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1.
超临界流体干燥法制备TiO2/C纳米粒子及光催化性能   总被引:1,自引:1,他引:0  
以TiCl4为原料,采用溶胶凝胶法结合超临界流体干燥法(SCFD)制备了纳米级TiO2/C复合光催化剂.以苯酚的光催化降解对所得催化剂的催化活性进行了评价.结果表明,纳米TiO2/C复合粒子与单组分TiO2比较,复合粒子光催化活性高于单组分的TiO2,h苯酚降解率高达975 %,COD为957%.并用XRD、TEM、 UV-Vis和XPS等手段进行了表征,iO2以锐钛矿型形式存在.比较了不同制备方法制得的TiO2/C复合催化剂,得出超临界干燥法制备的光催化剂具有粒径小,比表面积大,分散性好,光催化活性高等特点.  相似文献   

2.
张敬畅  李青  曹维良 《催化学报》2003,24(11):831-834
 以TiCl4和Zn(NO3)2·6H2O为原料,采用溶胶-凝胶法结合超临界流体干燥法制备了纳米级TiO2-ZnO(7~10nm)复合催化剂,并用XRD和TEM等手段进行了表征.以苯酚光催化降解为模型反应对所制备催化剂的催化性能进行了评价.结果表明,与单组分TiO2及普通干燥法制备的TiO2-ZnO催化剂相比较,纳米TiO2-ZnO复合粒子的光催化活性有较大提高.用超临界干燥法制备的催化剂具有粒径小、分布窄、比表面积大、分散性好和光催化活性高等特点.采用超临界流体干燥法可直接制得纳米TiO2(锐钛矿型)-ZnO(非晶态)复合催化剂,可实现干燥、晶化一步完成.复合催化剂中ZnO的最佳掺入量为x(ZnO)=0.8%.超临界流体干燥法是制备纳米材料的一种新技术,具有产物容易收集和溶剂可回收利用等优点.  相似文献   

3.
超临界干燥法制备Fe2O3-SiO2气凝胶   总被引:10,自引:0,他引:10  
以正硅酸乙酯(TEOS)和硝酸铁为原料,采用溶胶-凝胶法和超临界干燥工艺制备了Fe2O3-SiO2气凝胶,研究了Fe2O3-SiO2醇凝胶的形成条件的影响,并对所得气凝胶样品结构特性进行了初步表征.所得气凝胶样品是由直径约8nm的胶体粒子构成的低密度、高孔隙率的块状非晶固态材料.  相似文献   

4.
纳米级TiO2粉体的制备研究——Ⅱ.絮凝剂及其浓度的影响   总被引:9,自引:0,他引:9  
采用溶胶-凝胶-超临界流体干燥(SCFD)法制备纳米级TiO2超细粉,详细考察了不同絮凝剂及其浓度对TiO2织构和结构性质的影响。结果表明,利用强碱溶液作为絮凝剂,浓度为5 mol·L-1是制备大孔高比表面TiO2超细粉较为适宜的条件。  相似文献   

5.
块状TiO2气凝胶的制备及其表征   总被引:12,自引:1,他引:11  
随着以溶胶-凝胶法和超临界干燥技术为基础的气凝胶制备方法的逐步完善,已不断制备出多种气凝胶[1~3].由于TiO2具有半导体特性,它常被作为光催化剂而受到重视,但是TiO2气凝胶的结构强度远比SiO2气凝胶小,在制备过程中极易碎裂粉化,所以至今未见制备块状TiO2气凝胶的报道.Dagan等[4]曾用异钛酸丁酯为母体制得TiO2气凝胶,并发现水杨酸在TiO2气凝胶存在下的光解速率是一般TiO2粉末的10倍,但获得的仅为TiO2气凝胶粉末.张敬畅等[5]以无机盐为原料,采用溶胶-凝胶法结合超临界干燥技术制备了纳米级TiO2气凝胶,也未能得到块状TiO2气凝胶材料. 本文报道以正钛酸丁酯为原料制备块状TiO2气凝胶的方法,并用TEM,SEM,XRD和IR等手段对所获得的气凝胶进行了结构表征.  相似文献   

