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1.
用浸渍-分解法将Bi2O3纳米颗粒沉积在TiO2纳米管壁上, 制备了Bi2O3/TiO2纳米管阵列. 用电感耦合等离子体发射光谱(ICP-AES)测定了Bi2O3/TiO2 纳米管阵列的化学组分, 利用X 射线衍射(XRD)、扫描电镜(SEM)、透射电镜(TEM)和紫外-可见(UV-Vis)吸收光谱表征了所制备的样品. 通过在可见光下(λ>400 nm)降解甲基橙(MO)水溶液来评价样品的光催化活性. 结果表明, Bi2O3纳米颗粒均匀地沉积在TiO2纳米管中. Bi2O3/TiO2纳米管阵列具有比纯Bi2O3膜和N-TiO2纳米管阵列高得多的可见光催化活性. Bi2O3/TiO2纳米管阵列活性的增强是其强可见光吸收和Bi2O3与TiO2之间形成的异质结的协同作用的结果.  相似文献   

2.
以硝酸铜、无水乙醇、1,2-环氧丙烷和纳米铝粉为原料, 在超声振荡条件下, 采用溶胶-凝胶法制备了纳米复合含能材料——超级铝热剂Al/CuO的前驱体. 利用热重-差示扫描量热-傅里叶变换红外-质谱(TG- DSC-FTIR-MS)联用技术, 研究了纳米Al/CuO溶胶-凝胶前驱体的热行为和分解过程及机理. 利用不同升温速率下的TG-DTG分析, 研究了纳米超级铝热剂Al/CuO的溶胶-凝胶前驱体的热分解反应机理, 采用了6种动力学分析方法进行动力学参数计算, 得到前驱体分解反应的表观活化能、反应级数、频率因子等动力学参数, 纳米Al/CuO前驱体分解反应的动力学方程为: dα/dt=1014.0×4α3/4exp(-2.0×104/T).  相似文献   

3.
没食子酸铋锆的制备、表征及其燃烧催化作用   总被引:2,自引:0,他引:2  
以没食子酸、硝酸铋和硝酸氧锆为原料, 首次合成出了双金属有机盐——没食子酸铋锆, 采用有机元素分析、X射线荧光(XRF)光谱和傅里叶变换红外(FTIR)光谱对其进行了表征. 在程序升温条件下, 利用热重(TG)分析、差示扫描量热法(DSC)、固相原位反应池/FTIR 联用技术, 研究了没食子酸铋锆的热行为和热分解机理,描述了没食子酸铋锆的热分解过程, 分析得出其最终分解产物为Bi2O3、ZrO2和C. 利用螺压工艺制备了含没食子酸铋锆的推进剂样品, 研究了没食子酸铋锆对双基(DB)推进剂燃烧性能的影响, 分析了其燃烧催化作用. 结果表明, 没食子酸铋锆对双基推进剂的燃烧具有良好的催化作用, 是一种高效的燃烧催化剂; 没食子酸铋锆热分解的最终产物是催化燃烧的主要物质, 锆和碳则起辅助催化的作用.  相似文献   

4.
采用水热法制备了MnO2纳米管,以其与纳米铝粉为原料,采用超声分散复合的方法,制备了超级铝热剂Al/MnO2.利用粉末X射线衍射(XRD)、扫描电子显微镜(SEM)及能量散射光谱仪(EDS)对产物的物相、组成、形貌和结构进行分析表征,并运用差示扫描量热法(DSC)研究了MnO2纳米管及其超级铝热剂对环三亚甲基三硝胺热分解特性的影响.结果表明,水热法制备的纳米MnO2呈管状均匀分布,球形纳米Al与管状纳米MnO2相互依附,分散较均匀;MnO2纳米管及其超级铝热剂的加入均改变了环三亚甲基三硝胺的热分解行为及分解历程,使原有占主导的液相分解变为二次的气相反应加剧,使环三亚甲基三硝胺主分解峰形发生了明显的改变.  相似文献   

