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1.
采用改进的Pechini法合成了(Ba,Ca)(Co,Fe)O3-δ系列材料,对其结构,透氧量及透氧稳定性进行了考察,结果表明,材料具有较高的透氧量和透氧稳定性,其中Ba0.95Ca0.05Do0.8Fe0.2O3-δ在950℃透氧量高达1.4ml/(cm^2.min),850℃稳定操作160h以上,将其应用于膜反应器,对无催化剂的甲烷氧化偶联反应作了尝试,结果表明,对甲烷氧化偶联反应具有较高的选择,但甲烷转化率较低。  相似文献   

2.
采用等温理论模型,以甲烷催化氧化制合成气为模型反应,模拟非担载钙钛矿型致密透氧膜反应器的性能。分别研究了La_0.2Ba_0.8Fe_0.8Co_0.2O_(3-δ)、L30.2Sr0.8Fe0.8Co0.2O3-δ和SrFeCo0.5Ox三种透氧速率不同的膜材料、膜反应器的尺寸以及反应工艺条件对CH4转化率、CO选择性和H2/CO摩尔比的影响,对膜反应实验具有指导意义。  相似文献   

3.
Ni/Al2O3催化剂上甲烷部分氧化制合成气   总被引:19,自引:2,他引:19  
研究了Ni/Al2O3催化剂对甲烷部分氧化制合成气的反应性能.结果表明,催化剂在其活性组份Ni为10%时反应性能最好.条件实验表明,在600~900℃范围内,甲烷转化率和CO、H2的选择性随温度升高而增加;转化率和选择性在甲烷空速≤1.5×105h-1时基本不变,空速>1.5×105h-1时,转化率和选择性有所下降.随着压力的增加(0.05~0.40MPa),转化率和选择性下降.SEM和化学分析结果证明在反应过程中,Ni组份存在烧结和流失现象.  相似文献   

4.
采用溶胶-凝胶(Sol-Gel)法制备了微孔结构均匀的“SiO2/陶瓷”膜和“Mo-Co-O/SiO2/陶瓷”催化功能膜,并用XRD、SEM和孔径测定等技术进行了表征。在常压,500~700℃的条件下,在催化膜反应器(CMR)中考察了甲烷氧化制甲醇的反应。在相似的反应条件下(转化率为1.0%),用CMR(甲醇选择性1?.2%)可获得较固定床反应器(甲醇选择性4.5%)高得多的甲醇选择性。  相似文献   

5.
甲烷直接氧化制甲醇Ⅱ.催化膜反应器(CMR)   总被引:1,自引:0,他引:1  
采用溶胶-凝胶(Sol-Gel)法制备了微孔结构均匀的“SiO_2/陶瓷”膜和“Mo-Co-·O/SiO_2/陶瓷”催化功能膜,并用XRD、SEM和孔径测定等技术进行了表征。在常压、500~700℃的条件下,在催化膜反应器(CMR)中考察了甲烷氧化制甲醇的反应。在相似的反应条件下(转化率为1.0%),用CMR(甲醇选择性11.2%)可获得较固定床反应器(甲醇选择性4.5%)高得多的甲醇选择性。  相似文献   

6.
用溶胶-凝胶法制备了“SiO_2/陶瓷”非对称无机膜,并用该膜制备了反应气吹扫催化膜反应器(RSCMR)装置。在RSCMR上考察了甲烷一步催化氧化制甲醇反应。结果表明,在研究的范围内,增加氧气或甲烷的浓度和吹扫气的流速(即总的反应气流量)有利于提高甲醇的收率;甲醇在反应条件下的热不稳定性是影响目标反应选择性的重要原因。RSCMR较膜反应器(CMR)系统能更有效地抑制甲醇的热分解,因而可得到较CMR更高的甲醇收率。当反应温度为700℃时,甲醇的收率在CMR中为0.5g/m ̄2h,在RSCMR中可达0.9g/m ̄2h。  相似文献   

