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1.
The hierarchical mesoporous Zn/ZSM-5 zeolite catalyst was prepared by NaOH treatment and Zn impregnation, and its application in the conversion of methanol to gasoline (MTG) was studied. N2 adsorption-desorption results showed that the mesopores with sizes of 2–20 nm in HZ5/0.3AT was formed by 0.3 M NaOH alkali treatment. The zeolite samples after modification were also characterized by XRF, AAS, XRD, SEM and NH3-TPD methods. Zn impregnated catalyst Zn/HZ5/0.3AT exhibited dramatic improvements in catalytic lifetime and liquid hydrocarbons yield. The selectivity of aromatic hydrocarbons was also improved after Zn impregnation. It is suggested that the mesopores of Zn/HZ5/0.3AT enhanced the synergetic effect of Zn species and acid sites and the capability to coke tolerance, which were confirmed by the results of catalytic test and TGA analysis, respectively.  相似文献   

2.
Zn/ZSM-5(NZ2) and Zn/Ni/ZSM-5(NZ3) as the catalysts for methanol to aromatics(MTA) were synthesized by a simple ultrasonic impregnation. The textural and acid properties of all catalysts were characterized using XRD, HRTEM, NH_3-TPD, Py-IR, XPS, XRF and TG techniques. The XRD and HRTEM results showed that the basic zeolite structures were not affected much with the incorporation of Zn and Ni species. However, great changes have taken place in acid properties. The Py-IR and XPS results indicated that the Zn-Lewis acid sites(ZnOH~+ species), which have stronger interaction with the zeolite framework compared with ZnO species, were generated at the expense of B acid sites with the incorporation of zinc species. Moreover, the product analysis results showed that the incorporation of zinc species promoted the primary aromatization by enhancing the dehydroaromatization and suppressing the cracking and subsequent H-transfer reaction. Furthermore, the addition of Ni species well inhibited the loss of zinc species by converting partial ZnO species to ZnOH~+ species, and thus improved the aromatization activity and catalyst stability. The catalytic performance results showed that the NZ3 possess higher conversion of methanol in a longer time and lower average rate of coke formation compared with NZ2. In addition,the NZ3 also exhibited the highest yield of BTX as the reaction proceeds.  相似文献   

3.
A Mo-promoted Zn/HZSM-5 catalyst was prepared by isometric impregnation method (IM). The physicochemical properties of catalysts were characterized by X-ray diffraction, registration of N2 adsorption-desorption isotherms, transmission electron microscopy, NH3 temperature-programmed desorption and IR spectroscopic study of pyridine adsorption. The results show that by doping zeolite with Mo species it is possible to tune the microstructures, acidity and crystallinity of the catalyst. Additionally, it was found that the 1%Mo(IM)–5%Zn(IE)/HZSM-5 catalyst had a high catalytic activity and stability for methanol to aromatics (MTA) reaction. The yield of aromatics reached 77.3% at 450°C and TOS = 3 h. When the TOS = 98 h, the yield of total aromatics remains at a 60.4% level. The lifetime of catalysts was influenced by the synergetic effect of Brønsted and Lewis acid sites, so the modification with Mo may bring an opportunity to prolong the lifetime of Zn/HZSM-5 catalyst in the MTA reaction. The metal components are sintered and lost in continuous reaction-regeneration cycles. Accordingly, the activity of deactivated catalyst cannot be completely restored to the initial level.  相似文献   