5.
以静电纺丝技术制备的TiO2纳米纤维为基质,硝酸铋为铋源,KOH为矿化剂,成功制备了多异质结Bi4Ti3O12/TiO2/Bi2Ti2O7复合纳米纤维光催化剂。通过X射线衍射(XRD)、扫描电子显微镜(SEM)、紫外可见漫反射光谱(UV-Vis DRS)等一系列表征,对其物相组成、微观形貌和光学性质等进行分析。结果表明: TiO2纳米纤维的介入,将Ⅰ型异质结Bi2Ti2O7/Bi4Ti3O12分离为2个Ⅱ型异质结Bi2Ti2O7/TiO2和Bi4Ti3O12/TiO2。Bi2Ti2O7、Bi4Ti3O12和TiO2三者的协同作用,有效提高了可见光吸收能力,改变了光生载流子的传输路径,降低了光生电子与空穴的复合几率,从而获得高效的光催化降解CH3CHO性能。可见光照8 h,Bi4Ti3O12/TiO2/Bi2Ti2O7复合纳米纤维对CH3CHO的降解率达到87.1%。  相似文献   

6.
通过热处理手段考察了BiOBr纳米片的表面相变过程。通过XRD,Raman,SEM,TEM,UV-Vis-DRS等手段对不同热处理温度下样品的结构进行表征。结果表明,高温热处理下(≥400℃),BiOBr相向Bi24O31Br10相转变,可形成BiOBr/Bi24O31Br10异质结。通过气相乙醛的降解,并与商用P25TiO2做比较来评估催化剂的光催化性能,测得活性顺序为:P25TiO2>BiOBr>BiOBr/Bi24O31Br10。能带结构分析可知BiOBr与Bi24O31Br10间形成I型异质结不利于电荷分离,因而活性降低。然而,当同样条件下于上述催化剂表面负载Pt后,测得光催化活性顺序为:(BiOBr/Bi24O31Br10)-Pt> BiOBr-Pt >P25 TiO2-Pt。(BiOBr/Bi24O31Br10)-Pt的最高活性归因于BiOBr/Bi24O31Br10异质结与Pt负载的协同分离光生载流子过程,即与BiOBr/Bi24O31Br10界面的光生空穴转移,BiOBr/Pt及Bi24O31Br10/Pt界面的光生电子转移、累积及开启双电子还原O2的一系列过程有关。  相似文献   

7.
硅酸铋(BSO)纳米粉体的制备与表征   总被引:3,自引:0,他引:3       下载免费PDF全文
Bismuth silicate nanopowders were prepared by the sol-gel method. Tetraethyl orthosilicate (TEOS) and Bi2O3 were used as the starting materials. The precursors were heat-treated at 750℃ for 2 h. The size distribution of Bi4Si3O12 nanopowders is 40~100 nm. The TG-DTA curves, the XRD patterns and the TEM microphotograph of Bi4Si3O12 are discussed. Compared with crystal materials, the excitation spectra and the emission spectra of Bi4Si3O12 nanopowders indicate blue shift.  相似文献   

8.
本文研究了Bi2O3掺杂对Ag(Nb0.8Ta0.2)O3陶瓷的结构和介电性能的影响。X射线衍射(XRD)结果表明,Bi2O3的掺杂可以使陶瓷中Ag+被还原并析出,且银析出的量随Bi2O3掺杂量的增加而不断增加,这可能源自于Bi3+对Ag+的取代。在一定范围内增大Bi2O3掺杂量可提高Ag(Nb0.8Ta0.2)O3陶瓷的室温介电常数,降低介电损耗,并使温度系数向负值方向移动。当Bi2O3的掺杂量约为3.5wt%时,样品具有较大的介电常数(ε=672)和较小的介电损耗(tanδ=7.3×10-4)。  相似文献   

