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1.
The influence of Zn content, reaction temperature and pretreatment conditions on a Zn-modified Mo/HZSM-5 catalyst for methane aromatization were studied. It was found that the addition of Zn promoted the reaction. Methane conversion of 10.9% and aromatics selectivity of 96.7% were obtained with a Zn/Mo molar ratio of 0.03 and N2 pretreatment at 973 K. The results of isopropanol decomposition, NH3-TPD and TG-DTA suggest that the addition of Zn decrease the acidity of the catalyst, which may be the reason for the high activity on the Mo-Zn/HZSM-5 catalyst. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

2.
研究了反应温度、空速、Mo担载量和焙烧温度对MoO3/HZSM-5催化剂上甲烷的芳构化反应的影响.HZSM-5分子筛的Bronsted酸性、孔道结构和Mo在分子筛中的分布是影响催化性能的重要因素.HZSM-5上Mo担载量为2~3%时活性最佳,在1013K反应温度下甲烷转化率可达9%,芳烃选择性大于90%.空速影响的实验表明乙烯是反应的初始产物.在此基础上提出了"甲烷酸助异裂活化"的新概念、"金属钼类碳烯中间物"的新观点和甲烷芳构化的可能机理.  相似文献   

3.
采用浸渍法制备了Mo/HZSM-5、Mo-W/HZSM-5和W/HZSM-5三种催化剂。通过XRD、BET、Py-FTIR、H2-TPR、XPS、TEM、NH3-TPD、TPO、TG和Raman等技术对催化剂的物化性质进行表征,并考察其在甲烷无氧芳构化反应中的催化性能。结果表明,相比于Mo/HZSM-5,Mo-W/HZSM-5催化剂表现出更高的CH_4转化率、芳烃收率以及催化稳定性。H_2-TPR和XPS结果表明,Mo-W/HZSM-5中存在更易被还原为W~(4+)的正八面体(WO_6)~(n-)前驱体,反应过程中W4+的形成有助于提高CH_4转化率。同时,积炭表征结果表明,石墨型积炭是导致Mo/HZSM-5催化剂快速失活的主要原因,W掺杂可以抑制MoW/HZSM-5催化剂上石墨型积炭的形成,进而提高催化剂的稳定性。  相似文献   

4.
非氧化条件下Mo-Cr/HZSM-5催化剂上的甲烷芳构化反应   总被引:3,自引:0,他引:3  
  相似文献   

5.
Mo/HZSM-5 is a good catalyst for methane aromatization, and the reaction performance of Mo/HZSM-5 and Cu modified Mo/HZSM-5 catalysts under various pretreatment conditions has been studied. The results indicate that the catalyst presented a distinguished catalytic activity, benzene selectivity and a high stability when the bed temperature was raised in N2 atmosphere.  相似文献   

6.
Conversion of pure methane and natural gas with different methane purity to aromatic hydrocarbons at. 773 and 873 K have been investigated. Conversion of methane to aromatics under non-oxidizing conditions can be initiated by higher hydrocarbon mixtures in the feed and, some special coke deposited on Mo/HZSM-5 catalyst at lower reaction temperature. Methane conversion of about 10–20% is obtained at 773 K. The possible reaction mechanism and product phase transformation process for conversion of pure methane and natural gas at lower temperature are proposed. The thermodynamic limitation for methane conversion under non-oxidizing conditions may be circumvented.  相似文献   

7.
Impregnation, mechanical mixing and hydrothermal treatment methods were used to introduce molybdenum species into the HZSM-5 zeolite. The structure and surface acidity of the catalysts were studied by means of XRD, FT-IR, NH3-TPD, TPR and XPS. The effects of Mo content and reaction time on stream on the aromatization of propane were investigated. It was found that the performance of the Mo/HZSM-5 catalyst prepared by the hydrothermal treatment method was much better than that of the other two catalysts. For example, under the reaction conditions of 823 K and 600 h-1, propane conversion and aromatics selectivity over the catalyst prepared by hydrothermal pretreatment could reach 89.17% and 78.56%, respectively. XRD and XPS results showed that the Mo species in the catalysts prepared by hydrothermal treatment were highly dispersed on the surface of the HZSM-5, and larger amounts of them could penetrate into the HZSM-5 channel, as compared with the other two kinds of catalysts. These factors may be responsi  相似文献   

