纳米管(CNTs)是近年来发现的一种新型催化剂载体材料,将其作为α,β-不饱和醛的选择加氢的研究则报道较少.本文对柠檬醛[Citral,3,7-二甲基-2,6-辛二烯醛(3,7-Dimethyl-2,6-octadienal)]在Pt/CNTs和Pt/XC-72催化剂作用下的液相选择加氢进行了探索性研究.结果发现,碳纳米管(CNTs)负载的Pt催化剂具有生成不饱和醇的高选择性.  相似文献   

11.
The NiB amorphous alloy catalysts supported on CNTs and alumina were prepared by impregnation and chemical reduction. The gas-phase benzene hydrogenation was used as a probe reaction to evaluate the catalytic activity. The result showed that the NiB amorphous alloy catalyst supported on carbon nanotubes exhibited higher activity than that supported on alumina.  相似文献   

12.
采用激光溅射法制备了碳纳米管负载铂(Pt/CNTs)催化剂, 并利用透射电子显微镜(TEM)、X射线能量散射谱(EDS)、X射线衍射(XRD)、X射线光电子能谱(XPS)等表征手段研究了Pt粒子在碳纳米管表面存在的状态、组成、结构等性质. 讨论了Pt/CNTs催化剂的不同制备条件对催化剂结构的影响, 并考察了催化剂对邻氯硝基苯液相加氢合成邻氯苯胺反应的加氢性能. 研究结果表明, 在激光电压为250 V, 绝对压力为300 Pa, 载体温度为25 ℃条件下制备的Pt/CNTs催化剂, 在不加脱卤抑制剂, 反应温度为60 ℃和氢气压力为1.0 MPa的条件下, 邻氯硝基苯转化率可以达到99.7%以上, 邻氯苯胺选择性可达到98.2%以上, 表现出较高的加氢性能和抑制脱卤性能.  相似文献   

13.
The incorporation of 1 mass % of group VI metals (chromium, molybdenum, and tungsten) into 4 mass % of Ni/MgO catalysts was evaluated for the synthesis of carbon nanotubes (CNTs) by the catalytic chemical vapour deposition of ethylene. All materials were characterised by XRD, surface area, TEM, SEM, Raman spectroscopy, and TGA-DTA. The resulting data demonstrated that the addition of group VI metals improved the surface area and metal dispersion, thereby achieving a remarkable enhancement in catalytic growth activity. Among the metals of group VI, Mo was found to be the most effective promoter for catalysing the CNTs’ growth. From TEM observation, long CNTs with a higher degree of graphitization were obtained on the Ni-Mo/MgO catalyst. TGA and DTA analysis showed that the as-grown CNTs over both Ni-Mo and Ni-W/MgO catalysts exhibited higher thermal stability.  相似文献   

