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CrOx/SiO2催化剂上丙烷在CO2气氛中脱氢反应的研究   总被引:2,自引:0,他引:2  
采用XRD、UV-vis  DRS、ESR和微分吸附量热等技术,考察了铬担载量分别为2.5、5和 10wt%的 CrOx/SiO2催化剂的结构、表面性质和氧化还原性能。结果表明,催化剂表面上存在多种Cr的氧化态和聚集形式。随着Cr担载量从2.5wt%到10wt%的逐渐增大,催化剂表面占主导地位的Cr物种由CrO3单体转为多聚CrO3和Cr2O3晶相。在 CO2气氛中催化剂对丙烷转化率和丙烯选择性的大小顺序为 2. 5wt% CrOx/SiO2 >5wt% CrOx/SiO2>10wt% CrOx/SiO2,反应过程中的原位 ESR和 UV-visDRS测定结果表明,催化剂表面的反应活性中心为Cr5+, Cr5+可由催化剂预处理过程中 Cr3+的氧化及丙烷反应过程中 CrO3单体的还原产生,在反应中 CO2可使Cr3+重新氧化为Cr5+。  相似文献   

3.
A study of the mechanism of the catalytic transformation of mixed ethyl acetate (EA) + methyl acetate (MA) (50:50 v/v) to hydrocarbons over HZSM‐5 (Si/Al ratio of 9) catalyst was conducted. The reaction was carried out in a continuous fixed‐bed reactor under atmospheric pressure and in the temperature range 250–390°C and with weight hourly space velocity of 3.2 and 4.6 h?1. The distribution of products including monoaromatics, fused ring aromatics and oxygenates was determined using GC‐MS. The product distribution was controlled by temperature. The oxygenate components (kinetically controlled products) were transformed into aromatics (thermodynamically controlled products) with an increase in temperature. The effluents were benzene‐free or with low content of benzene and toluene. Two intermediates were proposed for this conversion to hydrocarbons over HZSM‐5: cyclobutane‐1,3‐dione and/or acetic acid (AA) as ketene source. Furthermore, AA and mesityl oxide (MO) were selected as potential intermediates in the transformation of mixed EA + MA into hydrocarbons over HZSM‐5. It is suggested that ketene dimerization, the phenolic pool and the condensation reaction between ketene and MO are the probable mechanism routes for AA conversion. Aldol condensation, Michael addition, cracking, isomerization and ketene formation are the presumable pathways for MO conversion over HZSM‐5.  相似文献   

4.
以亚微米级NaZSM-5为载体合成了一系列负载型Cr催化剂, 采用氮气吸附、 XRD、 UV-Vis和H2-TPR对Cr/NaZSM-5催化剂的结构和织构性质进行了表征, 并评价了催化剂在CO2气氛下的丙烷脱氢性能. 硅铝摩尔比为60, Cr质量分数为3%的催化剂具有最高的反应活性, 于550 ℃反应10 min和8 h后的丙烷转化率分别为48.3%和30.1%, 丙烯选择性则分别为86.0%和91.8%. 催化剂中的Cr6+含量和反应初活性具有良好的对应关系, 表明高Cr6+含量对催化剂表现出高的丙烷脱氢活性是至关重要的. CO2气氛下的丙烯产率明显比氮气气氛下的高, 这是由于CO2气氛下催化剂表面有较多量的Cr6+, 并且CO2可通过逆水煤气变换反应除去脱氢反应生成的氢.  相似文献   

5.
介孔氧化铝负载Ni-Co氧化物催化剂上丙烷氧化脱氢制丙烯   总被引:1,自引:0,他引:1  
以非离子型三嵌段共聚物作为模板剂, 异丙醇铝为氧化铝的前驱物, 采用一锅法合成了一系列介孔氧化铝负载镍氧化物、钴氧化物以及镍-钴双金属氧化物催化剂, 并以介孔氧化铝为载体, 采用浸渍法制备了负载Ni-Co 氧化物催化剂. 采用N2吸附-脱附、高分辨透射电镜(HRTEM)、X射线粉末衍射(XRD)、H2程序升温还原(H2-TPR)以及激光拉曼光谱(LRS)等技术对催化剂的结构与性质进行表征, 并考察了催化剂的丙烷氧化脱氢反应性能. 结果表明: 一锅法制备的各催化剂均有大的比表面积和规整的孔道结构, 且负载的金属氧化物高度分散; 而浸渍法制备的催化剂, 其载体的介孔结构被破坏并有Co3O4晶相生成. 在考察的催化剂中, 一锅法合成的介孔氧化铝负载Ni-Co 氧化物催化剂表现出最佳的丙烷氧化脱氢性能. 在450 °C、C3H8:O2:N2的摩尔比为1:1:4和空速(GHSV)为10000 mL·g-1·h-1条件下, 该催化剂上丙烯产率为10.3%, 远高于浸渍法制备的催化剂上所获得的丙烯产率(2.4%). 关联催化剂表征和反应结果, 讨论了催化剂结构与性能之间的关系.  相似文献   

