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1.
页岩气革命为低碳经济发展提供了重要契机.在低碳烷烃(甲烷和乙烷)催化转化过程中,以二氧化碳作为氧化剂参与反应,通过C–H键的选择性活化可将页岩气转化为优质化工原料——合成气和乙烯,是一种低碳烷烃转化与二氧化碳资源化利用的工艺路线.本文总结了近年来甲烷干重整与乙烷和二氧化碳反应中与C–H键活化相关的研究进展,分析了甲烷干重整中镍基催化剂积碳及乙烷和二氧化碳反应中产物选择性的主要影响因素,并对该研究未来的发展方向进行了展望.  相似文献   

2.
本文以低碳烷烃的选择催化氧化反应为对象,对几种CO2选择氧化低碳烷烃的反应工艺进行了归纳总结,重点分析讨论了催化氧化反应中CO2作为氧化剂的作用机制,并提出了研究展望。  相似文献   

3.
The catalytic stability of LiCl/MnOx/PC catalyst have been investigated, the deactivation mechanism was discussed. The experimental results show that ethane conversion decreases and ethylene selectivity keeps about 90% as reaction time increases. The main deactivation reasons of LiCl/MnOx/PC catalyst for oxidative dehydrogenation of ethane (ODHE) to ethylene are the transition of active species Mn2O3 to MnO species and the loss of active component Cl in catalyst. Instead of ethane with FCC tailed‐gas, the stability of LiCl/MnOx/PC catalyst has been largely improved.  相似文献   

4.
The recent shale gas boom combined with the requirement to reduce atmospheric CO2 have created an opportunity for using both raw materials (shale gas and CO2) in a single process. Shale gas is primarily made up of methane, but ethane comprises about 10 % and reserves are underutilized. Two routes have been investigated by combining ethane decomposition with CO2 reduction to produce products of higher value. The first reaction is ethane dry reforming which produces synthesis gas (CO+H2). The second route is oxidative dehydrogenation which produces ethylene using CO2 as a soft oxidant. The results of this study indicate that the Pt/CeO2 catalyst shows promise for the production of synthesis gas, while Mo2C‐based materials preserve the C? C bond of ethane to produce ethylene. These findings are supported by density functional theory (DFT) calculations and X‐ray absorption near‐edge spectroscopy (XANES) characterization of the catalysts under in situ reaction conditions.  相似文献   

5.
The oxidative dehydrogenation of ethane into ethylene by CO2 over a series of silica-supported chromium oxide catalysts was investigated. The results showed that the catalysts were effective for the reaction and CO2 in the feed promoted the catalytic activity. The 5%Cr/SiO2 catalyst exhibited the excellent performance with 30.7% ethane conversion and 96.5% ethylene selectivity at 700oC. ESR and UV-DRS were used to probe the active sites and the species with high valent states (Cr5+ and/or Cr6+) were found to be important for the reaction.  相似文献   

6.
Oxidative dehydrogenation of ethane (ODHE) to ethylene was investigated over a series of alumina supported molybdophosphoric acid (MPA) catalysts. The MPA was transformed into surface Mo oxides on Al2O3 when subjected to calcination at 600°C. The catalysts were characterized by N2-adsorption, XRD, FT-IR spectroscopy and TPR techniques. The results showed that MPA loading and the source of Mo precursor had a clear influence on the catalytic performance. The evaluation of the catalysts for ODHE at temperatures between 450 and 550°C revealed superior ethane conversion (X~24%) and ethylene selectivity (S = ca. 65%) over 20 wt % MPA/Al2O3 catalyst. The transformation of MPA into finely dispersed Mo oxides on Al2O3 appeared to be responsible for this improved performance.  相似文献   

7.
氧化镍与载体相互作用对乙烷氧化脱氢的影响   总被引:5,自引:0,他引:5  
研究了担载型催化剂NiO/γ-Al2O3的乙烷氧化脱氧(ODHE)性能,发现在400-500℃的考察温区内,担载型NiO较纯NiO的乙烯选择性有较大提高,保持在80%~90%之间,其中含17%Ni的样品500℃时乙烷的转化率为31%,乙烯选择性达82%.XRD、H2-TPR及原位磁测量结果表明:催化剂的活性相是与载体相互作用较小的、处于表层的微晶态NiO,NiO中非化学计量氧仍为活性氧物种.催化剂焙烧温度的提高,一方面降低了活性相中非化学计量氧量,同时加剧了NiO与载体γ-Al2O3的相互作用,二者均使活性降低.O2-TPD研究表明:与纯NiO相比,在Nio/γ-Al2O3中,其非化学计量氧的脱附温度发生变化,其中,α氧脱附温度向低温移动约50℃,而对乙烯选择性有关的β氧的脱出则向高温区移动了约200℃,正好与反应温区对应,进一步证实非化学计量氧与ODHE反应之间存在对应关系,上述结果表明那些对氧化镍还原有一定的阻碍作用,尤其阻碍镍深度还原(Ni2 →Nio)的载体对促进反应的乙烯选择性是有利的.  相似文献   