9.
通过程序升温水热法制备了层级纳米花状结构Bi2O3/(BiO)2CO3复合材料(简称BO/BCO)。采用X射线衍射(XRD)、紫外-可见漫反射吸收光谱(UV-Vis/DRS)、X射线光电子能谱(XPS)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)和氮气吸附-脱附测定等方法对上述合成材料的晶型结构、组成、光吸收性质、形貌和表面物理化学性质进行了表征。结果表明,该复合材料中(BiO)2CO3的晶型为四方相,Bi2O3的晶型为单斜相,复合后的材料同时具有两者晶型结构。并且,合成时随着OH-的引入与反应时间的增加,复合材料中(BiO)2CO3的特征衍射峰强度逐渐降低,Bi2O3的特征衍射峰强度逐渐增加,证明了Bi2O3在样品中所占比例的增加。从UV-Vis/DRS吸收光谱分析结果显示,与单体(BiO)2CO3和单体Bi2O3相比,合成的BO/BCO复合材料的吸收边带发生偏移,且Bi2O3的引入有效增加其可见光区吸收。同时,样品由片状(BiO)2CO3生长为层级纳米花环状结构的BO/BCO-0.5,而层级结构的形成导致BO/BCO-0.5的带隙能变窄,且对于光电子的反射与散射发生改变,从而有利于光生电荷的转移与光的吸收效率。另外,以罗丹明B为模型分子,通过不同光源照射下的光催化活性实验,循环实验以及捕获实验对复合材料BO/BCO的光催化活性进行了研究。结果表明,与其他体系(单体Bi2O3和P25)相比,BO/BCO-0.5活性有明显提高,并且在多次循环实验后依然保持良好的稳定性。为此,根据捕获实验结果推测了BO/BCO复合材料可能的光催化反应机理。  相似文献   

10.
Bi2Fe4O9纳米粉体:水热法制备及表征   总被引:1,自引:1,他引:0  
Bi2Fe4O9 nanoparticles were prepared at low temperature via a facile, one-step hydrothermal synthesis process using iron(Ⅲ) nitrate nonahydrate(Fe(NO3)3·9H2O) and bismuth nitrate pentahydrate (Bi(NO3)3·5H2O) as starting materials and sodium hydroxide (NaOH) as the precipitant and mineralizer. XRD results indicate that the as-prepared nanoparticles are pure Bi2Fe4O9. SEM images reveal that the as-prepared Bi2Fe4O9 nanoparticles have a sheet-like morphology. The Bi2Fe4O9 nanoparticles thus obtained are paramagnetic at room temperature as shown by magnetic measurements.  相似文献   

11.
The decomposition reaction kinetics of the double-base (DB) propellant (No. TG0701) composed of the mixed ester of triethyleneglycol dinitrate (TEGDN) and nitroglycerin (NG) and nitrocellulose (NC) with cerium(III) citrate (CIT-Ce) as a combustion catalyst was investigated by high-pressure differential scanning calorimetry (PDSC) under flowing nitrogen gas conditions. The results show that pressure (2 MPa) can decrease the peak temperature and increase the decomposition heat, and also can change the mechanism function of the exothermal decomposition reaction of the DB gun propellant under 0.1 MPa; CIT-Ce can decrease the apparent activation energy of the DB gun propellant by about 35 kJ mol−1 under low pressure, but it can not display the effect under high pressure; CIT-Ce can not change the decomposition reaction mechanism function under a pressure.  相似文献   

12.
A device of measuring the thermal conductivity of pellet of propellants and explosives has been constructed. A method and a calculation formula for determining the thermal conductivity of pellet of propellants and explosives under constant radial heat flow conditions by use of Joule effect is presented. Using this device and a microcalorimeter, type RD496-II, and two standard samples with known thermal conductivity, two instrument constant have been determined and the thermal conductivities of seven materials: plexiglass, teflon, DB propellant DB-2 (nitrocellulose(NC)/nitroglycerine(NG)/dinitrotoluene/dimethyl centralite/vaseline/PbO/CaCO3, 59.6/25/8.8/3/1.2/1.2/1.2), DB propellant SQ(NC/NG/diethyl phthalate(DEP)/binder, 59/29/7/5), DB propellant RHN-149 (NC/NG/triacetin (TA)/binder-I, 52/25/8/15), DB propellant RHN-190 (NC/NG/TA/ binder-II, 52/26/7/15), 2, 4, 6-trinitrotoluene (TNT) at 298 K are measured. The results show that (1) the reproducibility of measurement for the heat (q) retained in investigated system after cutting the Joule current and the amount of heat flux through the wall of the investigated cylinder (Q s) are less than 0.50% and within 0.10%, respectively; (2) the standard deviation of the thermal conductivity determined by using this method is less than 1.0%; (3) the values ofq, Q s and internal radius of the cylinder are three principal factors affecting the magnitude of the thermal conductivity of these materials.  相似文献   

