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1.
纳米ZSM-5沸石对芳烃苄基化反应的催化性能 总被引:1,自引:0,他引:1
采用晶种有机硅烷化法合成了纳米团簇 ZSM-5 沸石, 考察了其在芳烃苄基化反应中的催化活性. X 射线衍射、N2 吸附和扫描电镜等结果表明, 该沸石为由约 20 nm 的小晶粒聚集成的团簇体, 并形成晶间中孔, 其具有的外表面积是普通 ZSM-5 沸石的 5 倍之多. NH3-程序升温脱附和吡啶吸附的红外光谱结果显示, 沸石的纳米化可使其表面酸中心, 尤其是强酸中心的数目增多, 大大提高了大分子的酸性位可接近性. 在芳烃苄基化反应中, 纳米 ZSM-5 沸石克服了反应分子空间位阻对催化活性的影响, 表现出优异的催化活性, 363 K 时, 甲苯苄基化反应的速率常数是普通 ZSM-5 沸石的约 13 倍. 相似文献
2.
对比了水热处理后微米ZSM-5和纳米ZSM-5分子筛的物化性质和催化甲醇制汽油(MTG)的反应性能,发现采用纳米ZSM-5分子筛催化剂能得到较高的汽油收率和较长的寿命,但汽油中均四甲苯含量较高.对纳米ZSM-5分子筛进行硅烷化处理,利用低温N_2吸附-脱附、X射线衍射(XRD)、氨气程序升温脱附(NH_3-TPD)对改性前后的样品进行表征.在温度380℃、压力2.0 MPa、空速3.0 h~(-1)的反应条件下进行MTG反应,对硅烷化改性后的催化剂进行评价.结果表明,负载SiO_2后催化剂的强酸中心降低,比表面积和孔容降低.纳米ZSM-5分子筛合适的SiO_2负载量为2%,硅改性后用于MTG反应,催化剂的寿命和汽油收率分别由改性前的144 h和33.6%显著增加到180 h和34.4%.当SiO_2负载量继续增加时,催化剂寿命和汽油收率逐渐降低.另外,随SiO_2负载量的增加,其催化MTG所得汽油产品中的异构烷烃和芳烃含量降低,烯烃和正构烷烃含量增加,均四甲苯含量显著降低,改善了油品质量. 相似文献
3.
以甲苯为溶剂,正辛基三乙氧基硅烷(OTS)为改性剂,进行了ZSM-5高硅分子筛疏水改性研究。通过傅立叶红外(FT-IR)、X射线粉末衍射(XRD)、N2吸附-解吸附、静态水接触角、水与正己烷的静态吸附,以及水热稳定性试验等测试了改性前后样品结构与性能。结果表明,通过硅烷化改性在ZSM-5上接枝了-Si(CH2)7CH3基团,并实现了超疏水性。当0.8g ZSM-5使用0.24g改性剂时,改性后分子筛的接触角达152°,水吸附量下降了1.49%,比表面积、孔容、孔径分别减小了62.7m2/g、0.0329cm3/g、0.42nm,孔道长程有序性有所降低,且具有较高的水热稳定性。 相似文献
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5.
ZSM-5沸石催化剂外表面的化学修饰 总被引:6,自引:0,他引:6
通过离子改性、水热处理、表面毒化及预积炭等方法均可提高ZSM-5沸石的择形催化性能.上述方法在改变沸石孔道结构时也明显地改变了沸石的表面酸性质.近年来,采用化学修饰的方法对沸石表面和孔口进行调变的研究已有一些报导.杨儒等用硅烷或SiCl_4等进行气相硅烷化,除缩小孔口尺寸外,还产生了骨架脱铝补硅作用,导致表面酸性质发生变化.王清遐等用正硅酸乙醇浸渍(ZSM-5沸石,随着硅的载入量增加,催化剂酸量和反应活性均降低,而对位选择性增加.Murakami用正硅酸甲 相似文献
6.
Effect of different alkali metal salts on the crystal size and the crystallization rate of ZSM-5 zeolite was de-tailedly investigated in this paper. The samples prepared by adding the different alkali metal salts were character-ized by using XRD, TEM, TG-DSC, BET and IR techniques. The XRD results showed that, for the nanosized ZSM-5 zeolite, the characteristic peaks broadened on the XRD patterns in comparison with the microsized ZSM-5 zeolite. The SEM results verified that the crystal size of zeolites prepared by adding different alkali metal salts had different results, and adding NaCl, NaC2H3O2 and KCl showed the better effect of reducing crystal size, which are about of 40~60nm size. The crystallization curve of adding the different alkali metal salts suggested that the crystallization rate was significantly affected by the anions in the alkali metal salt besides the cations. Moreover, the crystal size likewise depended on the anion in the alkali metal salt. In addition, the BET results suggested that the nanosized ZSM-5 zeolite possessed a larger outer surface area in comparison with the microsized ZSM-5 zeolite. The thermostability of the samples was determined by TG-DSC technique, indicating that the nanosized ZSM-5 zeolite had a poor thermostability as compared with the microsized ZSM-5 zeolite. The possible difference of the samples with different crystal sizes on IR spectra was also given. 相似文献
7.