8.
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   

9.
Impregnation,mechanical mixing and hydrothermal treatment methods were used to introduce molybdenum species into the HZSM-5 zeolite ,the structure and surface acidity of the catalysts were studied by means of XRD,FT-IR ,NH3-TPD,TPR and XPS,The effects of Mo content and reaction time on stream on the aromatization of propane were investigated,It was found that the performance of the Mo/HZSM-5 catalst prepared by the hydrothermal treatment method was much better than that of the other two catalysts,For example ,under the reaction conditions of 823 K and 600h^-1, propance conversion and aromatics selectivity over the catalyst prepared by hydrothermal pretreatment could reach 89.17% and 78.56%,respectively,XRD and XPS results showed that the Mo species in the catalysts prepared by hydrothermal treatment were highly dispersed on the surface of the HZSM-5,and lartger amounts of them could penetrate into the HZSM-5 channel ,as compared with the other two kinds of catalysts,These factors may be responsibled for their high activities for propane aromatization,IR and NH3-TPD studies indicated that the number of Broensted acid centers decreased and the Lewis acid centers increased after Mo was introduced into the HZSM-5 zeolite.  相似文献   

10.
甲烷在Mo/HZSM-5催化剂上的脱氢聚合反应   总被引:1,自引:0,他引:1  
对不同Mo含量的Mo/HZSM-5催化剂的结构进行了表征,并对这些催化剂的甲烷非氧气氛下的转化反应进行了考察.催化剂的BET比表面积及酸性随Mo含量的增加而降低,当Mo含量大于5%时,Mo对ZSM-5分子筛的晶型有影响,并出现MoO3物相.甲烷在700℃时可高选择性地生成苯和乙烯,最佳Mo含量大约为2%.纯的MoO3或HZSM-5上该反应几乎不进行,因此,可能是分散的钼氧离子和分子筛的酸中心是甲烷转化的活性中心,只有二者的协同作用才能促进甲烷的转化.反应后催化剂中的钼物种被还原了.催化剂上的积炭可能是催化剂失活的主要原因之一,烧炭后催化剂活性基本恢复.  相似文献   

11.
甲烷在Mo/HZSM-5催化剂上的脱氢聚合反应   总被引:1,自引:0,他引:1  
对不同Mo含量的Mo/HZSM-5催化剂的结构进行了表征,并对这些催化剂的甲烷非氧气氛下的转化反应进行了考察.催化剂的BET比表面积及酸性随Mo含量的增加而降低,当Mo含量大于5%时,Mo对ZSM-5分子筛的晶型有影响,并出现MoO3物相.甲烷在700℃时可高选择性地生成苯和乙烯,最佳Mo含量大约为2%.纯的MoO3或HZSM-5上该反应几乎不进行,因此,可能是分散的钼氧离子和分子筛的酸中心是甲烷转化的活性中心,只有二者的协同作用才能促进甲烷的转化.反应后催化剂中的钼物种被还原了.催化剂上的积炭可能是催化剂失活的主要原因之一,烧炭后催化剂活性基本恢复.  相似文献   

12.
 甲烷在Co-Mo/HZSM-5催化剂上进行无氧芳构化反应的评价结果表明,Co的添加大大提高了Mo/HZSM-5催化剂在反应过程中的稳定性.BET实验证明,反应后的积炭对Co-Mo/HZSM-5催化剂孔道堵塞的程度较小.对积炭催化剂进行的一系列程序升温表面反应(如TPH,TPCO2和TPO)结果表明,TPO谱上有两个峰温明显不同的烧炭峰,Co的添加明显抑制了高温积炭的生成.H2主要与高温积炭发生反应,这部分积炭是催化剂失活的主要原因;CO2对低温积炭的影响则尤为明显.TEM结果表明,积炭催化剂上存在丝状积炭物种.碳丝不能与H2反应,但能被CO2除去.Co的添加促进了丝状积炭物种的生成,碳丝并不是导致催化剂失活的因素.  相似文献   

13.
At low temperature of 723 K, methane can be easily activated in the presence of ethylene in the feed, and converted to higher hydrocarbons (C2–C4) and aromatics (C6–C10), through its reaction over rare metals modified Zn/HZSM-5 zeolite catalysts without undesirable carbon oxides formation. Methane can get 37.3% conversion over the above catalysts under low temperature, and the catalysts show a longer lifetime than usual metal supported HZSM-5 zeolite catalysts without adding any rare earth metals. The effects of methane activation over various rare earth metal promoted Zn/HZSM-5 catalysts on the products and influences of several reaction conditions such as temperature, catalyst lifetime and molar ratio of CH4/C2H4 have been discussed.  相似文献   