14.
γ-戊内酯广泛应用于食品添加剂、燃料添加剂、溶剂、汽油、柴油以及多种化工中间体的合成,由于其上游原料乙酰丙酸是重要的生物质基平台化合物已实现了工业化生产,因此发展其高效、可循环使用的催化合成新体系是近年来生物质催化转化的研究热点之一.目前使用的多相催化剂体系主要是浸渍法制备的负载型金属纳米颗粒催化剂,活性金属主要有Ru, Pd, Pt, Au, Cu, Ni等.由于乙酰丙酸制备γ-戊内酯反应是一个酸性的含水体系,在高温、高压条件下,使用浸渍法得到的催化剂特别是非贵金属催化剂容易发生活性金属的聚集、流失,从而使得催化剂重复使用的效果不佳.从非贵金属替代贵金属和提高催化剂稳定性这两点入手,本论文以水滑石为合成催化剂的单一前驱体,将非贵金属(Cu, Ni, Fe, Co)掺入到水滑石的结构骨架中,通过直接氢气焙烧还原制得了高负载量的负载型金属纳米颗粒多相催化剂.将制得的催化剂应用于乙酰丙酸加氢反应,其催化活性顺序为: Co>Ni>Cu>Fe.制备出了5种不同Co/Al比的Co基催化剂,其中4Co/Al2O3催化剂在H2(5 MPa)、180 oC条件下,显示出了类似贵金属钌催化剂的活性和选择性,乙酰丙酸在3 h内完全转化,γ-戊内酯的选择性高达99%.为了进一步了解催化剂的结构与其活性和稳定性之间的关系,我们采用X射线粉末衍射仪(XRD),氢气程序升温还原(H2-TPR), X射线光电子能谱(XPS),透射电子显微镜(TEM)等表征手段研究了催化剂的形貌和结构. TEM结果表明,以水滑石为前驱体制备的Co催化剂中负载的Co纳米颗粒的平均粒径在25–30 nm,而用浸渍法制备的相同负载量的Co催化剂的Co纳米颗粒粒径大于150 nm.相应的催化反应结果表明,前者的催化活性要远好于后者.水滑石前驱体的H2-TPR实验结果表明,随着Co/Al比增加,其还原峰向低温方向位移.这是由于Al含量的减少,导致金属Co离子周围键合的Al离子数量减少,从而使得Co与Al之间的作用力减弱, Co更加容易被还原.表现在还原温度上,即为还原温度降低,说明了Co纳米颗粒与载体之间具有一种强相互作用.结合TEM测试结果,正是这种强相互作用限制了Co纳米颗粒的长大,使其要远小于用浸渍法制得的Co纳米颗粒. HRTEM测试结果显示在4Co/Al2O3催化剂结构中, Co金属纳米颗粒与载体Al2O3之间存在一种核壳结构的关系, Co纳米颗粒被包埋于载体Al2O3中形成核壳结构.这种结构同样也保证了活性金属与载体之间较强的相互作用,有效地避免Co纳米颗粒在强水热、酸性条件下的聚集和流失,从而使该催化剂在循环使用四次时仍能保持优异的活性和选择性.我们进一步研究了该核壳结构形成的原因.发现催化剂在制备过程中如果先用空气高温焙烧,再用氢气还原,得到的催化剂中则没有明显的核壳结构,且Co纳米颗粒粒径在55 nm左右.相应的催化反应结果也要差于直接氢气焙烧还原得到的4Co/Al2O3催化剂.这也从侧面说明了以水滑石为前驱体制备负载型金属纳米颗粒催化剂时,其原位的限制效应在控制金属纳米颗粒的大小、稳定性方面的优越性.此外,由于该Co催化剂具有磁性特征,很容易通过磁性回收实现催化剂与反应液的分离,大大简化了催化剂的回收及产物分离过程.  相似文献   

15.
Carbon nanotubes (CNTs) are severely bundled and essentially insoluble in solvent. These properties are generally considered as a significant barrier toward the practical uses of CNTs. Therefore, the functionalization and solubilization of CNTs have recei…  相似文献   

16.
采用傅里叶变换红外光谱仪(FT-IR)、N2吸脱附、X射线衍射(XRD)、透射电子显微镜(TEM)揭示了微波辅助-KOH处理对活性炭的物理化学性能的影响规律。 结果表明,活性炭表面的含氧基团的种类增加,微孔明显减少,中大孔的比例增大。 通过浸渍-原位还原方法制备了Pt、Pd、Ru、Rh负载微波辅助-KOH处理活性炭催化剂,并对其催化p-叔丁基-α-甲基肉桂醛选择性加氢性能进行了研究。 发现Pt具有优异的C=O加氢选择性,而Pd具有优良的C=C加氢选择性。 进一步研究了Pd-Pt双组分催化剂催化p-叔丁基-α-甲基肉桂醛加氢产物分布,随着Pt含量的增加, C=O选择性逐步提高, C=C选择性逐渐下降,且当m(Pd)∶m(Pt)=4∶1时,其催化剂的催化性能最佳。  相似文献   