13.
Zhao  Ningning  Ma  Haixia  Yao  Ergang  Yu  Zhong  An  Ting  Zhao  Fengqi  Yu  Xiaojiao 《Cellulose (London, England)》2021,28(13):8671-8691
Cellulose - Al/CuO nanothermites have displayed unique catalytic activities in accelerating the thermolysis of nitrocellulose (NC) and combustion characteristics of AP/HTPB propellant depending on...  相似文献   

14.
The effect of MnC2O4 nanoparticles on the thermal decomposition of double-base propellant composed of nitrocellulose (NC) and triethylene glycol dinitrate (TEGDN) has been investigated by TG/DSC?CMS?CFTIR coupling technique. The results show that the decomposition of TEGDN/NC propellant has two stages, the first stage is the volatility and decomposition of TEGDN, the second is the decomposition of NC. The addition of MnC2O4 nanoparticles gets the onset temperature of first stage higher, and makes the activation energy of decomposition of TEGDN grow by about 20?C30?kJ/mol. The catalytic also accelerates the total weight loss, and makes the peak temperatures of DSC curves higher. The activation energy of the second stage has a decrease of 20?C40?kJ/mol. MS and FTIR analysis show that the catalyst gets the gas products of macromolecular significantly reduce, while small molecules increase significantly. It also results in the decrease of H2O, N2O, and NO2, and the increase of NO and HCN. Above all, the catalytic improves the thermal stability of TEGDN/NC propellant, make it more safety in storage, and make the decomposition easier and more thorough in main reaction zone.  相似文献   

15.
采用TG-DTG和DSC技术研究了含二缩三乙二醇二硝酸酯(TEGDN)和硝化甘油(NG)的混合酯、硝化棉(NC)和用作燃烧催化剂的柠檬酸镧组成的双基推进剂在常压和流动态氮气气氛下的非等温热分解反应动力学. 结果表明, 该双基推进剂的热分解过程存在2个失重阶段: 第I失重阶段为混合酯的挥发分解过程; 第II失重阶段为主放热分解反应, 机理服从三级化学反应, 减速型α-t曲线, 动力学参数: Ea=231.14 kJ·mol-1, A=1023.29 s-1, 动力学方程为dα/dt=1022.99(1-α)3 e-2.78×104/T. 由外推起始点温度(Te)和峰顶温度(Tp)计算得出该双基推进剂的热爆炸临界温度值分别为Tbe=463.62 K, Tbp=477.88 K. 反应的活化熵(⊿S)、活化焓(⊿H)和活化能(⊿G)分别为219.75 J·mol-1·K-1, 239.23 kJ·mol-1和135.96 kJ·mol-1.  相似文献   

16.
The scientific interest for the Bi2O3-PbO system has increased due to the importance of the PbO in the high-T c superconducting phase formation in the Bi2O3-SrO-CaO-CuO system. Also Bi2O3-PbO system contains compounds with some specific semiconductor and dielectric properties and Bi2O3-based solid solutions are well known as high oxygen ion conductors.Previously, several low melting defined compounds have been identified in the system: 6Bi2O3·PbO; 3Bi2O3·2PbO; 4Bi2O3·5PbO; 4Bi2O3·6PbO and Bi2O3·3PbO.This work deals with the phase formation and thermal stability of these compounds. Under non-isothermal conditions, in all mixtures regardless of the Bi2O3/PbO ratio, the compound 6Bi2O3·PbO is preferentially formed, followed by the compound 4Bi2O3·5PbO. The formation of the compound 4Bi2O3·6PbO was not confirmed while the formation of the compound Bi2O3 3PbO occurs through a complex mechanism which includes an intermediate step in which a solid solution with the litharge structure was identified. Under isothermal conditions in the same temperature range the tendency to form the stoichiometric compounds increases. All compounds form, decompose and melt at temperatures between 530–780°C.  相似文献   

