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1.
以合成的水溶性钌配合物[RuC l2(TPPTS)2]2作为催化剂,用于水/有机两相体系中催化卤代硝基苯中硝基的选择性加氢反应.以对-氯硝基苯为底物,考察了反应温度、氢气压力、催化剂浓度、水溶液的pH值等对对-氯硝基苯转化率和生成对-氯苯胺选择性的影响.在100℃,氢气压力3.0 MPa时,反应6h,对-氯硝基苯转化率可达100%,生成对-氯苯胺的选择性可达95.2%.该催化剂对其他卤代硝基苯的加氢反应也表现出较高的催化活性.  相似文献   

2.
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   

3.
单层分散型Pd/Ni双金属催化剂的制备及其催化加氢性能   总被引:1,自引:0,他引:1  
通过置换反应制备了Pd/Ni双金属催化剂,利用X射线衍射、CO化学吸附和吸附H2的程序升温脱附对其进行了表征,并测定了该催化剂对环己烯、苯乙烯和丙酮气相加氢反应的催化性能.结果发现,在这种催化剂中Pd原子单层分散在金属Ni的表面,因而该催化剂表现出比浸渍法制备的相同Pd含量的Pd/Ni-im和Pd/-γAl2O3催化剂更高的催化加氢活性.  相似文献   

4.
Ru/ZrO2·xH2O催化喹啉加氢反应   总被引:1,自引:0,他引:1  
制备了负载型催化剂Ru/ZrO2·xH2O,并用XRD、XPS和TEM对催化剂进行了表征,所制得的催化剂金属钌的平均粒径约为3.8 nm.在2MPa和40℃的温和条件下,以水为溶剂时,Ru/ZrO2·rH2O催化喹啉加氢生成1,2,3,4-四氢喹啉的选择性达98.0%,而且表现出较强的抗氮中毒能力,催化剂循环使用性能稳定.对喹啉加氢反应中的催化反应机理进行了探讨.  相似文献   

5.
负载型纳米贵金属催化剂催化吡啶及其衍生物的加氢反应   总被引:2,自引:0,他引:2  
薛芳  林棋  杨朝芬  李贤均  陈华 《催化学报》2006,27(10):921-926
 制备了负载型高分散的纳米贵金属催化剂和含Ru的双金属催化剂,并考察了催化剂对吡啶及其衍生物加氢反应的催化性能. 结果表明, 5%Ru/C催化剂对吡啶加氢反应的催化活性高于5%Pd/C, 5%Pt/C和5%Ir/C. 在100 ℃, 3.0 MPa, 1 h和Ru/吡啶摩尔比=2.5/1000 的条件下, 5%Ru/C催化吡啶加氢的转化率大于99.9%, 生成哌啶的选择性为100%. 催化剂重复使用5次后,活性和选择性无明显下降. 在Ru催化剂中加入少量的Pd和Ir后催化剂活性没有明显的变化. 采用X射线衍射、高分辨透射电镜和X射线光电子能谱对还原后的5%Ru/C催化剂进行表征,结果表明Ru以高分散金属态存在,其平均粒径小于5 nm. 不同底物的加氢反应活性为: 吡啶≈2-甲基吡啶>2,6-二甲基吡啶>3-甲基吡啶>4-甲基吡啶>3,5-二甲基吡啶>2-甲氧基吡啶.  相似文献   

6.
Ru/ZrO2·xH2O催化喹啉加氢反应   总被引:1,自引:0,他引:1  
制备了负载型催化剂Ru/ZrO2·xH2O, 并用XRD、XPS和TEM对催化剂进行了表征, 所制得的催化剂金属钌的平均粒径约为3.8 nm. 在2 MPa和40 ℃的温和条件下, 以水为溶剂时, Ru/ZrO2·xH2O催化喹啉加氢生成1,2,3,4-四氢喹啉的选择性达98.0%, 而且表现出较强的抗氮中毒能力, 催化剂循环使用性能稳定. 对喹啉加氢反应中的催化反应机理进行了探讨.  相似文献   

