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1.
Thermogravimetry-differential scanning calorimetry-mass spectrometry-Fourier transform infrared spectrometry(TG-DSC-MS-FTIR) simultaneous analysis was used to study the effects of 10.7 μm and 40 nm Al on the thermal decomposition of the Hexogen/ammonium perchlorate(RDX/AP,1/2,mass ratio) mixture.TG-DSC results show that there are two mass loss processes for the thermal decomposition of RDX/AP/Al.The first one is mainly ascribed to the thermal decomposition of RDX.The reaction rate of RDX/AP/10.7 μm Al is so fast that the apparent activation energy,calculated by model-free Friedman method,is negative,which is the same as that of RDX/AP.30%(mass fraction) 40 nm Al added in RDX/AP change the activation energy from negative to positive value.The second mass loss process of the RDX/AP/A1 mixture is ascribed to the thermal decomposition of AP.This process can be divided into three stages for RDX/AP with and without Al.The kinetics model is not changed in the presence of micro-sized Al,while it is changed from CnB/D1/D1 to CnB/D1/D4 after the addition of 40 nm Al to RDX/AP.The reaction rate constant of the first stage and the end temperature of the second stage decrease,while the end temperatures of the third stage increase in the presence of 40 nm Al.The MS-FTIR results show there is a competition between the formation reactions of HNCO,N2O and NO2 during the second mass loss process.  相似文献   

2.
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   

3.
采用化学氧化沉淀法, 以过硫酸钾为氧化剂制备了硅藻土负载过氧化银(AgO)复合材料, 并使用X射线衍射仪(XRD)、扫描电子显微镜(SEM)和激光粒度仪对其进行了表征, 借助热重(TG)分析研究了复合材料的热分解过程和非等温热分解动力学. 结果表明, 制备的复合材料为正方晶系方英石和单斜晶系AgO混合体, 且AgO质量分数为12.7%; 复合材料的中位径为18.53 μm, 比表面积为203.32 m2/kg, 颗粒的粒度分布在0.614~116.5 μm之间. 复合材料中AgO在171 ℃开始分解成Ag2O, 在更高温度时Ag2O进一步分解成Ag; 热分解反应服从以核生成和核成长为控制步骤的A1机理, 其热分解表观活化能为131.37 kJ/mol, 反应频率因子为3.19×1013 s-1. 同自制的AgO粉末相比, 复合材料中AgO的热分解温度升高, 表观活化能上升约40 kJ/mol.  相似文献   

4.
以聚乙烯吡咯烷酮(PVP)为添加剂,利用溶剂热法合成了Cu2O微球.考察了PVP用量以及反应温度对产物形貌的影响,并在反应时间为2.5与4.5h时分别合成了直径为100-200nm和1μm的Cu2O微球.同时,利用差热分析(DTA)技术考察了不同直径的Cu2O微球对高氯酸铵(AP)热分解的催化效果,结果表明:添加2%(w)的直径为100-200nm和1μm的Cu2O微球使得AP的高温分解温度分别降低了116和118°C,AP在低温阶段的分解量也明显提高.  相似文献   

5.
通过溶胶-凝胶法制备了石墨烯水凝胶, 并将其与高氯酸铵(AP)复合, 然后分别采用自然干燥、冷冻干燥和超临界CO2干燥三种干燥方式制备了AP/石墨烯复合材料, 并通过扫描电镜(SEM)、元素分析、X射线衍射(XRD)、差示扫描量热仪(DSC)和热重-红外联用技术(TG-FTIR)研究了不同干燥方式对其结构和热分解行为的影响. 结果表明, 干燥方式对AP/石墨烯复合材料的形貌具有明显影响, 其中通过超临界CO2干燥制备的AP/石墨烯复合材料基本能保持与石墨烯气凝胶相似的外观和多孔结构. 通过自然干燥、冷冻干燥和超临界CO2干燥制备的AP/石墨烯复合材料中AP的质量分数分别为89.97%、92.41%和94.40%, 其中通过超临界CO2干燥制备的复合材料中AP的粒径尺寸为69 nm. DSC测试结果表明, 石墨烯对AP的热分解过程具有明显的促进作用, 能使AP的低温分解过程大大减弱, 高温分解峰温明显降低. 三种干燥方式相比, 通过超临界CO2干燥制备的AP/石墨烯复合材料中石墨烯的促进作用最明显. 与纯AP相比, 其高温分解峰温降低了83.7℃, 表观分解热提高到2110 J·g-1. TG-FTIR分析结果表明, AP/石墨烯复合材料的热分解过程中, AP分解产生的氧化性产物与石墨烯发生了氧化反应, 生成了CO2.  相似文献   