8.
The Zr-Ni-O catalyst prepared by the sol-gel method exhibits a significantly enhanced ethylene selectivity and ethane cleavage-resistant ability for the ODHE reaction. The characterization results by XRD, XPS and TPR indicate that a relative strong interaction exists between ZrO2 and NiO.  相似文献   

9.
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   

10.
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   

11.
The catalytic properties of Pt, Zn, and Ga deposited on supports of various natures (Al2O3, SiO2, NaZSM, and HZSM) in the dehydrogenation and aromatization of ethane were investigated. Pt-containing catalysts are the most active in the conversion of ethane: the selectivity with respect to ethylene is 25–87 % depending on the nature of the support. In the presence of Zn- and Ga-containing catalysts the yield of ethylene is 2–3 times lower than with Pt-catalysts. With HZSM modified by Pt, Zn, or Ga aromatic hydrocarbons (ArH) and methane are the main products of ethane transformation. Ga/HZSM is the most efficient catalyst of the aromatization of ethane under the conditions studied (550 °C, 120 h–1).Translated fromIzvestiya Akademii Nauk. Seriya Khimicheskaya, No. 4, pp. 606–609, April, 1994.  相似文献   

12.

The effect of the HF modification of ferrospheres separated from fly ash after the combustion of brown coal on their chemical, phase compositions and catalytic properties in the oxidative coupling of methane was studied. The modification led to a change in the phase composition in comparison with that of the initial ferrospheres: a CaF2 phase appeared, the hematite phase content increased, and the ferrospinel content decreased. The yield of C2 hydrocarbons at 750°C increased by a factor of 1.5–2.0, and the fraction of ethylene in them increased to 30 or 65% at 750 or 850°C, respectively. It was assumed that an increase in the efficiency of HF-modified ferrospheres in the formation of ethane and its dehydrogenation into ethylene was due to the formation of oxyfluoride-type active sites. The pyrohydrolysis of fluorine-containing catalyst components at 850°C due to interaction with water vapor in a reaction atmosphere led to the formation of systems active in deep oxidation; this manifested itself in a sharp decrease in selectivity for the formation of C2 hydrocarbons and an increase in selectivity for CO2.

  相似文献   

13.
The dehydrogenation of ethane to ethylene under CO2 over mesoporous Cr-MSU catalyst was investigated with respect to the time on-stream behavior. When ethane was allowed to react for about 240 min, the meso-structure of catalyst remained nearly unchanged in spite of some decrease of surface area. The Cr(VI) species in tetrahedral coordination in fresh Cr-MSU were reduced to Cr(III) species in octahedral coordination, that was expected to cause the activity decrease of catalyst, together with the structure change. Cr(VI) is more active than Cr(III) for ethane dehydrogenation with CO2, but Cr(III) represent fairly stable active centers for the reaction. The article is published in the original.  相似文献   

14.
郁风驰  吴雪娇  张庆红  王野 《催化学报》2014,35(8):1260-1266
报道了一种HCl存在时温和条件下的乙烷氧化脱氢制乙烯催化转化新途径. 研究发现,在多种金属氧化物催化剂中,CeO2呈现最佳乙烯生成的催化性能. 与纳米粒子相比,具有棒状和立方体状形貌的CeO2纳米晶具有较高的乙烷转化率和乙烯选择性. 以MnOx修饰CeO2可进一步提高催化性能. 在8 wt% MnOx-CeO2催化剂上,723K反应2 h时乙烷转化率和乙烯选择性分别为94%和69%. 该催化剂性能稳定,反应100 h乙烯收率可保持在65%-70%. HCl的存在对乙烯的选择性生成起着至关重要的作用,一部分乙烯来自于氯乙烷的脱HCl反应.  相似文献   

15.
Methane decomposition over metal oxides/SiO2 surface was investigated. At 1400 K obtained product distribution of this decomposition varied with metal oxide used. The effectiveness of these catalysts has been discussed in terms of activity and C2 selectivity. ThO2/SiO2 was found to be the most effective catalyst for the catalytic decomposition of methane. Positive catalytic effect of ThO2/SiO2 on the pyrolysis has also been confirmed at 1073 K. At low reaction conversions, ethane and ethylene are found as major products. Yields of ethylene and other unsaturated products are sensitively inhibited by NO impurities in the methane. A reaction mechanism has been proposed to account observed experimental results.  相似文献   