7.
金属离子修饰的Ru-Pt/γ-Al2O3催化p-CNB选择性加氢   总被引:3,自引:0,他引:3  
催化还原法制备卤代苯胺因具有产品质量好、收率高和三废少等优点而日益受到重视.近年来,研究较多的是高分子化合物稳定的Pt,Pd,Ru单金属或双金属胶体催化剂以及负载型单金属或双金属催化剂.用第三金属组分修饰的胶体催化剂的催化性能更好,但反应后催化剂与产物分离  相似文献   

8.
 制备了以聚乙烯吡咯烷酮(PVP)稳定的 Ru-Pt/γ-Al2O3负载型双金属催化剂,用于2,5-二氯硝基苯中的硝基选择性加氢. 考察了催化剂还原方法,反应温度、压力、时间和添加金属离子对反应的影响. 结果表明,用乙醇还原的Ru-Pt/γ-Al2O3催化剂性能明显好于用其它方法还原的催化剂,在50 ℃和氢气压力1.0 MPa的条件下反应1 h,转化率为41.4%,生成2,5-二氯苯胺的选择性为63.5%. 如果在上述反应条件下向该催化体系中加入Sn4+离子,反应的活性和选择性则大幅度提高,转化率达100%,选择性为77.6%,延长反应时间至4 h,选择性可达99.3%,并且没有脱氯产物的生成.  相似文献   

9.
采用真空浸渍法 ,制备了 Cu- Ni双金属催化剂 (引入 Cu前 ,Ni以不同的状态存在 ) ,在连续流动微型反应装置上测试了各催化剂上的 CO2 加氢性能 ,并用 XRD方法对催化剂进行了表征 .实验发现 ,与 Cu/Al2 O3催化剂相比 ,Cu- Ni/Al2 O3催化剂上 CO2 逆变换反应的活性因 Ni的存在而受到抑制 . Cu引入前处于氧化态的 Ni,对所制得的 Cu- Ni催化剂上 CO生成的抑制更为明显 . Cu- Ni/Al2 O3双金属催化剂表现出 CO2 甲烷化的催化活性 ,用引入 Cu前处于还原态的 Ni制备的双金属催化剂 ,更有利于 CH4的生成  相似文献   

10.
 采用混合醇还原法制备了聚乙烯吡咯烷酮(PVP)稳定的Ru-Pt/γ-Al2O3双金属催化剂,考察了其催化对氯硝基苯(p-CNB)选择加氢反应的性能,探讨了反应温度、压力、第三金属离子的种类、添加量及添加方式对反应的影响. 结果表明,以Ru-Pt/γ-Al2O3为催化剂,在1.0 MPa和50 ℃的条件下反应1 h,p-CNB的转化率可达48.2%,生成对氯苯胺(p-CAN)的选择性为87.3%. 在反应体系中添加适量的Fe3+或Sn4+离子时,在相同的反应条件下,p-CNB的转化率和p-CAN的选择性分别提高到100%和99.0%. Fe3+或Sn4+的添加量及添加方式对p-CNB的转化率有较大的影响,加入Fe2+,Co2+和Ni2+离子也有利于提高催化剂的活性和选择性. Ru-Pt/γ-Al2O3催化剂体系对其它氯硝基苯的加氢反应也有明显的催化作用.  相似文献   

11.
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   

12.
Hydrogenation of N-ethylcarbazole(NEC), the hydrogen lean form of a liquid organic hydrogen carrier,on TiO_2 supported Ru-Ni bimetallic catalysts is investigated. Crystal structure of TiO_2 plays a critical role on the hydrogenation activity and selectivity towards fully hydrogenated product. Ru/anatase catalyst exhibits higher selectivity but lower reactivity compared to Ru/rutile catalyst. Ni addition significantly promotes the performance of Ru/anatase catalyst while causes severe performance deterioration of Ru/rutile catalyst. Commercial P25, a mixture of anatase and rutile phases in approximate ratio A/R~1/4,is found to be the best TiO_2 support for NEC hydrogenation. Ru/P25 catalyst outperforms both Ru/rutile and Ru/anatase and its activity can be further slightly improved by Ni addition. The unexpected synergism between the two different TiO_2 phases for Ru based NEC hydrogenation catalysts is related to metal-support interaction and Ru-Ni interaction.  相似文献   