6.
本文报道了三苯基氧化膦与氯金酸形成的配合物 HAu Cl4.H2 O.4(C6H5) 3 PO的非等温热分解动力学 ,采用微分与积分相结合的方法 ,推断出了它的热分解反应机理 ,其热分解动力学方程为 :dα/dt=AΦe-E/ RT(32 ) (1 α) ( 2 / 3 ) [(1 α) ( 1 / 3 ) - 1 ] -1  相似文献   

7.
合成了2,6-二氨基-3,5-二硝基吡嗪-1-氧化物(LLM-105)2种含能配合物[Cu4O2(C4N6O5H2)2(CH3COO)2(DMF)2]·DMF(1)((C4N6O5H2)2-为配体LLM-105失去2个H+)和[Co(C4N6O5H3)3]·7H2O(2)((C4N6O5H3)-为LLM-105失去1个H+),用X射线单晶衍射法测定了其分子结构。配合物1属正交晶系,空间群为Pbca,配合物2属三斜晶系,空间群为R3。用DSC,TG-DTG技术对配体和2个配合物的热分解进行了研究。用Kissinger法和Ozawa-Doyle法对配合物热分解过程中放热峰的表观活化能进行了计算。同时研究了2种配合物对AP热分解催化效果的影响,结果表明,2种配合物使AP的高温分解峰温分别提前117.42和71.85℃,分解放热量增加1 916.97和1 433.76 J·g-1,对AP热分解具有非常显著的催化效果。  相似文献   

8.
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   

9.
氢氧化镁分解动力学的研究   总被引:1,自引:0,他引:1  
以硼泥为原料与硫酸反应制备出七水硫酸镁,以氢氧化钠为沉淀剂制备出符合标准HG/T 3607-2000的氢氧化镁.利用XRD,SEM和TEM对氢氧化镁进行了表征,DTA-TG对氢氧化镁的热分解动力学进行了研究.XRD结果表明:制备粉体为单一Mg(OH)2.SEM和TEM结果表明:样品为片状或针状纤维,片直径大小不一,在20~50 nm之间,针状纤维形状不规则,大小不一致,长度在20~100 nm之间.利用Kissinger法和Ozawa法计算出的氢氧化镁热分解反应活化能分别为135.14和141.61 kJ·mol-1.利用Coats-Redfern法和Dolye法判断氢氧化镁热分解反应机理函数为A1.5.  相似文献   

10.
水热条件下合成了一个四唑含能配合物[Co(pzta)(H_2O)_2](pzta=5-吡嗪基四唑)。运用TG-DSC热分析仪研究了配合物的热分解行为;在非等温条件下,采用Kissinger's和Ozawa-Doyle's两种方法,对配合物进行了非等温动力学研究,得到它的表观活化能(E=153.63 k J mol-1)。利用DSC技术分析了配合物对AP和HMX热分解行为的影响,结果表明:配合物的加入对于HMX的放出的热量和峰温影响不大;使AP的分解峰温提前不多,但是加入配合物后呈现出的剧烈放热过程,放热量增加,因此配合物对AP具有较好的催化燃烧效果。  相似文献   