采用XRD、N2物理吸附、NH3-TPD以及TEM、IR和NMR手段,系统研究了NaOH碱液后处理对低硅铝比纳米ZSM-5沸石(Si/Al摩尔比为14.5、晶粒度为20~50 nm)孔道和酸度的影响.结果表明,在碱液中,低硅铝比纳米ZSM-5沸石主要发生限域脱硅,而且低硅铝比纳米ZSM-5沸石的碱液脱硅难度大于高硅铝比沸石.但在适当的碱液处理条件下(碱硅比为0.19~0.35,温度为60~80℃,处理时间为2~5 h)可以在其晶体内产生大量介孔,增加比表面积和孔容;同时增加弱酸和中强酸的浓度,并提高L酸比例.L酸的大量增加主要是由于产生了裸露的骨架铝(≡Alδ+),这与文献的观点有所不同. 相似文献
8.
通过优化水热陈化条件制备纳米L沸石,再采用水热合成结合原位二次晶化法,合成具有微-介复合孔结构的高效ZSM-5-L二元复合分子筛.考察了体系pH、二次晶化温度等因素对ZSM-5-L复合分子筛合成的影响,采用X射线衍射(XRD)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和傅里叶变换红外光谱(FTIR)等技术对复合分子筛进行表征,确定了最佳复合条件:pH=10.5~11.5,晶化温度170℃,晶化时间24 h.ZSM-5-L复合分子筛具有不同于ZSM-5沸石、L沸石及两者机械混合物的物性特征,且具有微-介复合孔结构.以正戊烷催化转化为探针反应,评价了ZSM-5-L复合分子筛轻烃芳构化反应性能.在相同反应条件下,ZSM-5-L复合分子筛具有优于2种单分子筛及二者机械混合物的正戊烷芳构化催化性能. 相似文献
9.
丁烯在纳米H-ZSM-5催化剂上的催化裂解反应 总被引:11,自引:0,他引:11
在小型固定床反应器中考察了纳米H-ZSM-5催化剂(晶粒度为20~50nm)对丁烯催化裂解制丙烯反应的催化性能,并与两种微米H-ZSM-5催化剂样品(晶粒度分别为1~2和1~6μm)进行了比较.结果表明,在相同的反应条件下,纳米H-ZSM-5和微米H-ZSM-5催化剂上的初始丁烯转化率及丙烯收率相当,但纳米H-ZSM-5催化剂在反应中的抗积碳失活性能优于微米H-ZSM-5催化剂.在进料质量空速7h-1,常压和560℃的条件下反应,当丁烯转化率和丙烯收率下降50%时,两种微米催化剂上的反应时间仅为28h左右,而纳米催化剂上的反应时间为120h左右.积碳分析结果表明,纳米催化剂上的积碳速率明显低于微米催化剂. 相似文献
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11.
ZSM-5/β co-crystalline zeolites with different content of ZSM-5 have been synthesized by adding different amount of ZSM-5 to the synthetic system ofβ zeolite with NaAlO2, silica sol as the source of aluminum and silica, respectively, and TEA as the template under controlled condition of the synthesis. The ZSM-5/β co-crystalline zeolite was studied by XRD, SEM, BET and NH3-TPD. The reaction activity of toluene alkylation was investigated with a mixture of toluene-methanol as the feedstock in a pulse micro-reactor over the ZSM-5/β co-crystalline zeolite. It is found that ZSM-5/β co-crystalline zeolite has two kinds of zeolite structure including ZSM-5 and β zeolite, not in the form of a physical mixture. The pore structure of ZSM-5/β co-crystalline zeolites is different from that forβ zeolite, ZSM-5and their physical mixture. In addition, the peaks of both high and low temperature desorption of ammonia over the ZSM-5/β co-crystalline zeolite shift 23 ℃ to lower temperatures and the acid amount of its strong acid is 3% more than the physical mixture. So the ZSM-5/β co-crystalline zeolite produces the highest content of xylene, which is 10.4% higher than the physical mixture. And the ZSM-5/β co-crystalline zeolite has better selectivity for toluene alkylation and weaker de-methylation than β zeolite, ZSM-5 and their physical mixture. 相似文献
12.
以ZSM-5/丝光沸石(MOR)复合分子筛为催化剂,对混合C4烃的催化转化反应进行了评价,并采用程序升温脱附和原位红外光谱技术对ZSM-5/MOR的酸性进行了表征. 结果表明,与ZSM-5相比, MOR具有很低的催化活性,但ZSM-5/MOR复合分子筛具有较高的催化活性,随着ZSM-5/MOR复合分子筛中ZSM-5含量的增加, C4烃转化率稍有升高;在C4烃转化率大致相同的情况下,乙烯和丙烯的总选择性比较接近,但苯和甲苯的总收率却快速升高. 随着ZSM-5/MOR复合分子筛中ZSM-5含量的增加,弱酸和中强酸的酸量逐渐减少,强酸的酸量有所增加. 由于ZSM-5/MOR复合分子筛中MOR对ZSM-5起到分散作用而产生更多的L酸中心,且此L酸中心处于分子筛的外表面而具有较高的能量,导致苯和甲苯的总收率升高. 相似文献
13.
