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1.
纳米Cu2O的制备及其对高氯酸铵热分解的催化性能   总被引:19,自引:0,他引:19  
 以Cu(NO3)2和NaOH为原料,以水合肼为还原剂,通过沉淀法在室温下制备了纳米Cu2O. 采用X射线衍射、透射电镜和X射线光电子能谱等手段对产物进行了表征,并用热分析法考察了不同形貌的纳米Cu2O对高氯酸铵热分解的催化作用. 结果表明,通过改变NaOH溶液的加入量可分别得到长针形和多边形的纳米Cu2O. 通过调节反应物浓度可以将纳米Cu2O粒径控制在19~68 nm. 不同形貌的纳米Cu2O均能强烈催化高氯酸铵的热分解,其中分散性良好的多边形纳米Cu2O的催化活性较高,添加2%的多边形纳米Cu2O可使高氯酸铵的高温分解温度降低103 ℃,分解放热量由590 J/g增至1350 J/g.  相似文献   

2.
纳米Co3O4的制备及其对高氯酸铵热分解的催化性能   总被引:5,自引:0,他引:5  
 选用CoCl2·6H2O分别与NaOH, H2C2O4·2H2O, Na2CO3·10H2O及Na2C2O4组成四个反应体系,通过室温固相反应制备了不同平均粒径的纳米Co3O4, 并用X射线衍射和透射电镜对Co3O4的物相、形貌和粒径大小进行了表征. 结果表明, Co3O4的平均粒径分别为23, 30, 35和150 nm, 大小均匀,分散性好. 还用差热分析法考察了纳米Co3O4对高氯酸铵热分解的催化性能,并与微米Co3O4进行了比较. 结果表明,纳米Co3O4可使高氯酸铵的低温放热峰消失,高温放热峰温度降至323.5 ℃, 降低了128.5 ℃, 表观分解热增加了750 J/g, 达 1265 J/g, 纳米Co3O4对高氯酸铵热分解的催化性能明显好于微米Co3O4.  相似文献   

3.
采用胶晶模板法制备出具有三维多孔结构的纳米CoFe2O4。利用X射线衍射仪(XRD)、傅里叶变换红外(FT-IR)光谱仪、扫描电镜(SEM)、透射电镜(TEM)和N2吸附-脱附对样品的晶型和形貌结构等进行表征,采用差示扫描量热法(DSC)对比研究多孔纳米CoFe2O4和球形纳米CoFe2O4对高氯酸铵(AP)的热分解性能的影响,并考察这两种催化剂对AP催化热分解的动力学参数。结果显示,制备出的多孔纳米CoFe2O4样品具有典型的尖晶石结构,孔径约200 nm;比表面积明显高于40 nm球形CoFe2O4,达到55.646 m2·g-1。DSC测试结果表明:多孔纳米CoFe2O4的加入促进了AP的热分解,最高使AP的高温分解峰温降低91.46℃,能量释放最高达1120.88 J·g-1,是纯AP分解放热量的2.3倍;多孔纳米CoFe2O4具有较高的比表面积,能提高催化反应的接触面积,使AP的高温分解峰温度更低,反应活化能较小,从而表现出比球形纳米CoFe2O4更高的催化活性。此外,对多孔纳米CoFe2O4催化AP的热分解机理进行初步探索,纳米多孔催化剂对气态中间产物的作用促进了AP的热分解。  相似文献   

4.
纳米Fe2O3/高氯酸铵复合粒子的制备及其热分解性能研究   总被引:8,自引:1,他引:7  
马振叶  李凤生  陈爱四  白华萍 《化学学报》2004,62(13):1252-1255,J004
用溶剂-非溶剂法制备了纳米Fe2O3/高氯酸铵(AP)复合粒子,并用TEM,SEM,XRD和ICP对其进行了表征.为了研究纳米复合粒子中纳米Fe2O3对AP热分解的催化性能,将相同比例的微米Fe2O3和纳米Fe2O3与AP分别简单混合后作对比,并用DTA对三种样品进行了热分析.结果表明,三种样品中的Fe2O3粒子都能催化AP的热分解;但纳米Fe2O3粒子的催化性能优于微米Fe2O3粒子,纳米Fe2O3/AP复合粒子中纳米Fe2O3对AP的催化性能优于纳米Fe2O3与AP简单混合物.与纳米Fe2O3与AP简单混合的样品相比,纳米复合粒子中的AP高温分解峰温降低20.1℃,低温分解峰几乎消失,表观分解热由850.2J/g提高到1080.8J/g.证明纳米Fe2O3与AP的复合处理能显著提高纳米Fe2O3对AP热分解的催化性能.并用不同样品中AP热分解的动力学参数对所得结果进行了理论分析.  相似文献   

