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1.
纳米Cr2O3系列催化剂上CO2氧化乙烷脱氢制乙烯反应   总被引:8,自引:0,他引:8  
邓双  李会泉  张懿 《催化学报》2003,24(10):744-750
 采用溶胶-凝胶法和共沸蒸馏法耦合技术制备了纳米Cr2O3催化剂,并采用共沉淀法和共沸蒸馏法耦合技术制备了纳米Cr2O3/Al2O3,Cr2O3/ZrO2和Cr2O3/MgO复合催化剂.应用BET,XRD,XPS,TPR和TEM等物理化学方法对催化剂的结构和物化性质进行了表征,并考察了该系列催化剂上CO2氧化乙烷脱氢制乙烯的反应性能.结果表明,纳米Cr2O3催化剂上乙烷和CO2的转化率均明显高于常规Cr2O3催化剂,但乙烯的选择性低于常规Cr2O3催化剂;纳米复合催化剂中的复合成分显著影响催化剂的催化性能.其中,10%Cr2O3/MgO纳米复合催化剂在温度为973K时,乙烷转化率和乙烯选择性分别可达到61.54%和94.79%.纳米催化剂表面Cr的还原性以及Cr6+/Cr3+比值是影响乙烷转化率和乙烯选择性的重要因素.  相似文献   

2.
制备了一系列不同Co/Cr比例的Co-Cr/SiO2和Co-Cr/γ-Al2O3催化剂,并应用XRD等技术对所制样品进行了表征.在常压连续流动固定床石英反应器中考察了它们对CO2乙烷氧化脱氢反应的催化性能.实验结果表明,Co-Cr/SiO2和Co-Cr/γ-Al2O对CO2乙烷脱氢制乙烯都有较高的催化活性,其活性都明显高于负载单一组分的催化剂.以γ-Al2O为载体的催化剂活性明显比以SiO2为载体的催化剂活性高.1%Co-5%Cr/γ-Al2O活性最高,973K乙烷的转化率达25.57%,乙烯的选择性和收率分别达94.28%、24.10%.  相似文献   

3.
采用直接水热合成法和浸渍法制备了相同Cr含量的Cr/Si-2催化剂,并在常压固定床微反应器上,考察了它们在CO2或者N2气氛下的乙烷脱氢制乙烯反应中的催化性能及稳定性.由于存在逆水煤气反应和Boudouard反应,CO2能显著促进乙烷的脱氢反应.不论是在CO2还是在N2气氛下,直接水热法制备的催化剂均比浸渍法制备的催化剂显示出更好的催化性能.高价态的Cr物种被认为是催化剂具有高活性的关键.在CO2气氛下的乙烷脱氢制乙烯反应中,浸渍法制备的催化剂比水热法制备的催化剂失活更快,催化剂失活速率的差异可能与它们的氧化还原性质有关.然而在N2气氛下的乙烷脱氢制乙烯反应中,这两种方法制备的催化剂失活速率差异不大.  相似文献   

4.
葛欣  沈俭一 《化学通报》2003,66(10):658-660
研究了乙烷脱氢与逆水煤气变换耦合制乙烯反应中助剂对Fe/SiO2催化剂活性的影响。结果表明,添加氧化物助剂有利于反应,Fe-Mn/K^ -SiO2催化剂显示较高的活性和选择性,在740℃时,乙烷转化率和乙烯选择性分别为37.3%和98.6%。二氧化碳的作用是消除积炭以及与氢反应以提高乙烷的脱氢反应转化率。XPs表明催化剂表面存在 3价铁和 4价锰物种。  相似文献   

5.
室温晶化合成了掺杂不同Cr含量的Cr–MCM–41分子筛。应用XRD、FT-IR和DRS UV–Vis等技术对所制样品进行了表征。表征结果表明,用室温晶化法能合成较好结构的Cr–MCM–41分子筛,掺杂的Cr除了进入MCM–41分子筛骨架中,还弥散或高度分散在分子筛表面。在常压连续流动固定床反应器上考察了它们对乙烷和CO2氧化脱氢制乙烯反应的性能。实验结果表明,5%Cr-MCM-41在973K可使乙烷的转化率达到43.27%,乙烯的选择性达到86.70%、收率达到37.51%。Cr的掺杂量、反应温度等条件对该反应均有一定影响。Cr3+是催化活性中心。  相似文献   

6.
采用浸渍法在γ-Al2O3载体上分步负载改性剂Mn2O3和活性组分CuO,制备了一系列不同配比的CuO/Mn2O3/γ-Al2O3催化剂,并运用CO+O2模型反应、XRF、XRD、H2-TPR、in-situ FTIR等手段表征了催化剂的活性和物理化学性质。活性测试结果表明,锰氧化物对γ-Al2O3载体的改性能有效地提高CuO/γ-Al2O3催化剂在CO+O2模型反应中的催化活性。XRD结果表明,锰氧化物对γ-Al2O3载体的改性可以促进氧化铜在载体表面的分散,从而提高了分散态氧化铜的含量,不过这与活性变化的趋势并不完全一致。进一步结合H2-TPR、in-situ FTIR表征结果 ,我们发现,分散态铜、锰氧化物的还原性质也是影响其催化活性的重要因素,催化剂中分散态铜、锰物种越容易被还原,其对CO+O2模型反应的催化活性就越高。  相似文献   