14.
The non-oxidative dehydro-oligomerization of methane to higher molecular weight hydrocarbons such as aroma tics and C2 hydrocarbons in a low temperature range of 773-973 K with Mo/HZSM-5,Mo-Zr/HZSM-5 and Mo-W/HZSM-5 catalysts is studied.The means for enhancing the activity and stability of the Mo-containing catalysts under the reaction conditions is reported.Quite a stable methane conversion rate of over 10% with a high selectivity to the higher hydrocarbons has been obtained at a temperature of 973 K.Pure methane conversions of about 5.2% and 2.0% have been obtained at 923 and 873 K,respectively.In addition,accompanied by the C2-C3 mixture,tht- methane reaction can be initiated even at a lower temperature and the conversion rate of methane is enhanced by the presence of tne initiator of C2-C3 hydrocarbons.Compared with methane oxidative coupling to ethylene,the novel way for methane transformation is significant and reasonable for its lower reaction temperatures and high selectivity to the desired prod  相似文献   

15.
甲烷脱氢芳构化Mo/HZSM-5基催化剂表征   总被引:1,自引:0,他引:1  
利用H2-TPR、XPS、EPR等谱学方法,对Mo/HZSM-5基催化剂的可还原性以及工作态催化剂上钼物种的价态进行了表征研究.结果表明,随着焙烧温度的升高,前驱态催化剂中可还原钢物种在总钼量中所占比率明显下降;工作态催化剂表面存在混合价态的Mo物种:以Mo4 为主,Mo5 为次;673K焙烧制备并经DHAM反应操作的催化剂上检测到Mo5 的EPR讯号相当弱,而973K焙烧制备并经同样反应操作的催化剂,其Mo5 EPR讯号却强得多;酸促进的Mo/HZSM-5基催化剂上高的甲烷转化活性与工作态催化剂表面Mo5 物种的浓度并不存在顺变关系,而与表面酸位(尤其是B酸位)及Mo4 物种的浓度密切相关.  相似文献   

16.
The effect of steam-treatment to HZSM-5 zeolite and Mo/HZSM-5 with a steaming time range of 0.5-1 h on the catalytic performance of methane dehydro-aromatization (MDA) over Mo/HZSM-5 catalyst prepared with impregnation has been studied in detail in combination with the characterization of 1H MAS NMR technique. Both the deactivation rate constant (kd) and the Brnsted acid sites per unit cell were calculated to quantitatively evaluate the stability of Mo/HZSM-5 catalysts treated with steam at 813 K before and after impregnation of molybdenum species, and the corresponding variation of their Brnsted acid sites. The results reveal that a V-shape relationship between kd and the number of B1 acid sites per unit cell is presented on Mo/HZSM-5 catalyst under the tested steam-treatment and reaction conditions.  相似文献   

17.
对经过程序升温表面甲烷无氧芳构化反应(TPSR)后的Mo/HZSM-5催化剂上的积炭进行了程序升温加氢反应(TPH)和程序升温CO2反应(TPCO2),并对相应催化剂上的积炭进行了程序升温氧化反应(TPO)和热重(TG)实验.TPH实验及TPCO2实验表明,H2主要对高温烧炭峰发生作用.CO2则可同时对这两种烧炭峰产生影响,对低温峰积炭的影响尤其明显.对不同Mo含量的催化剂进行上述实验的结果表明,Mo担载量的变化及不同的实验过程都会影响催化剂上两种温峰的积炭在总积炭量中所占的比例.由TG实验数据计算出的动力学结果说明,无论是TPH还是TPCO2实验都可以降低烧炭过程的一级反应起始温度,并减少其活化能.此外,催化剂中Mo担载量的变化也会对开始温度和烧炭活化能产生明显影响.  相似文献   

18.
运用微型固定床反应器装置,研究了Mo/HZSM-5催化剂的Mo载量、金属助剂改性、载体模数对甲烷无氧芳构化反应性能的影响。结果表明,Ni/Mo摩尔比为0.1的Mo-Ni/HZSM-5(SiO2/Al2O3=25)催化性能最好,其稳定性较好,芳烃收率最高可达15.74%;此时甲烷转化率60.24%,芳烃选择性26.13%。  相似文献   

19.
 研究了乙烷添加对 Mo/HZSM-5 催化剂上甲烷芳构化反应性能的影响. 在所考察的反应条件下, 未观察到乙烷添加对甲烷转化的促进作用, 乙烷本身反而生成甲烷, 同时导致更高的积炭生成速率, 使 Mo/HZSM-5 催化剂更快地失活. 但添加乙烷加速了钼活性中心的形成, 缩短了芳构化反应的诱导期, 使苯的生成提前.  相似文献   

20.
在反应温度下以1%O2对Mo/MCM-22催化剂的原位再生   总被引:1,自引:0,他引:1  
In recent years, the catalytic dehydroaromatization of methane to yield aromatics has been a challenging and intriguing topic in heterogeneous catalysis. Until now, the two effective methane dehydroaromatization catalysts are Mo/HZSM-5[1] and Mo/MCM-22[2]. However, this reaction suffers from rapid catalyst deactivation due to coking[3].  相似文献   

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