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1.
SO^2—4/TiO2和SO^2—4/Fe2O3固体超强酸研究   总被引:31,自引:0,他引:31  
用XRD、TG-DTG、SEM和化学分析等手段研究了浸渍H2SO4的无定形TiO2和Fe2O3在焙烧过程中的晶化、相变、失水及失硫情况,总结出SO^2-4/MxOy型固体超强酸具有与SO^2-4/ZrO2体系相同的形成规律。用IR光谱和常温正戊烷异构化反应对SO^2-4/TiO2/Fe2O3的超强酸性进行了表征,表明它们与SO^2-4/ZrO2体系具有相似的表面酸位结构,无水状态主要为L酸位,吸水  相似文献   

2.
SO_4~(2-)/ZrO_2固体超强酸储存稳定性研究   总被引:1,自引:0,他引:1  
SO_4~(2-)/ZrO_2固体超强酸储存稳定性研究陈建民,缪长喜,华伟明,高滋(复旦大学化学系,上海,200433)关键词SO_4~(2-)ZrO_2,固体超强酸,储存稳定性,酸性,催化性能MxOy型固体超强酸在低温烷烃异构化反应中表现出优良的催化活性...  相似文献   

3.
SO_4~(2-)/ZrO_2超强酸制备方法的改进   总被引:1,自引:0,他引:1  
用BET、XRD、流动指示剂法、化学分析、低温正丁烷异构化反应等手段研究了制备条件对ZrO2前驱体和SO/ZrO2超强酸性能的影响.实验结果表明,采用不同的制备条件,ZrO2前驱体的比表面可相差1.8倍,SO/ZrO2的酸强度相差约1000倍.SO/ZrO2的正丁烷异构化反应活性相差约300倍.ZrO2最高比表面可达245m2/g,SO/ZrO2酸强度为H0≤-1.60,20℃时SO/ZrO2正丁烷异构化反应速率常数为15.5×10-3h-1。  相似文献   

4.
以Hβ沸石为基础,通过TiO_2改性及硫酸铵处理制备了SO-TiO_2-Hβ-Al_2O_3催化剂,并由XRD、XPS、NH_3-TPD、FTIR及化学吸附等手段考察了不同焙烧温度对该催化剂表面性质、酸性及催化性能的影响。结果表明:适宜的焙烧温度使SO-TiO2-Hβ-Al2O3的酸量大幅度增加,强酸比例增大,并产生部分增强酸中心。高强度的酸性中心中,以L酸中心为主;550℃焙烧的样品能使沸石表面上SO与TiO_2间发生较强的相互作用,高温焙烧则使浓度下降;该催化剂明显促进了丙烯与异丙醇的醚化反应,丙烯转化率由8.0%增高到15.9%。关键词  相似文献   

5.
首次以Hβ沸石为基础,采用一步浸渍法(A)、机械研磨法(B)、沉积-沉淀法(C)及分步浸渍法(D)制备了SO-Fe2O3-Hβ-Al2O3催化剂,通过XRD,XPS,NH3-TPD,FT-IR及化学吸附等手段对其物理化学性能进行了表征,并对其催化丙烯与异丙醇的酸化反应性能进行了评价.结果表明,在催化剂表面,SO,Fe2O3及Hβ沸石之间存在较强的化学作用,A法和C法制备的催化剂具有明显的增强酸性;总酸量和L酸量增多,酸强度提高;该催化剂明显促进了丙烯醚化反应,其丙烯和异丙醇转化率分别由Hβ-Al2O3沸石的7.98%和35.1%提高到14.8%和40.0%,并发现该反应主要在L酸中心上进行.  相似文献   

6.
SO2-4/Fe2O3-Dy2O3是一种新的稀土改性固体超强酸,研究结果表明它对α-萘乙酸与甲醇酯化反应有很高的催化活性和良好的稳定性。反应混合物在NovapakC18(3.9×150mm,4μ)色谱柱上以甲醇-水(70∶30,V/V)作流动相8分钟内可实现良好分离。该反应产率高、工艺简便、无腐蚀。  相似文献   