6.
Ni-V-O催化剂上丙烷氧化脱氢制丙烯的反应   总被引:7,自引:0,他引:7  
考察了Ni-V-O系列催化剂对丙烷氧化脱氢反应的催化性能,结合XRD和电导法等表征结果研究了催化剂的物相结构与仙化活性之间的关系。结果表明:同n型半导体氧化物相比,p型半导体具有优良的催化性能,并且丙烯的选择性与催化剂中NiO及Ni3V2O8相的共存有关。适当控制反应条件,452℃时该系列催化剂可达到18.6%的丙烷转化率和49.9%的丙烯选择性。  相似文献   

7.
《中国化学》2017,35(10):1619-1626
A series of SBA‐15‐supported chromia‐ceria catalysts with 3% Cr and 1%–5% Ce (3Cr‐Ce/SBA) were prepared using an incipient wetness impregnation method. The catalysts were characterized by XRD, N2 adsorption, SEM, TEM‐EDX, Raman spectroscopy, UV–vis spectroscopy, XPS and H2‐TPR, and their catalytic performance for isobutane dehydrogenation with CO2 was tested. The addition of ceria to SBA‐15‐supported chromia improves the dispersion of chromium species. 3Cr‐Ce/SBA catalysts are more active than SBA‐15‐supported chromia (3Cr/SBA), which is due to a higher concentration of Cr6+ species present on the former catalysts. The 3Cr‐3Ce/SBA catalyst shows the highest activity, which gives 35.4% isobutane conversion and 89.6% isobutene selectivity at 570 °C after 10 min of the reaction.  相似文献   

8.
 丙烷氧化脱氢反应制备丙稀酸,丙烯醛,由于其巨大的工业价值而成为催化领域研究的热点。该反应也可分为两步实现。即先由丙烷到丙烯,再由丙烯到丙稀酸,丙烯醛。后一步已成功的实现工业化,在低温下( £350℃),使用钒基催化剂,丙稀酸,丙烯醛的产率可高达80%以上。但是,对于前一步,使用迄今为止最有效的V-Mg-O催化剂,在550℃的高温下,丙烯的产率仅为20%。而在如此高的温度下,在紧接着的第二步反应中,大部分的丙烯会直接转化为深度氧化产物(CO2, H2O)。所以,制备一种能在低温下有效实现丙烷氧化脱氢反应制丙烯的催化剂是由丙烷制备高产率的丙稀酸,丙烯醛的另一种途径。\r\n 催化剂V2O5/TiO2最显著的特点是它具有较高的低温催化活性。但是,作为载体材料,TiO2有一些缺点,如比表面较小,热稳定性较差,机械性能较低,抗磨损性较差等。相比之下,载体ZrO2就具有许多TiO2所不具备的优点。第一,ZrO2具有很大的比表面积(>300m2/g),并且在高温下它也能保持较高的比表面积。第二,ZrO2的热稳定性,机械性能和抗磨损性都较好。第三,金属氧化物在ZrO2表面能够得到很好的分散。第四,ZrO2非常稳定,在烷烃氧化脱氢反应的条件下是惰性的,不参加反应。所以,如果向TiO2中掺杂ZrO2进行改性,能极大的提高其载体的表面积,热稳定性,机械性能和抗磨损性。那么复合载体TiO2-ZrO2很可能成为在低温下丙烷氧化脱氢制丙烯的极有潜力的催化剂载体材料。在本文中,我们采用溶胶-凝胶法,用廉价的无机盐作为初始材料制备了一系列不同TiO2/ZrO2质量比的TiO2-ZrO2复合氧化物作为催化剂载体并研究了这些催化剂用于丙烷氧化脱氢反应的催化活性。  相似文献   

9.
CO2 气氛下 MCF 负载氧化钒催化剂上乙苯脱氢反应   总被引:2,自引:0,他引:2  
 以介孔氧化硅泡沫 MCF 为载体合成了一系列负载型氧化钒催化剂 (V 含量为 2%?10%). 采用 N2 吸附、X 射线衍射和 H2 程序升温还原对 V/MCF 催化剂的结构和织构性质进行了表征, 并评价了催化剂在 CO2 气氛下的乙苯脱氢性能. V/MCF 催化剂具有较高的乙苯脱氢活性, 其中 V 含量为 6% 的催化剂具有最高的反应活性. V/MCF 催化剂的乙苯脱氢活性显著高于 V/MCM-41, 这是由于前者具有较高的可还原性以及较好的扩散性能. CO2 气氛下的乙苯转化率明显高于 N2 气氛下的, 这归因于 CO2 与乙苯发生氧化脱氢, 并通过逆水煤气变换反应在线除去脱氢反应生成的氢.  相似文献   