5.
介绍一个仪器分析综合实验——纳米Fe_2O_3和Fe_3O_4的制备及其催化高氯酸铵热分解性能的研究。采用水热法合成纳米Fe_3O_4,进而煅烧得到纳米Fe_2O_3。使用X射线粉末衍射(XRD)对制得的样品结构进行表征,通过透射电镜(TEM)可以发现其为球形颗粒,粒径在10–20 nm范围内。将制得的纳米Fe_2O_3和纳米Fe_3O_4按不同比例加入高氯酸铵(AP)中,通过对混合物进行热分析(TG-DSC),发现纳米Fe_2O_3和纳米Fe_3O_4可以明显促进AP的分解,且Fe_2O_3的催化效果优于Fe_3O_4的催化效果,并对催化机理进行了简单讨论。通过该实验,可以让学生学习水热反应的方法,掌握利用XRD、热分析等多种手段对化合物结构及性能进行表征的技能。  相似文献   

6.
纳米铜粉对高氯酸铵热分解的影响   总被引:3,自引:0,他引:3  
The decomposition behaviour of ammonium perchlorate (AP) has been investigated in the presence of Cu nanopowder by DTA. The results show that nanometer Cu powder decreased the first and second thermal decomposition temperature of AP by 35.1 ℃ and 130.2 ℃, respectively, and the DTA heat release of AP in the presence of Cu nanopowders increased to 1.20 kJ·g-1, showing good catalytic effect on the thermal decomposition of AP. The catalytic effect of Cu micron-size powder on the thermal decomposition of AP was less than that of Cu nanopowder. With the increase in content, Cu nanopowder enhanced its catalytic effect on the high temperature decomposition of AP, however, it weakened its catalytic effect on the low temperature decomposition of AP. The mechanism of catalysis for the thermal decomposition of AP is as follows: (1) metal oxider acts as the intermedium in the process of election tranfer, (2) Cu nanopowder reacts with the decomposed product of AP, (3) Cu nanopowder has special surface effect.  相似文献   

7.
The thermal decomposition characteristics of general ammonium perchlorate (g-AP) influenced by the addition of aluminum, nickel with different particle sizes (general and nano) are studied by TG and DSC. The results show that aluminum powders (both general and nano size) are nearly uninfluenced. Nano nickel powders have the greatest influence on the decomposition properties of g-AP among metal powders. Such accelerating effects of nanonickel powders are more apparent on the stage of high temperature decomposition than low temperature decomposition of g-AP and will be weakened with the decrease of the content of nanonickel. Nanonickel powders are also more effective than super fine nickel powders on accelerating the thermal decomposition of superfine AP (s-AP). The kinetic parameters of the thermal decomposition of s-AP and mixture of s-AP and nano nickel powders are obtained from the TG-DTG curves bythe integral method based on the Coats-Red fern equation. Nanonickel powders reduce the apparent activation energy of the thermal decomposition of s-AP from 157.9 kJ/mol to 134.9 kJ/mol. The most probable mechanism functions of the thermal decomposition reaction for s-AP and mixture of s-AP and nano nickel powders both belong to systems of Avrami-Erofeev equations. The mechanism of such accelerating effects has been discussed.  相似文献   

8.
以硝酸镧和硝酸钴为原料,通过硬脂酸法制备了纳米LaCoO3。采用红外光谱、X射线衍射、透射电镜等测试手段对产物进行了表征,并用热分析法考察了不同含量的纳米LaCoO3对高氯酸铵热分解的催化作用。结果表明,在600℃下可获得结晶良好的钙钛矿型纳米LaCoO3,粒径约40-60 nm。纳米LaCoO3能强烈催化高氯酸铵的热分解,催化作用随着LaCoO3含量的增加而增强。添加5%的纳米LaCoO3可使高氯酸铵的高温分解温度下降116℃,分解放热量也由2%时的1390 J·g^-1增至1600 J·g^-1。  相似文献   