4.
以HZSM-5分子筛为载体, 利用分步浸渍法制得不同Na含量的PtSnNa/ZSM-5催化剂, 用于丙烷脱氢反应. 利用XRD、吡啶吸附红外光谱、NH3-TPD、氢化学吸附、TPR等手段, 研究了Na的添加对PtSn/ZSM-5催化剂物化性质的影响. 结果表明: Na的添加对PtSn/ZSM-5催化剂的反应性能影响明显. 适量Na的添加不仅降低了催化剂中的Brönsted酸中心和Lewis中强/强酸中心, 抑制了积碳的发生, 提高了催化反应的稳定性; 而且提高了催化剂表面的Pt金属裸露度, 增加了反应活性. 当Na含量为1.0%(w)时, 催化剂的丙烯选择性和收率达到最大, 反应30 h后, 丙烷转化率仍然保持很高(36.4%). 继续增加Na含量, 催化剂中的Lewis弱酸中心有所增加, 同时Sn组分易于被还原成Sn0, 丙烷裂解、氢解等副反应增加, 不利于脱氢反应的进行.  相似文献   

5.
使用葡萄糖辅助模板合成了H-[B,Al]-ZSM-5沸石并用于催化甲醇转化制丙烯。优越的丙烯选择性和活性持久性关联于有利于丙烯生成的高的弱酸/强酸比例以及有利于改善反应物扩散的防止快速积炭的高的介孔率。较多的位于MFI沸石直/正弦孔道的骨架铝增加了产物丙烯/乙烯比归因于促进的丙烯生成。低的酸密度有助于高的丙烯/乙烯比。B/Al比为2且(Al2+B2)/Si比为0.01的HZ5-G-2B样品用于甲醇制丙烯反应,在原料CH3OH/H2O(1∶1.2)重时空速为1.8 h-1、480°C反应条件下,丙烯选择性为51.6%, C2-4=烯烃选择性为83.7%,甲醇完全转化。丙烯/乙烯比为2。催化活性保持580 h稳定。  相似文献   

6.
采用后合成法制备Hβ/Al-SBA-15复合分子筛,利用XRD、N_2吸附、Py-IR、NH_3-TPD、SEM和TEM等手段进行表征。用浸渍法将Ni-W活性组分担载在Hβ/Al-SBA-15载体上,制备Ni-W/Hβ/Al-SBA-15催化剂,以萘为模型化合物,考察该催化剂的加氢裂化性能。结果表明,所合成的Hβ/Al-SBA-15复合分子筛既有介孔结构又有微孔结构,并同时具有B酸和L酸中心,酸性强于SBA-15。具有适度酸性位和介微孔结构的Ni-W/Hβ/Al-SBA-15催化剂,对萘加氢裂化具有较高的萘转化率和BTX选择性,分别为96%和61.1%。  相似文献   

7.
The effects of the method of introducing iron and iron concentration on the acid properties, catalytic activity, and stability of a zeolite in methanol conversion to hydrocarbons were studied. The state of active sites in the zeolite depends on the distribution of the metal in its structure, which depends on the method of zeolite modification. The addition of iron to zeolite increased the catalyst run time between regenerations, and the samples in which iron was introduced at the stage of hydrothermal synthesis exhibited the maximum catalytic stability.  相似文献   

8.
稻壳炭基固体酸催化剂的制备及其催化酯化反应性能   总被引:3,自引:0,他引:3  
李明  陈登宇  朱锡锋 《催化学报》2013,34(9):1674-1682
以热解稻壳炭为原料, 浓硫酸为磺化剂制备了固体酸催化剂. 采用X射线衍射、X射线光电子能谱、元素分析、孔结构分析和热重-质谱联用等手段对其进行了表征. 以油酸和甲醇的酯化为探针反应, 考察了磺化温度和时间对催化剂活性的影响, 探讨了反应条件对油酸转化率的影响, 并对所制催化剂的稳定性进行了研究. 结果表明, 制备该催化剂的适宜磺化温度和时间分别为90℃和0.25 h, 在该条件下制得的催化剂为无定形碳结构, 磺酸基密度为0.7 mmol/g. 该催化剂表现出较高的催化酯化反应活性, 在催化剂用量为5%、甲醇/油酸摩尔比为4、酯化温度和时间分别为110℃和2 h的条件下, 油酸的酯化率可达98.7%. 该催化剂具有较好的稳定性, 经7次连续反应后, 油酸的酯化率仍可达96.0%.  相似文献   