6.
用乙醇超临界流体干燥法制备了CuO/ZrO2超细粒子催化剂,考察了制备过程中水凝胶pH值对催化剂物性参数如比表面积、孔结构和晶相等的影响,并与干凝胶进行了对比.结果表明,pH值在6.5~10.0范围内对晶相影响不大,但对物性结构的影响较大,比表面积和孔体积很快增大,孔形由椭圆形转变为均一的圆柱形,最可几孔径减小,微孔增多;与干凝胶相比,气凝胶表现出高比表面积和多孔结构的特点.pH=10.0时,气凝胶型催化剂的物性参数最佳  相似文献   

7.
超临界干燥法制备SiO2气凝胶的研究   总被引:13,自引:2,他引:13  
通过溶胶-凝胶法和超临界干燥技术制得了SiO2气凝胶,研究了溶液的pH值对凝胶时间及气凝胶密度的影响,应用XRD、SAXS、TEM和等方面对气凝胶样品的结构进行了初步研究,结果表明,SiO2气凝胶是连续网络的非晶态纳米多孔固体,其基本粒子的平均直径约10nm.  相似文献   

8.
用超临界流体干燥法制备纳米级二氧化锆   总被引:4,自引:0,他引:4  
本文采用超临界流体干燥技术(Supercriticalfliuddryingtechnique),用超临界乙醇作干燥(脱水)剂制备了纳米粒子ZrO_2,并用X-射线衍射和透射电镜对其进行了表征.结果表明,用超临界流体干燥法能获得颗粒细、大小均匀和抗团聚性能好的纳米粒子。  相似文献   

9.
非超临界干燥法制备SiO2气凝胶   总被引:26,自引:2,他引:26  
应用廉价的国产硅溶胶为原料,通过凝胶过程和干燥过程条件的选择,以非超临界干燥技术最终获得了块状SiO2气凝胶.该气凝胶外观状态与应用正硅酸乙酯为原料制得的完全一致,其微观结构也相当良好,其直径和孔分布均匀.溶液的配比和pH对凝胶过程和气凝胶样品的密度有比较明显的影响,同时pH值与SiO2的粒径之间也有一定的关系.依据制备条件的变化,所得SiO2气凝胶的密度约在200~400 kg•m-3,比表面在250~300 m2•g-1之间变化,平均孔径约为11~20 nm,而孔隙率在91%左右.  相似文献   

10.
 摘要:用水热合成法制备了锰取代的六铝酸盐催化剂,并比较了超临界干燥法和普通烘箱干燥法对催化剂结构及甲烷燃烧反应活性的影响.DTA-MS结果表明,超临界干燥过程中,催化剂前驱物中的表面铝羟基部分被乙氧基取代.这种表面修饰作用可保持铝分散的均匀性,使催化剂前驱物中碳酸锰和碳酸镧的分解温度明显降低,且氢氧化铝的脱水温度维持在较适宜的范围内;焙烧后,易形成六铝酸盐相.甲烷燃烧反应结果表明,用超临界干燥方法制得的催化剂对甲烷燃烧反应的催化活性明显高于用普通烘箱干燥方法制得的催化剂.  相似文献   

11.
CuO/ZrO2超细粒子催化剂的制备和物性结构表征Ⅱ.煅烧温度的影响师江柳刘金尧朱起明(清华大学化学系一碳化工国家重点实验室,北京100084)张鎏张继炎(天津大学化工系,天津300072)关键词氧化铜,氧化锆,超临界流体干燥,超细粒子,煅烧,物性结...  相似文献   

12.
用超临界流体干燥(SCFD)法制备出大孔高比表面ZrO2气凝胶超细粉,详细考察了初始水凝胶pH值对ZrO2超细粉形貌、晶相组成、颗粒大小与分布、比表面积及孔结构等织构和结构性质的影响。在实验范围内,当水凝胶pH值为10.30时,所制得的ZrO2超细粉具有最大的比表面积和孔体积,最小的表观堆密度和平均粒径,颗粒分布均匀狭窄,颗粒间连接成三维网络构状态,较好地保持了凝胶原始织构。  相似文献   