7.
掺杂铁酸盐的制备、结构及其催化分解CO2成C的性能   总被引:3,自引:0,他引:3  
采用混合离子共沉淀法制备掺杂铁酸盐,采用XRD,TGA和H2-TPR等手段对其结构进行了表征,并考察了其直接催化分解CO2成C的性能.研究结果表明,用混合离子共沉淀法能够制备出纳米级晶粒、且为单一尖晶石结构的Cr3+掺杂的NiFe2O4.所掺杂的Cr3+进入NiFe2O4的晶格B位,极大地促进了NiFe2O4在还原氧化过程中结构的稳定性,分解CO2反应后,NiFe2O4的结构易恢复,从而明显地提高了其分解CO2成C反应的循环寿命(35次以上)和积炭量(25.3%).  相似文献   

8.
CO2氧化丙烷脱氢MoO3-V2O5/SiO2催化剂研究   总被引:4,自引:0,他引:4  
采用表面改性和等体积浸渍法制备了MoO3-V2O5/SiO2复合氧化物,采用TPR、IR、TPD和微反技术表征了催化剂对CO2和C3H8的吸附性能和CO2部分氧化丙烷脱氢的反应性能.结果表明:随MoO3加入量的增加,V=O还原温度降低,晶格氧更易活化.CO2和丙烷的活化温度降低,丙烷转化率增高,丙烯选择性下降.V=O中晶格氧的活化是CO2氧化丙烷制丙烯反应的关键.  相似文献   

9.
以Na2SiO3为硅源, 非离子型表面活性剂脂肪醇聚氧乙烯醚A(EO)9为模板剂合成了介孔Cr-MSU-1, 并通过XRD、HRTEM、N2吸附-脱附、FT-IR和DR UV-Vis等手段对其进行了表征. 结果表明, Cr进入了介孔MSU-1骨架中, 并大部分以四配位的Cr(VI)形式存在. 将Cr-MSU-1作为催化剂用于CO2氧化乙烷脱氢反应, 表现出了良好的催化活性, 650 ℃下乙烷的转化率和乙烯的选择性分别为31.7%和96.1%.  相似文献   

10.
以共沉淀法制备CeO2-Co3O4复合氧化物,研究复合氧化物CeO2-Co3O4低温催化氧化CO的性能。通过采用热重分析(TG)、比表面积测试(BET)、X射线衍射分析(XRD)、程序升温还原(TPR)以及原位红外漫反射(FT-IR)等表征手段,详细探讨了铈含量对于复合氧化物CeO2-Co3O4低温催化氧化CO性能的影响。结果表明:复合氧化物CeO2-Co3O4催化氧化CO的性能明显优于单一氧化物CeO2和CO3O4,  相似文献   

11.
Study of the catalytic properties of the VMoTeNbO catalyst in the oxidative conversion of ethane to ethylene at pressures of 0.1 to 2.1 MPa demonstrated that the pressure positively affects the conversion of ethane and favors formation of oxygen -containing products of deep and partial oxidation: carbon oxides and acetic acid, respectively. With increasing pressure, the yield of the product of oxidative dehydrogenation of ethane, i.e., ethylene, decreases.  相似文献   

12.
Oxidative transformations of the ethane–ethylene fraction of oil refinery gases, containing 20 vol % C2H4, on VMoTeNb oxide catalyst in the temperature interval 330–450°C were studied. Comparison with oxidative transformations of the individual components (oxidative dehydrogenation of C2H6 and oxidation of C2H4) shows that ethylene does not noticeably influence the ethane conversion, whereas ethane strongly suppresses the ethylene conversion. The maximal yield of ethylene from the ethane–ethylene fraction is close to that reached in oxidative dehydrogenation of ethane under similar conditions and amounts to 70–72%.  相似文献   

13.
董雁春 《化学通报》2024,87(2):226-234
在碳中和及全球能源供需版图调整的背景下,乙烯生产原料轻质化成为主流趋势。乙烷脱氢制乙烯技术具有低能耗、低碳排、流程短、收率高、成本低等优势,但目前工业上主要通过乙烷蒸汽裂解法生产乙烯,其他方法工业化生产相对不成熟。本文简述了近年来乙烷脱氢制乙烯技术(包括直接催化脱氢、O2辅助氧化脱氢、CO2辅助氧化脱氢、化学链氧化脱氢、催化膜反应器脱氢等)工艺及催化剂的研究现状,同时介绍了其它新兴工艺及催化剂。乙烷脱氢制乙烯技术现阶段面临的挑战不仅在于开发更高效的催化剂及更低能耗的技术,更需要突破乙烷脱氢热力学平衡的限制设计合适的反应路径,其中催化膜反应器脱氢、化学链氧化脱氢工艺都具有非常广阔的市场和工业化发展前景。  相似文献   