9.
利用硝酸、草酸和酒石酸溶液对ZSM-5分子筛进行改性,并采用XRD、SEM、NH3-TPD、XRF、27Al MAS NMR、吡啶吸附红外光谱和N2吸附-脱附对ZSM-5分子筛结构、酸量、比表面积及孔体积等物化性质进行表征分析。在反应温度为422℃,甲醇质量空速为4.74 h-1的条件下,考察了ZSM-5分子筛的催化活性。结果表明,采用不同酸改性ZSM-5分子筛,影响了分子筛的比表面积、酸性及孔体积,从而改变了催化剂的催化性能。在甲醇芳构化(MTA)反应中,酸改性后的分子筛表现出良好的催化活性,且草酸改性后的催化剂表现出较高的催化活性及选择性,反应8 h时,芳烃及BTX收率分别达到57.40%和39.40%。  相似文献   

10.
苯;甲烷芳构化反应催化剂的研究——Mo-M/HZSM-5在无氧条件下的催化性能和表面性质  相似文献   

11.
用浸渍法制备了一系列SiO_2负载的过渡金属催化剂M/SiO_2(M为第Ⅳ周期过渡金属),用于气相催化裂解1,1,2-三氯乙烷(TCE)脱HCl的反应。研究发现,在M/SiO_2催化剂中,Zn/SiO_2催化性能最好,TCE转化率能达到98%,顺-1,2-二氯乙烯(cis-DCE)的选择性为82%。随着Zn负载量的增加,Zn/SiO_2催化剂上TCE转化率逐渐增加,与催化剂上总酸量变化一致。将总酸量以Zn负载量归一化得到比酸量,则比酸量越大,Zn/SiO_2催化剂比活性越高,表明Zn/SiO_2催化剂表面酸性中心是TCE脱氯反应的活性中心。Zn/SiO_2催化剂在TCE脱HCl反应中存在一定的失活现象,归因于反应过程中催化剂表面积炭。低Zn负载量催化剂上会产生较多积炭,归因于其具有较多强酸性中心,表明催化剂表面强酸中心是导致催化剂积炭和失活的主要原因。  相似文献   

12.
A series of Cu/Zn based catalysts with and without Ni, prepared by the co-precipitation method, has been studied for methanol decomposition. CO and H2 are the major products. The Cu/Zn catalysts show a low initial activity and a poor stability. The formation of the CuZn alloys was observed in the deactivated Cu/Zn catalysts which were used for methanol decomposition at 250 . When small amounts of Ni were added in the catalyst, the Cu/Zn/Ni(molar ratio 5/4/ x) catalysts showed a high activity at a low temperature. The activity and the stability of the catalyst depend on the nickel content. The activity of the Cu/Zn/Ni catalysts was maintained at a. relatively stable value of 78% conversion of methanol with 95% selectivity of H2, 93% selectivity of CO, and a more than 70% yield of hydrogen was obtained at 250 C when x >1. The stability of the Cu/Zn/Ni (molar ratio 5/4/x) catalysts showed the maximum (ca 88%) when x=1. The stabilization effect of nickel on the Cu/Zn based catalysts may lead to the increasin  相似文献   

13.
分别采用溶胶-凝胶法和浸渍法制备了一系列Ni/SiO_2催化剂,将其用于催化偏三甲苯(1,2,4-TMB)的加氢脱烷基反应.结果表明,在制备过程中,无水柠檬酸(CA)的加入量对催化剂的结构、表面性质、粒径及催化性能均有较大影响.催化剂表面L酸位上1,2,4-TMB几乎不发生歧化和异构化反应.镍硅体系催化剂上主要副反应为苯环加氢,通过调整还原镍的粒径可有效控制苯环加氢,从而提高了二甲苯(BTX)的选择性.在最佳反应条件下,10Ni/Si-2.0催化剂上1,2,4-TMB的转化率最高为29.4%,BTX的选择性为99.9%.  相似文献   