13.
不同干燥过程对超细TiO2粉体性质的影响   总被引:12,自引:0,他引:12  
考察了采用不同干燥工艺制备的TiO2粉体在粒子形貌、颗粒大小与分布、晶相组成以及比表面积和孔结构等织构和结构性质方面的差异。结果表明,利用常规的干燥方法,由水凝胶脱水所得的颗粒,颗粒间严重团聚,颗粒粒径大且分布不均匀,比表面积和孔体积最小;由醇凝胶直接脱水,则可以显著提高粉体的织构性能.而采用超临界流体干燥法则可以进一步提高粉体的性能,比表面积由水凝胶的4.88m2·g-1增大到113.8m2·g-1,提高了近30倍;孔体积由0.027cm3·g-1增大到0.41cm3·g-1.大约提高了15倍;而且其能够有效地防止粒子间的团聚,较好地保持了湿凝胶的网络结构,使颗粒尺寸降低且分布均匀,可重复性好.  相似文献   

14.
A series of nanosized Co/Zn/Mn/K composite catalysts for Fischer-Tropsch synthesis (FTS) were prepared by supercritical fluid drying (SCFD) method and common drying (CD) method. The nanosized cobalt-based catalysts were characterized by XRD, TEM and BET techniques. Their catalytic performances were tested in a slurry-bed reactor under FTS reaction conditions. The drying and crystallization were carried out simultaneously during SCFD, therefore, the catalysts prepared by SCFD method have ideal structure and show the FTS performance superior to the others prepared by CD method. The FTS activity and selectivity were improved via adding Zn, Mn and K promoters, and less CH4 and CO2 as well as higher yield of C5+ products were achieved. The optimal performance of a 92% CO conversion and a 65% C5+ product yield was obtained over a catalyst with the component of Co/Zn/Mn/K = 100/50/10/7. Furthermore, the catalytic performance was studied under the conditions of liquid-phase and supercritical phase slurry-bed, and C5+ product yield were 57.4% and 65.4%, respectively. In summary, better catalytic performance was obtained using the nanosized catalyst prepared by SCFD method under supercritical reaction conditions, resulting in higher conversion of CO, less CO2 byproduct, and higher yield of C5+ products.  相似文献   

15.
Based on the studies of their physical properties such as aqueous solution uptake, electric conductivity, and microstructure, CTAB/hexanol/water reverse micelles (CTAB, cetyltrimethyl ammonium bromide) were used to prepare ZrO2-Y2O3 nanoparticles. The relationship between the micelle microstructure and size, morphology, and aggregate properties of particles prepared was also investigated. It has been found that with high CTAB concentration ([CTAB] > 0.8 mol/l), the reverse micelles can solubilize a sufficient amount of aqueous solution with high metallic ion concentration ( approximately 1.0 mol/L), while the microstructure of the reverse micelles keeps unchanged. The most important factor affecting the size and shape of reverse micelles was found to be the water content w0 (w0, molar ratio of water to surfactant used). When both the CTAB concentration and the w0 values are low, the diameters of reverse micelles are below 20 nm, and the ZrO2-Y2O3 particles prepared are also very small. However, the powders obtained were found to form a lot of aggregates after drying and calcination. High CTAB concentration, high w0 value, and high metallic ion concentration in the aqueous phase for high powder productivity were found to be the suitable compositions of reverse micelles for preparing high-quality ZrO2-Y2O3 nanoparticles. Under these conditions, the reverse micelles are still spherical in shape even the reverse micellar system is nearly saturated with aqueous solutions. These reverse micelles were found to have a diameter of between 60 and 150 nm and the ZrO2-Y2O3 particles prepared therefrom range from 30 to 70 nm with spherical shape and not easy to form aggregates. Copyright 1999 Academic Press.  相似文献   