11.
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   

12.
In the present paper a pure phase of the copper chromite spinel nanoparticles (CuCr2O4 SNPs) were synthesized via the sol–gel route using citric acid as a complexing agent. Then, the CuCr2O4 SNPs has been characterized by field emission scanning electron microscope (FE-SEM), transmission electron microscopy (TEM), and X-ray diffraction (XRD). In the next step, with the addition of Cu–Cr–O nanoparticles (NPs), the effects of different parameters such as Cu–Cr–O particle size and the Cu/Cr molar ratios on the thermal behavior of Cu–Cr–O NPs + AP (ammonium perchlorate) mixtures were investigated. As such, the catalytic effect of the Cu–Cr–O NPs for thermal decomposition of AP was evaluated by thermogravimetric analysis (TGA) and differential scanning calorimetry (DSC). TGA/DSC results showed that the samples with different morphologies exhibited different catalytic activity in different stages of thermal decomposition of AP. Also, in the presence of Cu–Cr–O nanocatalysts, all of the exothermic peaks of AP shifted to a lower temperature, indicating the thermal decomposition of AP was enhanced. Moreover, the heat released (ΔH) in the presence of Cu–Cr–O nanocatalysts was increased to 1490 J g−1.  相似文献   

13.
罗阳  陈沛  赵凤起  胡荣祖  李上文  高茵 《中国化学》2004,22(11):1219-1224
Introduction 3,3-Bis(azidomethyl)oxetane/tetrahydrofuran (BAM- O/THF, marked as B/T) copolymer can be used as an azide binder of high energy propellants with the lower signature, and lower sensitivity to improve the me-chanical properties at lower temperature and the burning rate characteristics. Its decomposition kinetics and the effects of THF on the decomposition kinetics of BAMO copolymers have been reported.1,2 In the present work, we report the kinetic model function and kinetic pa…  相似文献   

14.
N-脒基脲二硝酰胺放热分解反应的动力学行为   总被引:1,自引:0,他引:1  
用DSC和微热量仪研究了N-脒基脲二硝酰胺(GUDN)的放热分解反应动力学行为和比热容, 计算得到程序升温下GUDN主放热分解反应的动力学参数(活化能Ea和指前因子A)、自加速分解温度(TSADT)、绝热条件下达到最大分解反应速率的时间(tTMRad)和至爆时间(tTIad). 结果表明, 在非等温DSC条件下, GUDN的热分解过程可用经验级数自催化动力学方程dα/dt=1018.49exp(-195500/RT)(1-α)0.81+1018.00exp(-177000/RT)α1.29(1-α)0.71描述. 热分解转热爆炸的临界温升速率为0.1236 K·h-1. 所得的TSADT、tTMRad和tTIad值分别为473.95 K、2.24 s和3.51 s.  相似文献   

15.
Reduced graphene oxide/Zinc ferrite (rGO/ZnFe2O4) nanohybrids are successfully decorated on the surface of the rGO sheets through a simple, one-step hydrothermal method. ZnFe2O4 nanoparticles (NPs) are homogeneously anchored on the rGO sheets. The rGO/ZnFe2O4 hybrids are characterized by XRD, FT-IR, XPS, TEM, Raman, BET. The rGO/ZnFe2O4 hybrids demonstrate amazing catalytic activity on thermal decomposition of ammonium perchlorate (AP), which is better than that of bare ZnFe2O4 NPs. TG-DTA results indicate that the ZnFe2O4 NPs in the hybrids with increasing ratio (1%, 3%, 5%) could decrease the second decomposition temperature of AP by 42.7?°C, 55.0?°C, 68.1?°C, respectively, and reduce the apparent activation energy of AP from 160.2?kJ?mol?1 to 103.8?kJ?mol?1. This enhanced catalytic performance is mainly attributed to the synergistic effect of ZnFe2O4 NPs and rGO.  相似文献   

16.
Differential scanning calorimetry (DSC) was applied to analyze thermal decomposition of methyl ethyl ketone peroxide (MEKPO). Thermokinetic parameters and thermal stability were evaluated. MEKPO decomposes in at least three exothermic decomposition reactions and begins to decompose at 30–32 °C. The total heat of decomposition is 1.26 ± 0.03 kJ g−1. Thermal decomposition of MEKPO can be described by a model of two independent reactions: the first is decomposition of a less stable isomer of MEKPO, followed by decomposition of the main isomer, after which an exothermic reaction of the reaction products with the solvent, dimethyl phthalate. The results can be applied for emergency relief system design and for emergency rescue strategies during an upset or accident.  相似文献   

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