17.
银、铜对NiB/CNTs非晶态合金乙炔选择加氢性能的影响;NiB/CNTs;非晶态合金;银;铜;乙炔选择加氢  相似文献   

18.
A series of nanocatalysts consisting of acid treated carbon nanotubes (CNTs) with different diameters (8-15, 20-30, 30-50, >50 nm) supporting platinum (Pt) nanoparticles (Pt/CNTs) were synthesized via a microwave-assisted ethylene glycol method. The as-synthesized catalysts were characterized by X-ray photoelectron spectroscopy (XPS), X-ray diffraction (XRD), thermogravimetric analysis (TGA), and transmission electron microscopy (TEM). Their catalytic performances in the oxygen reduction reaction (ORR) were evaluated by cyclic voltammetry (CV) and linear sweep voltammetry (LSV). The experimental results showed that the diameter of the CNTs influences the particle size, loading, and dispersion of Pt NPs. Furthermore, the Pt/CNTs having different CNT diameters displayed different catalytic activities in the ORR. The catalyst Pt/CNT8, which was prepared by using CNTs with diameters ranging between 8-15 nm as the support, exhibited the highest Pt loading, catalytic activity, and stability in the ORR. The mass activity of Pt/CNT8 was determined to be 0.188 A·mg-1 at 0.9 V, which is folds higher than that of the commercially available JM Pt/C catalyst. After testing the stability for 5000 potential cycles, the negative shift (~7 mV) of the half-wave potential for Pt/CNT8 was found to be significantly lesser than that for the JM Pt/C catalyst (~32 mV), indicating superior catalytic stability.  相似文献   

19.
Carbon nanotubes (CNTs), γ-alumina (γ-Al2O3) and silica (SiO2) supported Pt and Pd catalysts were produced by laser vaporization deposition of respective bulk metals. The catalysts were characterized by inductive coupled plasma emission spectrometer (ICP), X-ray photoelectron spectroscopy (XPS) and transmission electron microscopy (TEM). The catalytic properties of the catalysts were investigated in the liquid phase hydrogenation of o-chloronitrobenzene (o-CNB) to o-chloroaniline (o-CAN) under 333 K and 1.0 MPa hydrogen pressure. The results show that the catalytic properties are greatly affected by the supports. Pt/CNTs catalyst exhibits the best catalytic performance among the Pt-based catalysts, producing o-CAN with 99.6% selectivity at complete conversion. Pd/CNTs catalyst exhibits the best catalytic performance among the Pd-based catalysts, giving o-CAN with 95.2% selectivity at complete conversion. For Pt-based catalysts, geometric effect and the textures and properties of the supports play important roles on catalytic properties. On the other hand, geometric effect, electronic effect and the textures and properties of the supports simultaneously influence the catalytic properties of the Pd-based catalysts. In addition, hydrogenolysis of the C–Cl bond can be well inhibited over all catalysts prepared by laser vaporization deposition.  相似文献   

20.
以浮动催化热分解法制备碳纳米管(CNTs), 采用氧化-还原-硫化的方法制备了CNTs/FeS催化剂, 采用X射线衍射(XRD)、 透射电子显微镜(TEM)和热重(TG)分析等技术对催化剂进行了结构表征. 将CNTs/FeS作为类Fenton催化剂用于水中环丙沙星的去除, 研究了降解过程中H2O2浓度、 CNTs/FeS催化剂的投加量、 环丙沙星浓度及pH等因素对催化降解性能的影响. 结果表明, CNTs/FeS类Fenton催化反应在H2O2浓度为20 mmol/L和CNTs/FeS催化剂的投加量为10 mg的条件下具有最优的降解效果, 其催化反应过程符合一级动力学方程, 且具有更加宽泛的pH适应范围(pH=3~8), 同时, CNTs/FeS类Fenton催化剂在使用寿命方面也具有一定的优势.  相似文献   

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