16.
Liu  Yan  Xu  Zhanlin  Cheng  Tiexin  Zhou  Guangdong  Wang  Junxia  Li  Wenxing  Bi  Yingli  Zhen  Kaiji 《Kinetics and Catalysis》2002,43(4):522-527
The amount of carbon deposited on hexaaluminate LaNiAl11O19 catalyst in CH4 decomposition and CO2 reforming of methane was determined by means of thermogravimetric analysis (TGA). The properties of carbon formed on the catalysts were characterized by X-ray photoelectron spectroscopy (XPS), temperature-programmed CO2 reaction (TPR-CO2), and temperature-programmed oxidation (TPO) techniques. The experimental results showed that hexaaluminate LaNiAl11O19 catalyst possessed high resistance to carbon deposition in CO2 reforming of methane to synthesis gas at high temperatures, and CO2 played an important role in eliminating carbon during the reaction. At least two forms of the deposited carbon, graphite and carbide, were produced during methane reforming with CO2.  相似文献   

17.
本文以低碳烷烃的选择催化氧化反应为对象 ,对几种 CO2 选择氧化低碳烷烃的反应工艺进行了归纳总结 ,重点分析讨论了催化氧化反应中 CO2 作为氧化剂的作用机制 ,并提出了研究展望。  相似文献   

18.
乙烷在氧化镍上催化氧化脱氢的反应机理研究   总被引:7,自引:0,他引:7  
陈铜  李文钊  于春英 《化学学报》1999,57(9):986-991
应用O~2-TPD,脉冲实验,原位Weiss磁测量以及TAP(temporalanalysisofproducts)技术对NiO上的乙烷氧化脱氢制乙烯催化作用机理进行了研究。结果表明,NiO中的非化学计量氧表现出与气相氧交换的可逆性,其中在较低温度下脱附的α氧(很可能是O~2^-,O~2^2^-)仅存在于催化剂表面,与气相氧交换迅速,而较高温下脱附的β氧(很可能是O^-)不仅存在于催化剂表面,还存在于催化剂体相。β氧较α氧表现出更高的乙烯选择性。在反应条件下,Ni均应处于高氧化态(Ni^(^2^+^δ^)^+,0≤δ≤1),一旦催化剂中有微量Ni^0生成,乙烷便发生裂解反应,乙烯选择性立即降为零。乙烷在NiO上的氧化脱氢(ODHE)的可能反应机理为:首先乙烷与NiO中的非化学计量氧O~n(~s~)作用脱除一个α-H生成乙基自由基,然后进一步脱除一个β-H生成乙烯,乙烯生成的整个过程是在催化剂表面上进行的;副产物CO~2是由表面乙烯进一步氧化(很可能是与O~2^-,O~2^2^-作用)生成的。失去O~n~(~s~)的NiO在反应体系(一定的氧分压)中,重新生成含非化学计量氧的NiO。  相似文献   

19.
Electrochemical conversion of CO2 into ethane is seldom observed because of the generally higher selectivity towards methane, ethylene, and ethanol. Consequently, little experimental evidence for its reaction mechanism exists and thus remains largely unknown. Now, by combining electrochemistry with in situ X-ray absorption fine-structure and in situ Raman techniques, iodide-derived copper (ID-Cu) and oxide-derived copper (OD-Cu) systems were studied to obtain a deeper understanding of the CO2 to ethane mechanism. With trace iodine species on the surface and positively charged Cu species, production of ethane is significantly more favored on ID-Cu compared to OD-Cu, with higher selectivity and faster kinetics. For the first time, it is experimentally found that the formation of ethane follows the same pathway to ethylene and ethanol, and better stabilization of the late stage ethoxy intermediate can steer the reaction to ethane over ethanol.  相似文献   

20.
通过N2吸附、X射线衍射(XRD)、X射线光电子能谱(XPS)、H2程序升温还原(H2-TPR)、CO2程序升温脱附(CO2-TPD)和热重分析(TGA)等多种表征手段和催化反应性能评价,研究了铈助剂的添加对V/SiO2催化CO2氧化乙苯脱氢性能的影响. 结果表明,Ce助剂不仅提高了催化剂活性组分分散性和氧化还原性能,抑制了钒物种的深度还原,而且增强了催化剂碱性和CO2吸附能力,减缓了积炭生成,从而显著提高了V-Ce/SiO2对CO2氧化乙苯脱氢反应的催化活性和稳定性. 在本实验中,V(0.8)-Ce(0.25)/SiO2催化剂表现出最佳的催化性能,苯乙烯(ST)收率可达55.6%,选择性为98.5%,反应12 h 后,催化剂活性基本不变,与惰性N2气氛比较,CO2明显促进了乙苯脱氢反应,归因于CO2能保持催化剂表面钒物种的高价态.  相似文献   

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