7.
采用共沉淀法引入Si对SO2-4/TiO2进行改性,制得了SO2-4/Ti-Si-O系列固体超强酸,试样经IR、SEM、XRD表征和低温正戊烷异构化活性测试,发现超强酸中心是硫酸根离子与金属原子Ti结合形成的双配位螯合结构,在超强酸性的样品中TiO2均呈锐钛矿晶型。引入Si仅迟滞TiO2晶化过程,控制Si在SO2-4/Ti-Si-O体系中的含量可以有效调节固体超强酸的酸性,并提高正戊烷异构化反应的选择性。  相似文献   

8.
制备了SO42-/TiO2(Ⅰ)、PO43-/TiO2(Ⅱ)、BO33-/TiO2(Ⅲ)系列固体酸。用IR、Raman光谱对该系列固体酸进行结构表征,结果表明SO42-与TiO2表面的结合为螯合式双配位结构和共价硫酸盐共存,PO43-与TiO2表面的结合为桥式三配位结构,BO33-与TiO2表面的结合为单齿单配位结构和螯桥混合式三配位结构共存。用由溶液中正丁胺的吸附等温线测定固体表面酸度的方法测定了样品的酸量,结果表明酸量大小为Ⅰ>Ⅱ>Ⅲ。用XRD技术对该系列固体酸进行考察,衍射图分析提示该系列固体酸主要都为锐钛矿型晶型,但Ⅰ、Ⅱ、Ⅲ中又各自夹杂其它不同的晶型  相似文献   

9.
SYNTHESIS AND ~(183)W NMRCHARACTERIZATION OF A-β-Ge_2W_18Ti_6O_(77)~(14) HETEROPOLYANION¥LuMENG;JingFuLIU(DepartmentofChemistry,...  相似文献   

10.
褪色光度法测定SO_3~(2-)的研究   总被引:1,自引:0,他引:1  
本文研究了SO2-3褪色碱蓝6B的反应,在pH5.2HAc-NaAc缓冲介质中,SO2-3浓度在0.39~12mg/L范围内符合比尔定律,仅Fe3+、Ni2+、Cr3+干扰测定,用于食品中SO2-3的测定,结果令人满意。  相似文献   

11.
研究了添加Al对SO42-/ZrO2超强酸样品的晶化、比表面、硫含量、超强酸性和正戊烷反应性能的影响,考察了活化温度、反应温度、Al含量和载Pt对催化剂活性和选择性的影响.SO42-/Al2O3ZrO2催化剂的酸强度与SO42-/ZrO2基本相当,但超强酸位比后者多,未载Pt时正戊烷反应活性和稳定性明显高于后者.负载Pt后,正戊烷异构化选择性和稳定性大大提高,但Pt/SO42-/Al2O3ZrO2催化剂的反应活性与Pt/SO42-/ZrO2相近,Al的促进作用不明显.  相似文献   

12.
SO42-/TiO2-WO3光催化氧化邻硝基苯酚   总被引:1,自引:0,他引:1  
彭少洪  钟理 《分子催化》2007,21(3):245-248
采用不同浓度的硫酸溶液浸渍处理TiO2-WO3,制得不同SO42-/TiO2-WO3光催化剂.考察了光催化剂对邻硝基苯酚溶液的光催化行为.发现SO42-/TiO2-WO3的光催化活性高于TiO2-WO3的光催化活性,浸渍液中H2SO4的浓度对SO42-/TiO2的催化活性有一定的影响,H2SO4溶液的最佳浓度为0.2 mol/L,最佳焙烧温度为550℃.最佳WO3的掺杂量w(WO3)为3%.催化降解过程符合一级动力学规律.  相似文献   

13.
The catalytic activities of SO42-/TiO2-MoO3 in synthesizing cyclohexanone ethylene ketal,cyclohexanone 1,2-propanediol ketal, 2-propyl-1,3-dioxolane, 4-methyl-2-isopropyl-1,3-dioxolane,2-isopropyl-1,3-dioxolane, 4-methyl-2-isopropyl-1,3-dioxolane, butanone ethy-lene ketal and butanone 1,2-propanediol ketal were reported. It has been demonstrated that SO42-/TiO2-MoO3 is an excellent catalyst. Various factors concerned in this reaction have been investigated. The optimum conditions have been found, that is, the molar ratio of aldehyde/ketone to alcohol was 1:1.5 or 1:1.3,the mass ratio of the catalyst used to the reactants was 0.25~1.5%, and the reaction time was 45~60 min. Under this conditions, the yield of cyclohexanone ethylene ketal is 82.7%, cyclohexanone 1,2-propanediol ketal is 83.4%, the yield of 2-propyl-1,3-dioxolane is 68.1%,4-methyl-2-isopropyl-1,3-dioxolane is 87.5%, the yield of 2-isopropyl-1,3-dioxolane is 70.7%,4-methyl-2-isopropyl-1,3-dioxolane is 82.5%, the yield of butanone ethylene ketal is 74.1%, and butanone 1,2-propanediol ketal is 94.9%.Some equation and experiment results concerned of the synthetic acetals or ketals were listed as follows.  相似文献   