17.
The influence of Bi2O3 particles size at the sub-micron scale on the thermal excitation threshold and combustion performance of nano-thermite systems was investigated. Three formulas were designed and prepared, Al(100 nm)/Bi2O3(170 nm), Al(100 nm)/Bi2O3(370 nm) and Al(100 nm)/Bi2O3(740 nm). The samples were characterized and tested by SEM, XRD, and DSC techniques. Electrical ignition and combustion experiments were performed. The results showed that with the increase of the particle size of Bi2O3, in the case of slow linear heating, the exothermic heat decreased (1051.2 J g−1, 527.3 J g−1 and 243.6 J g−1) and the thermal excitation threshold temperature increased (564.52 °C, 658.1 °C and 810.9 °C). Simultaneously, the state of the thermite reaction correspondingly changed to solid-solid, liquid-solid and liquid-liquid thermite reaction. In the case of rapid heating , the increase in particle size increased the excitation current (0.561A, 0.710A and 0.837A). During the combustion process, the thermite system with the smallest Bi2O3 particle size showed the largest combustion rate, and that with the largest particle size had the longest combustion duration.  相似文献   

18.
酒石酸铅锆的制备、表征及其燃烧催化作用   总被引:1,自引:0,他引:1  
以酒石酸、硝酸氧锆和硝酸铅为原料,合成出了双金属盐酒石酸铅锆,采用有机元素分析、X射线荧光光谱和FTIR对其进行了表征。在程序升温条件下,利用TG/DTG、DSC、固相原位反应池/FTIR联用技术,研究了酒石酸铅锆的热行为和热分解机理,描述了酒石酸铅锆的热分解过程,分析得出其最终分解产物为ZrO2、PbO和C。利用螺压工艺制备了含酒石酸铅锆的推进剂样品,研究了酒石酸铅锆对双基系推进剂燃烧性能的影响,分析了其燃烧催化作用。结果表明,酒石酸铅锆对双基系推进剂的燃烧具有良好的催化作用,是一种高效的燃烧催化剂;酒石酸铅锆热分解的最终产物PbO是催化燃烧的主要活性物质,推进剂燃烧过程中形成了氧化铅-铅循环催化体系,而锆和碳则起辅助催化的作用。  相似文献   

19.
制备了含3,6-双(1-氢-1,2,3,4-四唑-5-氨基)-1,2,4,5-四嗪(BTATz)铅复合物(LCBTATZ)的双基推进剂和改性双基推进剂. 采用热重-微商热重法(TG-DTG)及差示扫描量热法(DSC)研究了其热分解行为和非等温分解动力学并在此基础上评价了其热安全性. 结果表明, LCBTATz-DB复合物中在350-540 K之间只存在一个放热分解峰, LCBTATz-CMDB复合物中存在两个连续的放热分解峰在390-540 K温度范围内, 其机理方程分别为: f(α)=α-1/2和f(α)=2(1-α)3/2. 计算了热加速分解温度(TSADT)、热爆炸临界温度(Tb)、热点火温度(TTIT)和绝热至爆时间(tTlad),其值分别为: DB001复合物TSADT=444.50 K, TTITT=453.96 K, Tb=471.84 K; tTlad=39.36 s; CMDB100复合物, TSADT=442.38 K, TTITT=452.89 K,Tb=464.13 K,tTlad=21.3 s,并以此来评价化合物的热安全性. 考察了LCBTATz-DB以及LCBTATz-CMDB的燃烧性能, 结果表明LCBTATZ 是一种高效的双基燃烧催化剂, 在较大的压力范围内可以显著的提高燃速并且大幅度的降低压力指数. 对于双基推进剂在2-8 MPa压力范围内出现了明显的超燃速现象, 8-12 MPa出现了“麦撒”效应, 对于改性双基推进剂的压力指数降到0.18.  相似文献   

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