10.
CO2气氛下负载型Cr2O3催化剂上乙苯脱氢制苯乙烯反应   总被引:2,自引:0,他引:2  
 采用浸渍法制备了负载型Cr2O3/Al2O3和Cr2O3/SiO2催化剂,并考察了催化剂在CO2气氛下催化乙苯脱氢制苯乙烯反应的活性. 结果表明,Cr2O3/Al2O3的催化活性高于Cr2O3/SiO2. 这可能是由于Cr2O3在Al2O3载体表面的分散度大大高于在SiO2表面的分散度. 催化剂的催化活性与Cr2O3的负载量有关,在w(Cr2O3)=25%时,Cr2O3/Al2O3的催化活性最高. CO2气氛对乙苯脱氢反应有明显的促进作用; 在CO2气氛下,Cr6+物种可能是催化乙苯脱氢反应活性位的前驱体.  相似文献   

11.
CO2氧化丙烷脱氢制丙烯用Pd-Cu/V2O5-SiO2催化剂的研究   总被引:3,自引:0,他引:3  
 采用等体积浸渍法制备了V2O5-SiO2负载的Pd-Cu双金属催化剂,以程序升温还原/程序升温氧化、红外光谱、程序升温脱附和微反技术表征了Pd-Cu/V2O5-SiO2对CO2和丙烷的化学吸附性能及对CO2部分氧化丙烷脱氢反应的催化性能. 结果表明,在催化剂表面金属活性位(Pd,Cu)和邻近的Vn+协同下形成的CO2卧式吸附态可在172和284 ℃断裂形成CO和晶格氧,以甲基氢和亚甲基氢双位吸附在V=O上的丙烷分子吸附态可在238 ℃脱氢生成丙烯. 在600 ℃,CO2/C3H8体积比为1和空速为1?286 h-1的条件下,丙烷转化率为35.22%,丙烯选择性为85.44%. 催化剂V=O中的晶格氧参与了丙烷氧化脱氢过程.  相似文献   

12.
丙烷在负载型V2O5/Zr3(PO4)4催化剂上的氧化脱氢   总被引:2,自引:0,他引:2  
制备了无定型的磷酸锆Zr3(PO4)4载体,采用浸渍法在载体上负载06%~60%的V2O5.所制备的催化剂在丙烷氧化脱氢反应中具有较好的催化性能,如30%V2O5/Zr3(PO4)4催化剂在丙烷转化率为170%时,丙烯选择性可达538%,丙烯收率达91%.考察了不同反应条件下催化剂的性能.XRD、IR和Raman光谱表明,V2O5在Zr3(PO4)4载体上主要是以高度分散的钒氧物种存在;ESR分析结果证明催化剂中存在V4+物种,表明V5+/V4+参与了氧化还原反应.  相似文献   

13.
Ga2O3催化剂上CO2气氛中丙烷脱氢反应的研究   总被引:1,自引:0,他引:1  
考察了Ga2O3对于丙烷脱氢和CO2气氛脱氢反应的催化性能,结果表明,Ga2O3具有较高的催化活性,其性能优于传统的Cr2O3脱氢催化剂,催化反应可能经过了一个丙烷异裂的过程,其中CO2是通过逆水煤气反应和Boudouard反应来促进催化剂性能的,在高于823K时该促进作用更为明显,催化剂的催化活性和其表面酸密度密切相关,在Ga2O3结构中,四配位Ga^3+是其酸位的来源,并通过质子与氧化物的共同作用促进反应进行,催化剂的失活是由于表面的积碳和活性氧的消耗共同造成的,同时还对Ga2O3作为丙烷脱氢反应的催化剂的催化反应机理进行了初步探讨。  相似文献   

14.
The influence of ketene as possible intermediate for the reaction of methanol to aromatics was investigated over HZSM‐5 catalysts (Si/Al ratio of 15 and 9) using diketene‐acetone (2,2,6‐trimethyl‐4H‐1,3‐dioxin‐4‐one) as ketene precursor under atmospheric pressure at 300 °C. The physicochemical properties of HZSM‐5 catalysts were investigated by NH3‐TPD, BET, XRD and ICP analysis. The distribution of products was measured by GC‐Mass spectrometer. These catalysts exhibit high reactivity and selectivity for the conversion of methanol and/or ketene to hydrocarbons (mostly high octane number xylenes, trimethylbenzenes, tetramethylbenzenes and ≤1.5% benzene). The conversion of neat diketene‐acetone over these catalysts produced aromatics compounds and significant amounts of oxygenated compounds (ketone, carboxylic acid, phenol, furan, pyran and others) depending on Si:Al ratio. These catalysts with high acid content produced small amount of saturated and unsaturated hydrocarbons without releasing significant amount of gas. The ketene and produced oxygenates from ketene appears to act as intermediates for the formation of aromatic compounds.  相似文献   