16.
纳米氧化锆的制备与应用   总被引:4,自引:0,他引:4  
综述了纳米ZrO2粉体的制备与应用,展望了其发展前景。目前,纳米ZrO2粉体的制备方法以化学法为主。文章介绍了共沉淀法、金属醇盐法、溶胶-凝胶法、反胶团法、水热法、溶剂蒸发法、共蒸馏法及化学气相法等制备方法,并对上述各种方法作出评价。文章还介绍了纳米ZrO2粉体的应用研究,将其分散于陶瓷基体中以降低陶瓷的烧结温度,提高陶瓷的韧性和强度;将纳米ZrO2用作催化剂,在催化加氢及土壤固氮等方面呈现良好的催化活性和选择性。  相似文献   

17.
A simple and general method for the large‐scale production of yolk–shell powders with various compositions by a spray‐drying process is reported. Metal salt/dextrin composite powders with a spherical and dense structure were obtained by spray drying and transformed into yolk–shell powders by simple combustion in air. Dextrin plays a key role in the preparation of precursor powders for fabricating yolk–shell powders by spray drying. Droplets containing metal salts and dextrin show good drying characteristics even in a severe environment of high humidity. Sucrose, glucose, and polyvinylpyrrolidone are widely used as carbon sources in the preparation of metal oxide/carbon composite powders; however, they are not appropriate for large‐scale spray‐drying processes because of their caramelization properties and adherence to the surface of the spray dryer. SnO2 yolk–shell powders were studied as the first target material in the spray‐drying process. Combustion of tin oxalate/dextrin composite powders at 600 °C in air produced single‐shelled SnO2 yolk–shell powders with the configuration SnO2@void@SnO2. The SnO2 yolk–shell powders prepared by the simple spray‐drying process showed superior electrochemical properties, even at high current densities. The discharge capacities of the SnO2 yolk–shell powders at a current density of 2000 mA g?1 were 645 and 570 mA h g?1 for the second and 100th cycles, respectively; the corresponding capacity retention measured for the second cycle was 88 %.  相似文献   

18.
制备方法对钒磷氧复合氧化物晶相和比表面积的影响   总被引:3,自引:0,他引:3  
曾翎  祝巨 《分子催化》2003,17(5):367-370
采用水相、有机相及球磨法等不同方法制备了VPO催化剂,使用BET、XRD等测试手段对VPO催化剂的比表面积、晶相结构进行了表征,研究发现水相法制备时,比表面积较小,晶相较复杂,焙烧温度升高,结晶度增加,有机相和球磨法制备时,催化剂的比表面积较大,晶相几乎为(VO)2P2O7,在超临界条件下干燥,可使所有催化剂比表面积显著增大,晶相更完善。  相似文献   

19.
制备方法对负载型纳米ZrO2/Al2O3复合载体性能的影响   总被引:4,自引:0,他引:4  
李凝  罗来涛 《催化学报》2007,28(9):773-778
采用浸渍-沉淀法制备了负载型纳米ZrO2/Al2O3复合载体.采用X射线衍射、N2物理吸附、差示扫描量热(DSC)和程序升温脱附等技术考察了浸渍方式和干燥方法对复合载体的表面性能、热稳定性和晶相结构的影响.结果表明,ZrO2/Al2O3复合载体中没有生成ZrO2-Al2O3复合氧化物或固溶体,纳米ZrO2仅负载在Al2O3的表面.微波干燥法制备的ZrO2/Al2O3复合载体的比表面积(158.7 m2/g)较大,最可几孔径为19.4 nm,ZrO2的粒度为4.2 nm,晶相结构为四方相ZrO2.微波诱导作用使ZrO2/Al2O3复合载体表面产生了新的酸碱中心,微波干燥法制备的ZrO2/Al2O3复合载体具有较强的热稳定性,在873~1 073 K范围内DSC曲线没有出现吸热峰,而其它干燥方法制备的复合载体在903~1 023 K范围内出现了较明显的吸热峰,表明复合载体表面的部分四方相ZrO2转变为单斜相ZrO2(m-ZrO2).对超声波处理过的复合载体进行微波干燥能进一步提高纳米ZrO2与Al2O3之间的相互作用,纳米粒子的粒度(3.4 nm)更小,分布更均匀,但没有改变ZrO2的晶相结构.  相似文献   

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