13.
Polymer-achored monometallic palladium catalyst PVP-PdCl2 (PVP = poly(N-vinyl-2-pyrrolidone)) exhibits very high activity for the hydrogenation of p-chloronitrobenzene (CNB) to aniline (AN) in the presence of base at 65°C and atmospheric pressure. In this case, the substrate is rapidly hydrodechlorinated to nitrobenzene (NB) which is then reduced to AN. Using the polymer-anchored bimetallic palladium-ruthenium catalyst, PVP-PdCl2-RuCl3, and in the presence of 1.0 mol% of sodium acetate, a strong synergic effect gives rise to a remarkable increase of the selectivity for p-chloroaniline (CAN) and the maximum selectivity of CAN is up to 94%. For the hydrogenation of the non-halo-substituted nitroaromatics to the corresponding aromatic amines, the monometallic PVP-PdCl2 catalyst only shows mild or poor activity, but the colloidal polymer-anchored bimetallic palladium-platinum catalyst, PVP-Pd-1/4Pt, exhibits very high activity and selectivity.  相似文献   

14.
RuPt/AC bimetallic catalysts were pre pared by two-step incipient impregnation method and evaluated in the hydrogenation of phthalates.According to the characterization results,well dispersed Ru Pt bimetallic nanoparticles were formed on the catalyst,and the strong interaction between the two metals resulted in the formation of RuPt alloy.It was found that Ru can donate electrons to Pt on RuPt alloy nanoparticles,leading to the formation of electron-deficient Ru which significantly promotes the hydrogenation rate of dioctyl phthalate and improves the selectivity of dioctyl di-2-ethylhexylcyclohexane-1,4-dicarboxylate by accelerating the further hydrogenation of intermediate products.The bimetallic RuPt catalyst also presented excellent stability and versatility in the hydrogenation of phthalates,demonstrating its prospective future in the hydrogenation of aromatic ring contained compounds.  相似文献   

15.
Polymer-stabilized platinum/ruthenium bimetallic colloids (Pt/Ru) were synthesized by polyol reduction with microwave irradiation and characterized by TEM and XPS. The colloidal nanoparticles have small and narrow size distributions. Catalytic performance of the Pt/Ru colloidal catalysts was investigated on the selective hydrogenation of crontonaldehyde (CRAL). A suitable amount of the added metal ions and base can improve the selectivity of CRAL to crotylalcohol (CROL) remarkably. The catalytic activity and the selectivity are dependent on the compositions of bimetallic colloids. Thereinto, PVP-stabilized 9Pt/1Ru colloid with a molar ratio of metals Pt:Ru = 9:1 shows the highest catalytic selectivity 77.3% to CROL at 333 K under 4.0 MPa of hydrogen.  相似文献   

16.
杨斌  徐筠 《分子催化》1996,10(5):339-344
制备了聚N-乙烯基-2-吡咯烷酮PVP负载钯催化剂Pd/PVP及各种双金属催化剂(1-m)Pd-mM/PVP,并用于硝基芳烃的加氢还原中,其中Pd/PVP中加入H2PtCl6的效果最佳,碱的用量、溶剂和Pd、Pt的比例都对催化剂的活性有明显的影响,双金属催化剂0.80Pd-0.20Pt/PVP在温和条件下能高活性,高选择性地催化硝基芳烃还原,得到相应的芳胺。  相似文献   