7.
新型混合导体透氧膜的制备及其在甲烷转化反应中的应用   总被引:1,自引:0,他引:1  
用EDTA 柠檬酸联合络合法合成了新型混合导体透氧膜材料 ,成功地制备了致密膜片并对其透氧性能进行了考察 .结果发现 ,此新材料具有非常大的透氧能力 ,850℃时在膜一端为干燥的流动空气而另一端为流动的氦气下 ,透氧量高达 0 744μmol/(cm2 ·s) .考察了膜片本身对甲烷的活化性能 ,发现导体膜对甲烷氧化偶联具有催化活性 ,随着甲烷流速的增加 ,甲烷转化率降低 ,而C2 选择性升高 .研究了膜反应器中甲烷部分氧化制合成气反应 ,甲烷转化率约为 90 % ,CO选择性约为 98% ,CO/H2 比约为 2 ;同时 ,膜的透氧量急剧增加到约 6 0 1 μmol/(cm2 ·s) ,这归结于膜反应侧氧分压的急剧降低 .  相似文献   

8.
用溶胶-凝胶法制备了“SiO2/陶瓷”非对称无机膜,并用该膜制备了反应气吹扫催化膜反应器(RSCMR0装置。在RSCMR上考察了甲烷一步催化氧化制甲醇反应。结果表明,在研究的范围内,增加氧气或甲烷的浓度和吹扫气的流速(即总的反应气流量)有利于提高甲醇的收率;甲醇在反应条件下的热不稳定性是影响目标反应选择性的重要原因。RSCMR较膜反应(CMR0系统能更有效地抑制甲醇的热分解,因而可得到较CMR更高  相似文献   

9.
探讨了焙烧温度对钙钛矿型复合氧化物LaTi1-yLiyO3-λ(0≤y<1)为主要物相的LiLa0.5Ti0.5O2+λ催化剂的结构及甲烷氧化偶联反应活性的影响机制,用XRD、IR、XPS和BET等方法对催化剂进行表征。结果表明,焙烧温度对催化剂的OCM反应活性的影响是双重的。提高焙烧温度有利于Li+进入LaTiO3晶格(或间隙)产生更多数量的氧空位,进而产生更多的活性氧种,有利于OCM反应的进行,但过高的焙烧温度又使催化剂的结构(或物相)发生变化,因而使Li+的取代量、比表面积和甲烷转化率均下降。  相似文献   

10.
用X射线衍微法测定了由η^5-MeO2CC5H4(CO)3MoNa和〔(η^5-MeO2CC5H4)(CO)2W〕Fe-(CO)3Co(CO)3(μ3-S)的等瓣置换反应所生成的手性簇合物-〔(η^5-MeO2CC5H4)(CO)2Mo〕-〔(η^5-MeO2CC5H4)(CO)2W〕Fe(CO)3(μ3-S)的分子结构及晶体结构。晶体属P1空间群,晶胞参数a=0.87162(5)nm,b=0.8  相似文献   

11.
Two completely different directions of the oxidative transformation of methane (OTM) were performed on nickel-based catalysts due to the different acid-base properties of those catalysts. The relatively acidic LaNiOx and LiNiLaOx/Al2O3 catalysts exhibit excellent Partial Oxidation of Methane to Syngas (POM) performance. However, the relatively basic LiNiLaOx catalyst has a good Oxidative Coupling of Methane to C2 Hydrocarbons (OCM) activity. The basic properties of the catalyst makes it difficult to reduce nickel and keeps it in the oxidized state. Reduced nickel is necessary for POM and oxidized nickel for the OCM reaction.  相似文献   