14.
Several metal oxides supported on sulfated zirconia catalysts were tested for the oxidative dehydrogenation of ethane into ethylene by carbon dioxide. It is found that the catalytic behavior of supported oxide catalysts differ depending on the nature of metal oxides. Chromium oxide-sulfated zirconia exhibits the highest ethane conversion and medium level of ethylene selectivity, producing 38% ethylene yield at 50% ethane conversion at 650°C.  相似文献   

15.
Highly active catalysts for oxidative dehydrogenation of ethane with CO2 were characterized by temperature-programmed reduction (TPR), temperature-programmed oxidation (TPO), Fourier transform infrared (FTIR) spectroscopy, and X-ray absorption fine-structure (XAFS) analysis. In the active catalysts, Cr/H-ZSM-5 (SiO2/Al2O3 > 190), Cr6+ = O, or possibly Cr5+ = O was the catalytic species on the zeolite support. In contrast, little Cr6+ (or Cr5+) was detected in the less-active catalysts. The Cr6+ (or Cr5+) species was reduced to an octahedral Cr3+ species by treatment with ethane at 773 K, and the reduced Cr species was reoxidized to the Cr6+ (or Cr5+) species by treatment with CO2 at 673-773 K. The Cr redox cycle played an important role in the catalyst's high activity.  相似文献   

16.
A dehydrogenation anode is reported for hydrocarbon proton conducting solid oxide fuel cells (SOFCs). A Cu-Cr(2)O(3) nanocomposite is obtained from CuCrO(2) nanoparticles as an inexpensive, efficient, carbon deposition and sintering tolerant anode catalyst. A SOFC reactor is fabricated using a Cu-Cr(2)O(3) composite as a dehydrogenation anode and a doped barium cerate as a proton conducting electrolyte. The protonic membrane SOFC reactor can selectively convert ethane to valuable ethylene, and electricity is simultaneously generated in the electrochemical oxidative dehydrogenation process. While there are no CO(2) emissions, traces of CO are present in the anode exhaust when the SOFC reactor is operated at over 700 °C. A mechanism is proposed for ethane electro-catalytic dehydrogenation over the Cu-Cr(2)O(3) catalyst. The SOFC reactor also has good stability for co-generation of electricity and ethylene at 700 °C.  相似文献   

17.
溶胶-凝胶法制备Cr-基催化剂及其CO2氧化乙烷制乙烯   总被引:1,自引:0,他引:1  
以硝酸铬为Cr源,正硅酸乙酯为Si源,采用溶胶-凝胶法制备了Cr质量分数为2.5%~10%的Cr-基催化剂;采用XRD、BET、SEM、H2 TPR等分析测试技术对催化剂的结构进行了表征;在微型固定床反应器中对催化剂乙烷二氧化碳氧化脱氢制乙烯的催化性能进行了评价,并考察了反应条件对催化性能的影响。结果表明,催化剂中Cr的质量分数大于5%时,Cr的物相为Cr2O3,但Cr质量分数较低时,检测不到Cr的物相;Cr质量分数为5%的催化剂具有较大的比表面积,Cr质量分数变大或变小,催化剂的比表面积都会减小;催化剂的孔径在2nm左右,并与Cr的质量分数关系不大;Cr质量分数为5%的催化剂具有最好的催化活性,在750℃的反应条件下,乙烷和二氧化碳的转化率可达79.29%和23.74%,乙烯的收率可达67.91%;Cr质量分数为5%的催化剂具有适宜的氧化还原性能,这有利于乙烷和二氧化碳的转化。  相似文献   

18.
lntroductionThesmallolefinslikeethylene,propeneandbutenearethec0mmerciallydesirablepetrochemicalfeedstocksandarefoundincreasingusageinchemicalindustry.Theyareusuallyobtainedfromthepyrolysis0fpetroleumhydrocarb0nswithsteaInatveryhightemPeratUreandarealsoavailablefromFCCprocess.TheimProvedFCCcatalystforeIhancingtheolefinproducthasbeenreportedll].However,FCCisalrnostimPossiblefortheshortchainalkanefeedstockscutfrompetroleum0robtuinedfromrefinerygasornatUralgassincecrackingofhydrocarbonsbeco…  相似文献   

19.
A Ni-La/SiO2 catalyst was prepared through the incipient wetness impregnation method and tested in the oxidative dehydrogenation of ethane (ODHE) with CO2. The fresh and used catalysts were characterized by XRD and SEM techniques. The Ni-La/SiO2 catalyst exhibited catalytic activity for the oxidative dehydrogenation of ethane, but with low ethylene selectivity in the absence of methane. The selectivity to ethylene increased with increasing molar ratio of methane in the feed. The carbon deposited on the catalyst surface in the sole ODHE with CO2 was mainly inert carbon, while much more filamentous carbon was formed in the presence of methane. The filamentous carbon was easy to be removed by CO2, which might play a role in improving the conversion of ethane to ethylene. The introduction of methane might affect the equilibrium of the CO2 reforming of ethane and the ODHE with CO2. As a consequence, the synthesis gas produced from CO2 reforming of methane partly inhibited the reaction of ethane and promoted the ODHE with CO2, thus increasing the selectivity of ethylene.  相似文献   

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