14.
两种甲醇水蒸气重整制氢催化剂的研究   总被引:1,自引:3,他引:1  
对采用共沉淀法制备的CuZnAlO类铜系催化剂和采用水滑石类层柱材料(LDHs)前驱体制备的催化剂在甲醇水蒸气重整制氢反应中的性能进行了研究。对共沉淀法制备的CuZnAlO类铜系催化剂考察了ZrO2助剂的加入对催化剂反应性能的影响,发现Zr的质量分数为10%的催化剂显著提高CuZnAlO催化剂的反应性能。该催化剂的最佳反应条件:0.1 MPa、250 ℃、H2O/MeOH摩尔比1.0~1.3、3.56 h-1。在此反应条件下进行了COPZr2催化剂150 h稳定性实验。结果表明,该催化剂具有很好的反应稳定性。甲醇转化率和氢产率分别约为88%和83%,产物湿基组成中H2和CO的质量分数分别为>63%和0.20%~0.31%。对LDHs前驱体制备的催化剂,进行了70 h反应稳定性实验,结果表明,催化剂虽具有较高的起始活性,但随反应进行,活性有所下降,30?h后基本保持稳定,甲醇转化率和产氢率分别为73%和66%,产物湿基组成中H2和CO的质量分数分别为>55%和0.07%~0.08%。该类催化剂的反应稳定性虽较差,但却可以显著降低产物湿基组成中CO的摩尔分数。对LDHs前驱体制备的催化剂进行XRD和SEM表征结果表明,ZrO2的加入使催化剂中CuO晶粒分散更为均匀,颗粒更细。  相似文献   

15.
A highly shape-selective and relatively long-lifetime HZSM-5-based catalyst (Zn-2P/HZSM-5) was prepared by chemical modification with both ZnSiF6·6H2O and H3PO4 solution. The phosphoric acid modification could effectively modulate the Brønsted acid strength of the HZSM-5 catalyst, which promotes the oligomerization, alkylation, cyclization, and hydrogen transfer reactions. The introduction of Zn-Lewis acid sites significantly improved the dehydroaromatization of higher olefins. All of these were very beneficial for the generation of BTX (i.e. benzene, toluene, and xylene) hydrocarbons in aromatization of methanol. The coke amount and the average rate of coke formation decreased over the Zn-2P/HZSM-5 catalysts, which may largely be ascribed to its lower strong acid sites and lower outer surface acidity. The catalytic performance of methanol aromatization showed that the Zn-2P/HZSM-5 catalyst exhibited the highest BTX selectivity of about 46.76% and the longest catalytic lifetime of about 498 h at T = 400 °C, P = 0.1 MPa, and weight hourly space velocity = 0.7 h−1.  相似文献   

16.
采用共沉淀法制备Ce/Cu/Zn/Al催化剂,并将其应用于超临界甲醇中木质素的催化液化.考察单因素条件对木质素转化率和生成酚类的影响,得到最佳反应条件:反应温度320℃,反应时间120 min,催化剂用量150 mg,初始压力2 MPa,木质素的转化率达到67.33%,酚类产率达到30.84%.同时,以苯酚及愈创木酚为模型物,比较有无催化剂对液化产物分布或选择性生成的影响. Ce/Cu/Zn/Al催化剂的加入促进了甲醇的重整及其与模型化合物苯酚、愈创木酚的烷基化反应,从而生成了大量的烷基苯酚.  相似文献   

17.
在Zn/P/ZSM-5催化剂上研究了甲醇、二甲苯、甲苯和甲醇等不同进料下芳烃产品分布随反应积碳的变化, 发现催化剂积碳对芳构化反应、脱烷基反应和烷基化反应的影响不同. 在不同硅铝摩尔比(Si/Al 比)和Zn负载量的Zn/P/ZSM-5 催化剂上进行甲醇转化, 考察催化剂酸性位点强度、密度和类型与芳烃收率和产品分布之间的关系, 发现当强酸位点酸密度下降时, 脱烷基反应最先被抑制, 其次是芳构化反应和异构化反应, 而烷基化反应却不受影响. 在Si/Al 比为14, 3% (w) Zn 负载量的Zn/P/ZSM-5 催化剂上可得到75%左右的芳烃收率, 二甲苯收率在35%左右, 具有重要的工业应用前景.  相似文献   