17.
Superior catalytic performance for selective 1,3-butadiene (1,3-BD) hydrogenation can usually be achieved with supported bimetallic catalysts. In this work, Pt−Co nanoparticles and Pt nanoparticles supported on metal–organic framework MIL-100(Fe) catalysts (MIL=Materials of Institut Lavoisier, PtCo/MIL-100(Fe) and Pt/MIL-100(Fe)) were synthesized via a simple impregnation reduction method, and their catalytic performance was investigated for the hydrogenation of 1,3-BD. Pt1Co1/MIL-100(Fe) presented better catalytic performance than Pt/MIL-100(Fe), with significantly enhanced total butene selectivity. Moreover, the secondary hydrogenation of butenes was effectively inhibited after doping with Co. The Pt1Co1/MIL-100(Fe) catalyst displayed good stability in the 1,3-BD hydrogenation reaction. No significant catalyst deactivation was observed during 9 h of hydrogenation, but its catalytic activity gradually reduces for the next 17 h. Carbon deposition on Pt1Co1/MIL-100(Fe) is the reason for its deactivation in 1,3-BD hydrogenation reaction. The spent Pt1Co1/MIL-100(Fe) catalyst could be regenerated at 200 °C, and regenerated catalysts displayed the similar 1,3-BD conversion and butene selectivity with fresh catalysts. Moreover, the rate-determining step of this reaction was hydrogen dissociation. The outstanding activity and total butene selectivity of the Pt1Co1/MIL-100(Fe) catalyst illustrate that Pt−Co bimetallic catalysts are an ideal alternative for replacing mono-noble-metal-based catalysts in selective 1,3-BD hydrogenation reactions.  相似文献   

18.
The ability to alter the surface population of metal sites in bimetallic nanoparticles (NPs) is of great interest in the context of heterogeneous catalysis. Here, we report findings of surface alterations of Pt and Ru metallic sites in bimetallic carbon-supported (PtRu/C) NPs that were induced by employing a controlled thermal-treatment strategy. The thermal-treatment procedure was designed in such a way that the particle size of the initial NPs was not altered and only the surface population of Pt and Ru was changed, thus allowing us to deduce structural information independent of particle-size effects. X-ray absorption spectroscopy (XAS) was utilized to deduce the structural parameters that can provide information on atomic distribution and/or extent of alloying as well as the surface population of Pt and Ru in PtRu/C NPs. The PtRu/C catalyst sample was obtained from Johnson Matthey, and first the as-received catalyst was reduced in 2 % H2 and 98 % Ar gas mixture at 300 degrees C for 4 h (PtRu/C as-reduced). Later this sample was subjected to thermal treatment in either oxygen (PtRu/C-O2-300) or hydrogen (PtRu/C-H2-350). The XAS results reveal that when the as-reduced PtRu/C catalyst was exposed to the O2 thermal-treatment strategy, a considerable amount of Ru was moved to the catalyst surface. In contrast, the H2 thermal-treatment strategy led to a higher population of Pt on the PtRu/C surface. Characterization of the heat-treated PtRu/C samples by X-ray diffraction and transmission electron microscopy reveals that there is no significant change in the particle size of thermally treated samples when compared to the as-received PtRu/C sample. The electrochemical properties of the as-reduced and heat-treated PtRu/C catalyst samples were confirmed by cyclic voltammetry, CO-adsorption stripping voltammetry, and linear sweep voltammetry. Both XAS and electrochemical investigations concluded that the PtRu/C-H2-350 sample exhibits significant enhancement in reactivity toward methanol oxidation as a result of the increased surface population of the Pt when compared to the PtRu/C-O2-300 and PtRu/C as-reduced samples.  相似文献   

19.
The catalytic performance of bimetallic Ru-Co catalysts prepared from a series of H3Ru3Co(CO)12. RuCo2(CO)11 and HRuCo3(CO)12 in CO hydrogenation was investigated, and it was found that the Ru-Co bimetallic carbonyl cluster-derived catalysts showed a high activity for products, particularly higher oxygenates, compared with the catalysts prepared from impregnation or co-impregnation of monometallic clusters such as [HRu3(CO)11] and Co4(CO)12. The selectivity for oxygenates in CO hydrogenation highly increased with the molar ratio of Co/Ru in the Ru-Co bimetallic cluster to CO/H2 in feed gas. Raising reaction temperature led to an intensive increase of CO conversion and a considerable decrease of selectivity for oxygenates. In situ FT-IR studies revealed that the band at 1584 cm-1 on Ru-Co bimetallic cluster-derived catalysts at 453 K under syngas (CO/H2 = 0. 5) has a good linear relationship to rates of oxygenate formation, which is likely associated with an intermediate to produce oxygenates in CO hydro  相似文献   

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