15.
By simply changing the oxide support, the selectivity of a metal–oxide catalysts can be tuned. For the CO2 hydrogenation over PtCo bimetallic catalysts supported on different reducible oxides (CeO2, ZrO2, and TiO2), replacing a TiO2 support by CeO2 or ZrO2 selectively strengthens the binding of C,O‐bound and O‐bound species at the PtCo–oxide interface, leading to a different product selectivity. These results reveal mechanistic insights into how the catalytic performance of metal–oxide catalysts can be fine‐tuned.  相似文献   

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17.
Summary The dehydrogenation of isobutane to isobutene in the presence of carbon dioxide was carried out over supported vanadium oxide catalysts. The influence of the support on the catalytic performance was investigated. The isobutane conversion and isobutene selectivity in the presence of carbon dioxide were compared with the results obtained during the dehydrogenation reaction in the presence of helium (inert gas). The catalysts were characterized by temperature-programmed techniques (TPR, TPD-NH3, TPD-CO2).  相似文献   

18.
We carried out a theoretical study of the HZSM‐5 zeolite, for different SiO2/Al2O3 ratios, that interacts with the n‐heptane molecule. The study was performed using a QM/MM (quantum mechanics/molecular mechanics) methodology. For the QM part, we have chosen a hybrid Hartree‐Fock density functional theory (DFT). The hybrid ACM/DZP approach, as implemented in Turbomole, was used for the treatment of the QM cluster containing 84 atoms that represents a ring structure model of the zeolite‐n‐heptane interacting system. The MM part was represented by means of an electrostatic forcefield (ESFF), which assesses the electronic embedding. The chosen QM/MM silicalite base model contains 3862 atoms. The studied SiO2/Al2O3 ratios were 2300, 573.5, 287.7, and 189.83, containing 1, 4, 8, and 12 Al atoms, respectively. For the first ratio, the site for the substitution of Al for Si was that of minimum QM total energy value, because this replacement was done in the QM region. For the other SiO2/Al2O3 ratios, the Al atoms were randomly spread through the MM region in accordance with the Lowenstein substitution rule. These results show the importance of the environment on the electronic properties in the QM region, where the active site lies, and their effects on the earlier steps on the activation experienced by the n‐heptane moiety. A minimal content of 12 Al atoms produces significant effects of the environment on the electronic structure of the QM region. Moreover, the carbocationic character of n‐heptane increases with the aluminum content. © 2002 Wiley Periodicals, Inc. Int J Quantum Chem, 2002  相似文献   

19.
采用水热合成法使铁进入分子筛MFI骨架结构,成功合成出含骨架铁的分子筛Na-[Fe]-ZSM-5,并通过离子交换法负载Pt制备脱氢催化剂Pt/Na-[Fe]-ZSM-5。通过正十二烷脱氢反应,研究了该催化剂对长链烷烃脱氢制单烯烃反应的催化性能。采用N2吸附-脱附测试、X射线衍射(XRD)、傅立叶变换红外光谱(FT-IR)、氨气程序升温脱附(NH3-TPD)、吡啶吸附的红外光谱(Py-IR)、CO化学吸附、透射电子显微镜(TEM)等不同方法对催化剂进行了表征。结果表明,通过控制骨架铁含量可调控催化剂表面酸性;含骨架铁的ZSM-5分子筛载体具有抑制负载金属晶粒长大,保持金属高分散度的作用;其负载铂催化剂Pt/Na-[Fe]ZSM-5-50具有表面弱酸中心(0.69 mmol·g^-1)和高分散Pt中心,因而具有良好的长链烷烃脱氢活性、稳定性和单烯烃选择;在转化率稳定在~20%时,TOF为4.56 s^-1,单烯烃选择性为92.7%;在实验范围内,Pt/Na-[Fe]ZSM-5催化剂表面弱酸量和脱氢反应的本征活性(TOF)均随催化剂铁含量的增加而增加。  相似文献   

20.
Silica‐supported Preyssler nanoparticles (H14[NaP5W30O110])/SiO2 are used as a new and recyclable catalyst for the preparation of 1,3‐diaryl‐5‐spirohexahydropyrimidines via a one‐pot condensation of anilines, formaldehyde, and cyclohexanone.  相似文献   

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