18.
采用高温浸渍法,通过Ce~(3+)、Ti~(4+)和浓硫酸磺化反应对多壁纳米碳管进行了改性处理,制备了Lewis酸型固体酸催化剂Ce~(3+)-Ti~(4+)-SO_4~(2-)/MWCNTs,并采用透射电镜、拉曼光谱、X射线光电子能谱、吡啶吸附红外光谱、X射线荧光光谱、X射线衍射光谱和NH_3程序升温脱附等多种测试技术对催化剂的物理化学特性和结构特征进行了表征。以Ce~(3+)-Ti~(4+)-SO_4~(2-)/MWCNTs为油酸与甲醇经酯化反应合成生物柴油的催化剂,对其催化性能进行了研究。结果表明,当醇油物质的量比为12∶1,催化剂与反应物质量比为1%,反应温度为65℃,反应5 h,油酸转化率为93.4%。催化剂Ce~(3+)-Ti~(4+)-SO_4~(2-)/MWCNTs在重复使用八次后,油酸的转化率仍为80.8%,由此表明其具有较高的催化活性和稳定性。高催化活性和稳定性是因为,纳米碳管的C 1s结合能较一般炭材料低,使得电子在其管状结构中的流动和逃逸非常容易,从而有助于负载于纳米碳管之上的活性组分之间发生强烈的相互作用,最终促使Ce~(3+)和Ti~(4+)分别与SO_4~(2-)形成稳定的配位键,增大催化剂的晶化程度,并使SO_4~(2-)与纳米碳管结合的更加牢固,增强了催化剂的稳定性,减少了催化剂中活性组分的流失。最后,由于SO_4~(2-)与Ce~(3+)的强相互作用,在不增加纳米碳管表面缺陷的情况下,改变了Ti~(4+)-SO_4~(2-)中表面原子的化学状态,使得S~(6+)离子和Ti~(4+)离子的吸电子能力增加,使催化剂以Lewis酸性活性位为主,避免了SO_4~(2-)/MWCNTs因为以Brnsted酸位为主,而在富含水的反应介质中,由于水合反应而降低其催化活性的现象发生。  相似文献   

19.
采用铌酸为催化剂,探索了该催化剂对苯甲醛与甲醇缩合反应的影响.优化反应条件是,催化剂用量为反应物质的量的5mol%,甲醇10mL(兼作溶剂),回流状态下反应2h,反应的产率和转化率分别达到94%、98.0%.该催化剂同样适用于其他醛(酮)与甲醇的缩合反应,可得到34%~89%的产率.所述方法操作简单、产率高、选择性好而且对环境友好,反应结束后,催化剂很容易回收,并能有效重复使用.  相似文献   

20.
甲醇水蒸气重整制氢Cu/ZnO/Al2O3催化剂的研究   总被引:7,自引:5,他引:7  
燃料电池作为一种无污染、高效率的能源引起世界各大汽车公司的广泛关注[1,2]。用于燃料电池的燃料目前研究较多的是氢气,用氢气作燃料存在储存、安全、运输等问题,寻求合适贮氢方法或替代燃料,实现车载制氢是解决问题的办法。甲醇作为液体燃料,因具有高能量密度,低碳含量,以及运输和贮存等优势成为车载制氢的理想燃料,甲醇水蒸气重整制氢反应也成为研究的热点[3~10]。车载制氢对甲醇水蒸气重整制氢反应体系中的产氢速率,氢气和CO的含量都有一定的要求。尤其对CO含量要求更为苛刻,因CO易引起燃料电池阳极催化剂中毒[11,12]。因此,开…  相似文献   

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