14.
Super acidic catalyst SO42-/ZrO2 was prepared and characterized by XRD,IR,and Py-IR. Selectively catalytic gas phase flow reactions of benzene and propene over the catalyst were carried out in a made-to-measure high pressure flow reactor with a thermometer and a condenser. The benzene and propene were kept in pressure tanks at 8 : 1 ratio with N2 gas at 4. 0 MPa. The reactants were pumped into the quantifier where the pressure was maintained by N2 gas at 8. 0 MPa. They were then pumped into the reaction reactor using catalytic synthesis of isopropyl benzene. The collected liquid phase products were analyzed using GC-MS. Product analyses were carried out on SE-54. The effect of the preparative condition on the catalytic synthesis of isopropyl benzene over the catalysts has been tested. The result shows that the SO42-/ZrO2 can be used as a catalyst for the title reaction,and shows higher conversion(99.2%)for the propene and higher selectivity(93.3%)for the isopropyl benzene when the catalyst is preparated in some condition.  相似文献   

15.
Superacid catalyst SO42--ZrO2/TiO2 was applied in esterification of Acetic Acid and Butanol. The particle size of ZrO2 in the catalyst was about 12.5 nm. In catalyst preparation conditions, the effect factor order on catalytic activity is H2SO4 concentration > calcination temperature > ZrO2 supported content. The optimum preparation condition is as follows: ZrO2 content 3.5g/g; calcination temperature 600℃, and H2SO4 concentration 0.5mol/L. The catalytic activity is 96.5 vol%.SO42-/MxOy solid superacid is a kind of green catalyst, whose application perspective is bright. In this paper, SO42--ZrO2/TiO2 solid superacid was prepared with nanometer compound carrying method. The acidic strength of catalysts was measured with the following Hammett indicators, 2,4-dinitrofluorobenzene (H0=-14.52) and p-nitrochlorobenzene (H0=-12.70). Catalytic activity was evaluated with esterification reaction of Acetic Acid and Butanol. Reaction temperature was at 105℃, and reaction time was only 1h. The conversion rate of Acetic Acid was analyzed by a gas chromatograph (GC-14C SHIMADZU in Japan)The experimental results showed that H2SO4 concentration had more influences on catalytic activity than other two factors, calcination temperature and ZrO2 supported content. Since sulfur absorbed on the surface of metal oxides is necessary to the acidity of SO42-/MxOy solid superacid,H2SO4 concentration in impregnation solution is needed enough high. But, it can't be too much high,otherwise, Zirconium sulfate formed on the catalyst surface will be harmful influences on catalytic activity. In researched cover, 0.5mol/L H2SO4 concentration is the most suitable, and the catalyst prepared with this concentration has very strong acidity.The optimum preparation condition is as follows: ZrO2 content 3.5g/g; calcination temperature 600℃, and H2SO4 concentration 0.5mol/L. In the catalyst prepared with above conditions, the acidic strength (H0) of the catalyst is smaller than <-14.52, and catalytic activity is 96.5 vol%. When it was re-used in esterification reaction, catalytic activity decreased gradually with re-used times increasing(seen in Table 1). But after catalyst is used repeatedly up to five times, catalytic activity (84.3 vol %)is still higher than that of H2SO4 catalyst.The X-ray diffraction patterns showed that ZrO2 supported in TiO2 belonged tetragonal zirconia phases. Through the calculation of Scherrer formula, the particle size of ZrO2 in the catalyst is about 12.5 nm. After SO42- promoted nanometer ZrO2/TiO2 compound carrier, the diffraction peaks of tetragonal zircoma become broader and the strength weaker. It shows that adding SO4 ions restrains the crystallization of ZrO2, diminishes the size of particles. This might be why SO42--ZrO2/TiO2 has high catalytic activity and stability in acidic catalysis reaction.  相似文献   