12.
1yttroductionIMcthancactivationisoncofthemostintriguingsubjectsinheterogencouscatal}'sisbccauscmcthancisathcrmod}namicall}'stabIccompoundt`ithanoblcgas-likeconfiguration.0fintcrcstsisthcrcccntt"orkreportcdb}'KocrtsIll,BeIguedl21.andYanl3ltthosucccssfull}'convcrtnaturalgasintohighcrh}.drocarbonsb}'thctt"o-stcproutcinwhichnaturalgasisfirstthcrmall}'activatcdonthctransitionmctalcatal}.stsatmoderatctemperature.Toasccrtainthcnaturcofrcactionsofmcthane.thcactivationofmcthaneisextensivel)'invcstiga…  相似文献   

13.
The exoergic reactions, which underlie the production of large-scale basic chemicals for organic industry, can be used for one-pot generation of energy and chemical products. Typical examples include methane oxidative conversion to produce synthesis gas and methane oxidative dimerization to give ethylene and ethane.  相似文献   

14.
Introduction0ncofthcintriguingpr0blcmsinhctcrogcncouscatal}'sisisthcactit'ationanddircctconversionofmcthancintoliquidfucIanduscful.h..i..l,lllMcthancactivationisvcry'difficultbccauscn1cthancisathcrmod}'namicalI}'stablccompoundt`ithanoblcgas-likcconfigurati0nThcvcry'strongtctrahcdralC-Hbonds(435kJ/mol)offcrnofiJnctionalgroups,magncticm0mcnts'orpolardistortionstofacilitatcchcmicalattackThismakcsmcthanelcssrcactivcthanncarl}'allitsconvcrsionproducts.Rccentl}'oxidativccouplinghasbecnconsidcrcda…  相似文献   

15.
Summary Carbonization of the surface of alumina-based catalysts has been studied with respect to the composition of the catalysts and conditions of the propionitrile ammonolysis. It was shown that the surface concentration of carbon increases with the increase in temperature and with time of the reaction and depends on the catalysts nature in the order: Al-Zr(5)-O < Al-Zr(40)-O < Al-O < Al-Mg-O. The surface concentration of the Brönsted acidic sites follows the same sequence.  相似文献   

16.
Both acidity and structure of the support are important factors in converting methane to aromatics. Lower SiO2/Al2O3 ratio seems to favor the aromatization of methane over the Mo/HZSM-5 catalyst. When Pt is added as a modifier the activity of Mo/HZSM-5 catalyst will decrease slightly, but coke formation will enhanced.  相似文献   

17.
We used pulsed reduction and temperature programmed oxidation to study the interaction of methane and oxygen with the surface of manganese oxide-containing catalysts. We hypothesized that during oxidative dimerization of methane, the phase supplying strongly bound oxygen for selective methane coupling is an acceptor for weakly bound oxygen of the phase catalyzing exhaustive oxidation.  相似文献   

18.
《Mendeleev Communications》2022,32(1):129-131
Ceria-based solid solutions have been proposed as catalytic supports for the conversion of methane to syngas. Control of oxygen vacancies in vacancy-rich oxides represents a promising way to stable catalysts with improved activity.  相似文献   

19.
Combination of partial oxidation of methane (POM) with carbon dioxide reforming of methane (CRM) has been studied over Ru-based catalysts at 550 ℃. POM, CRM and combined reaction were performed over 8wt%Ru/γ-Al2O3 and the results show that both POM and CRM contribute to the combined reaction, between which POM plays a more important role. Moreover, the addition of Ce to Ru-based catalyst results in an improvement in the activity and CO selectivity under the adopted reaction conditions. The Ce-doped catalyst was characterized by N2 adsorption-desorption, SEM, XRD, TPR, XPS and in situ DRIFTS. The mechanism has been studied by in situ DRIFTS together with the temperature distribution of catalyst bed. The mechanism of the combined reaction is more complicated and it is the combination of POM and CRM mechanisms in nature. The present paper provides a new catalytic system to activate CH4 and CO2 at a rather low temperature.  相似文献   

20.
Alumina supported Ru nanoparticles, with an initial average size of 5.8 nm, show high activity and yield to CO and H2 at lower temperature than the conventionally prepared catalysts. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

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