ZSM-5(核)/AlPO4-5(壳)双结构分子筛的合成与催化裂化性能 总被引:7,自引:0,他引:7
采用X射线衍射、扫描电镜、X射线能量散射谱、红外光谱和核磁共振等多种物化方法对合成的ZSM-5(核)/AlPO4-5(壳)双结构分子筛进行了表征,证明这种材料具有以ZSM-5为核层、以AlPO4-5为壳层的双结构特征.考察了合成条件对ZSM-5(核)/AlPO4-5(壳)分子筛形貌的影响,发现ZSM-5分子筛的加入方式对产物的形貌有较大影响.重油裂化反应结果表明,ZSM-5(核)/AlPO4-5(壳)双结构分子筛的催化性能比ZSM-5和ZSM-5/AlPO4-5机械混合分子筛样品好,表现为原油转化率和低碳烯烃、汽油及柴油收率提高. 相似文献
14.
ZSM-5/Y复合分子筛的酸性及其重油催化裂化性能 总被引:23,自引:0,他引:23
ZSM-5/Y是本研究组合成的一种新型复合分子筛材料. 用“两次交换,两次焙烧”和磷
酸氢二铵浸渍方法对该复合分子筛材料进行了改性,采用红外光谱表征了复合分子筛的酸性,研究了磷改性对复合分子筛样品羟基区谱学性质的影响,并与相应的机械混合分子筛样品进
行了对比. 红外光谱数据表明,磷改性后复合分子筛的B酸(主要是中强酸)增加,而机械混合分子筛在各个酸强度区域的B酸量和L酸量都减少. 以新疆重油为原料考察了改性后复合分子
筛样品和机械混合分子筛样品的催化裂化性能. 与相应的机械混合分子筛催化剂相比,磷改
性复合分子筛催化剂具有较高的柴油选择性,其柴油产率增加了4.1个百分点,柴汽比增加了0.11,总轻油产率与机械混合分子筛相当. 用气体产物中的CMR(裂化机理比)和C3/C4比
值分析了复合分子筛的催化性能与其聚集体结构的关系. 相似文献
15.
Toluene Alkylation to Selective Formation of p-Xylene over Co-Crystalline ZSM-12/ZSM-5 Catalyst 下载免费PDF全文
The alkylation of toluene with methanol to selective formation of p-xylene has been systematically studied. ZSM-12 (MTW)/ZSM-5 co-crystalline zeolite in 40:60 proportions have been synthesized by the same molar gel composition, but at different temperatures and periods than that of ZSM-12 and ZSM-5, separately. All the prepared samples are characterized by XRD, SEM, BET, and XRF. The activity of toluene alkylation was investigated with a mixture of toluene and methanol as a feed over the ZSM-12, ZSM-12/ZSM-5 co-crystalline, ZSM-5, and physical mixture of ZSM-12/ZSM-5. Prom characterization, it is observed that the ZSM-12/ZSM-5 co-crystalline material is different from that of ZSM-12, ZSM-5, and their physical mixture. Further, the ZSM-12/ZSM-5 co-crystalline zeolite produces the highest content of xylene and has better selectivity for p-xylene than ZSM-12, ZSM-5, and their physical mixture. 相似文献
16.
ZiYunLI XinSUN QiangXIAO ShouHeXIANG 《中国化学快报》2005,16(1):115-118
Catalytic properties of ZSM-5 zeolite samples pretreated with NaOH solution have been investigated. The samples are characterized by XRD, SEM, chemical analysis, and N2 adsorption.The results indicate that mesopores are created in ZSM-5 crystals under alkali treatment without change the microporous structure and acidic strength of the zeolite, but the crystallinity is greatly decreased under severe treatment. IR indicates that the concentration of silanol is greatly enriched by alkali treatment. The etherification activities of ZSM-5 zeolites are greatly increased byalkali-treatment. The noticeably improved catalytic activity of treated samples is ascribed to the formation of mesopores and greatly enriched silanol group. 相似文献
17.
合成了一系列硅铝比为31—176的ZSM-11沸石,以甲苯-甲醇烷基化、间二甲苯异构化和甲苯歧化三个反应作为探针反应,研究了它们的催化性能。将其与酸性质和晶胞参数相关联发现,低硅铝比适于甲苯歧化,中硅铝比适于间二甲苯异构化,高硅铝比适于甲苯-甲醇烷基化反应。各反应所需的酸强度为甲苯歧化>间二甲苯歧化>间二甲苯异构化>甲苯-甲醇烷基化。Na~+的存在以及用4-甲基喹啉或(CH_3)_3SiCl中毒,可抑制强酸位,明显提高甲苯-甲醇烷基化反应生成对二甲苯的选择性,尤以(CH_3)_3SiCl中毒的低Al/u.c.的NaHZSM-11最佳。 相似文献