16.
以USY分子筛为载体,采用共沉淀-浸渍法制备分子筛超强酸SO42-/Ti O2/USY,用其催化丙二酸、无水乙醇合成胡萝卜酸乙酯。考察了不同反应时间、带水剂种类、带水剂用量、醇酸比、催化剂用量、催化剂重复使用性等因素对反应酯化率的影响。结果表明:在丙二酸用量为0.1mol,醇酸摩尔比为3.1:1,催化剂用量为1.0g,反应时间为3h,带水剂环已烷用量为5m L时,酯化率达到92.13%,催化剂重复使用5次以后仍然有很高的活性。说明SO42-/Ti O2/USY对该反应具有很强且极稳定的催化活性。  相似文献   

17.
通过沉淀 浸渍法制备了一系列SO4 2-/ZrO2固体酸催化剂,利用NH3-TPD、FT-IR及间歇式高压加氢实验考察了SO4 2-/ZrO2固体酸的酸性和催化液化性能。对SO4 2-/ZrO2固体酸的结构进行了XRD、BET及TG/DTA表征。结果表明,SO4 2-/ZrO2固体酸表面酸中心强度呈非均一化、连续分布,中强酸是SO4 2-/ZrO2主要的酸中心;煤液化反应中,SO4 2-/ZrO2固体酸催化作用主要表现为催化裂解,酸中心越强,催化活性越高;提高SO4 2-/ZrO2焙烧温度,有利于提高酸中心强度及强酸中心分布、增大煤的转化率;650℃焙烧3h ,SO4 2-/ZrO2催化活性最高,煤液化转化率达到76.77%。  相似文献   

18.
SO42-/ZrO2-TiO2催化苯与1-十二烯烷基化合成十二烷基苯   总被引:1,自引:2,他引:1  
利用沉淀-浸渍法制备了SO42-/ZrO2-TiO2固体酸催化剂,优化了SO42-/ZrO2-TiO2催化苯与1-十二烯烷基化合成十二烷基苯的工艺条件,并通过IR及GC/MS对产物的结构进行了表征.结果表明: SO42-/ZrO2-TiO2对苯与1-十二烯的烷基化反应具有良好的催化性能,其催化中心主要为B酸中心.0.12g催化剂/ mL1-十二烯、n(苯)/n(烯)=6:1、反应时间3 h等优化条件下1-十二烯转化率100%,LAB与2-LAB选择性分别达到90.3%和88.6%.使用后的催化剂可以通过H2SO4浸渍500 ℃焙烧再生.GC/MS分析表明产物主要包括2~6-LAB及少量二烷基苯.  相似文献   

19.
催化精馏专用填料型固体酸SO42-/ZrO2-Al2O3-Al的研究   总被引:2,自引:0,他引:2  
为了研制催化精馏专用催化剂,采用铝阳极氧化法制备了Al2O3-Al一体型载体,并将活性固体超强酸SO42-/ZrO2引入到Al2O3-Al上,得到一种新型催化精馏专用填料式固体酸SO42-/ZrO2-Al2O3-Al催化剂.利用XRD、 SEM、 BET、 XPS、 NH3-TPD等手段对其进行了表征.结果表明,所制得的阳极氧化铝膜厚为56 μm, SO42-/ZrO2-Al2O3-Al固体酸具有比表面积大、酸强度适中的特点.XRD结果表明, ZrO2在Al2O3-Al上处于高度分散状态.将该固体酸用于乙酸/乙醇酯化反应中,显示出较高的催化活性,且稳定性较好.  相似文献   

20.
SO42-对TiO2及Ce-TiO2光催化性能的影响   总被引:1,自引:2,他引:1  
采用溶胶-凝胶法制备了纳米SO42-/Ce-TiO2, SO42-/TiO2及Ce-TiO2光催化剂,并用IR, BET, XPS, XRD等手段对所制得的样品进行表征,将其用于对有机磷农药(DDVP)稀释液的光催化降解,结果表明所制SO42-/Ce-TiO2, SO42-/TiO2具有超强酸特征,其光催化活性较Ce-TiO2有明显提高.  相似文献   

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