9.
纳米金属粉对高氯酸铵热分解特性的影响   总被引:12,自引:0,他引:12  
催化性能;纳米金属粉对高氯酸铵热分解特性的影响  相似文献   

10.
采用微乳液法制备了立方晶系的NdCoO3纳米晶.利用DSC/TG-MS研究了NdCoO3对AP热分解的催化作用.结果表明,在NdCoO3的催化作用下,AP的热分解反应峰值温度下降了113℃,表观分解反应热从655 J·g-1增加到1 363 J·g-1,分解的气相产物主要有NH3,H2O,O2,HCl,N2O,NO,NO2和Cl2.在金属氧化物表面吸附生成超氧化离子(O2-)和氧离子(O-,O2-),这是加速AP分解反应的主要原因.加入NdCoO3催化AP热分解,由于对氨的氧化深度不同而导致分解放热量的增加.  相似文献   

11.
LI  Cheng  MA  Zhenye  ZHANG  Lixiong  QIAN  Renyuan 《中国化学》2009,27(10):1863-1867
Metal/oxide nanoparticles are attractive because of their special structure and better properties. The Ni/TiO2 nanoparticles were prepared by a liquid phase chemical reduction method in this paper. The obtained‐products were characterized by inductively coupled plasma (ICP), X‐ray diffraction (XRD), high‐resolution transmission electron microscopy (HRTEM) and scanning electron microscopy (SEM). The results show that Ni particles in Ni/TiO2 nanoparticles exhibit better dispersion and the size of most Ni particles is 10 nm or so. The catalytic activity of Ni/TiO2 nanoparticles on the thermal decomposition of ammonium perchlorate (AP) was investigated by simultaneous thermogravimetry and differential thermal analysis (TG‐DTA). Results show that composite process of Ni and TiO2 can improve the catalytic activity of Ni nanoparticles on the thermal decomposition of AP, which is mainly attributed to the improvement of Ni dispersion in Ni/TiO2 nanoparticles. The catalytic activity of Ni/TiO2 nanoparticles increases with increasing the weight ratio of Ni to AP.  相似文献   

12.
纳米Co-B非晶态合金对高氯酸铵分解的催化性能   总被引:1,自引:0,他引:1  
 利用化学还原法制备了纳米 Co-B 非晶态合金,并用透射电镜、X射线衍射、差示扫描量热和N2吸附表面积测试等技术对样品进行了表征. 运用差热分析研究了纳米 Co-B 非晶态合金对高氯酸铵(AP)分解的催化性能. 结果表明,加入 Co-B 非晶态合金后AP的高低温放热峰相连,合并成一个高而大的放热峰,且峰温有很大程度的降低, 这说明纳米 Co-B 非晶态合金对AP热分解有很好的催化活性. 同时, Co-B 非晶态合金能使AP的表观分解热显著增大.  相似文献   

13.
ZnTiO3 nanocrystals were prepared by sol-gel method, using Zn(NO3)2 and Ti(C4H9O)4 in the topic. The as-prepared ZnTiO3 nanocrystals were characterized by XRD, FTIR and TEM, and the catalytic performance of ZnTiO3 nanocrystals of different contents for the ammonium perchlorate(AP)decomposition was investigated by thermal analysis. The results indicate that ZnTiO3 with pure cube structure can be synthesized at 600 ℃ by this procedure,which was spheroid with particle size of about 60~100 nm. The results expressed that the low temperature decomposition peaks of AP is advanced by 17 ℃ and the high temperature decomposition peaks of AP is advanced by 24 ℃ when adding 5% nanoparticle ZnTiO3 powder. The catalytic effects of ZnTiO3 powders on the high temperature decomposition of AP are less than that of nanometer metal powders, but all the micron metal powders decrease the low decomposition temperature of AP.  相似文献   

14.
采用化学液相沉淀法制备Y2O3纳米粒子/碳纳米管复合体(Y2O3/CNTC),利用扫描电镜(SEM)和X 射线光电子能谱(XPS)对其结构和成分进行了表征. 结果表明, Y2O3纳米粒子能负载在碳纳米管上,且负载效果较好. 采用差热分析研究了Y2O3/CNTC 对高氯酸铵热分解的催化性能, 结果表明, Y2O3 /CNTC 可显著降低高氯酸铵(AP)的高温分解峰温,表现出对AP 高温分解良好的催化性能. 相同量的Y2O3/CNTC 和纯Y2O3纳米粒子进行对比, Y2O3 /CNTC表现出更强的催化性能.当Y2O3/CNTC的质量分数为4%时,使AP的高温分解峰温提前131.14C[deg].  相似文献   

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