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High-performance solid propellants are very important for the development of modern weapons. Aside from their high energy and high burning rate, safety performance is regarded as the most important factor that should be considered whenever a new solid propellant recipe is formulated. Therefore, exploring a new type of combustion catalyst that can improve both catalytic activity and reduce the sensitivity of the energetic component is significant. Traditionally, transition metals or metal oxides are used as a combustion catalyst for accelerating the thermal decomposition of energetic components. However, the existing problem of these catalysts is the aggregation of particles accompanied by poor surface area. Coupling metal oxides with graphene is a promising approach to obtain a binary composite with stable structure and large specific surface area. In this work, rod-like and granular Fe2O3 nanoparticles were synthesized using a hydrothermal method. Then, the two as-prepared Fe2O3 nanoparticles were coupled with graphene sheets using an interfacial self-assembly method, which can effectively prevent the aggregation of Fe2O3 particles and simultaneously increase the active sites that participate in the reaction. X-ray diffraction and X-ray photoelectron spectroscopy were used to identify the phase states and chemical compositions of the prepared samples. The morphology and internal structures were further demonstrated through scanning electron microscopy, transmission electron microscopy and nitrogen adsorption-desorption tests. Both phase analysis and structure identification indicate that the prepared Fe2O3/G has high purity and high surface area. The catalytic performance of the prepared Fe2O3 and Fe2O3/G in the thermal decomposition of hexanitrohexaazaisowurtzitane (CL-20) was evaluated based on thermal gravimetric analysis-infrared spectroscopy (TGA-IR) and differential scanning calorimetry (DSC) tests. The non-isothermal decomposition kinetics of CL-20, Fe2O3/CL-20, and Fe2O3/G/CL-20 were further studied by DSC. The results reveal the excellent catalytic activity of Fe2O3/G in the thermal decomposition of CL-20, which is attributed to the presence of abundant pore structure and large surface area. The reaction mechanisms of the exothermic decomposition process of CL-20, Fe2O3/CL-20, and Fe2O3/G/CL-20 were obtained by the logical choice method, and the composites all followed same mechanism function model as CL-20. Through comparison, the rod-like Fe2O3 coupled with graphene was found to have the best catalytic activity in the thermal decomposition of CL-20. Thus, the rod-like Fe2O3 and its Fe2O3/G composite were used to investigate their influence on the impact sensitivity of CL-20 by fall hammer apparatus. The results show that rFe2O3/G can effectively decrease the impact sensitivity of CL-20 compared with pure CL-20 and rFe2O3/CL-20. Therefore, rFe2O3 coupled with graphene not only promotes the thermal decomposition but also improves the safety performance of CL-20.  相似文献   

3.
Pt/Al2O3催化剂用于丙烯选择性还原NO   总被引:1,自引:0,他引:1  
分别采用浸渍法(IM)和溶胶-凝胶法(SG)制备了一系列不同铂负载量的催化剂,在固定床反应器上用C3H6作还原剂,测试了选择性还原NOx的活性,结果发现,在IM法和SG法制备的催化剂中,活性组分铂最佳负载质量分数分别为0.5%和2%.针对两种催化剂,分别考察了氧浓度、丙烯浓度及反应气流量对选择性催化还原NOx性能的影响,催化活性随丙烯浓度的增大而上升.2%Pt/Al2O3(SG)催化剂的抗SO2性能好于0.5%Pt/Al2O3(IM)催化剂,H2O的存在可明显拓宽活性温度范围,并向高温区间移动,在200~400℃范围内可有效净化NOx.  相似文献   

4.
预处理条件对Pt/Al2O3催化还原NO的活性影响   总被引:1,自引:0,他引:1  
用溶胶-凝胶法制备Al2O3载体,浸渍法制备质量分数为0.5%的Pt/Al2O3催化剂.研究焙烧气氛和温度对选择性催化还原NO反应活性和Pt价态的影响.结果表明,H2焙烧的活性温度区间最宽,随着焙烧温度的升高,温度区间变化很小,523K下O2焙烧的催化剂活性最好,且活性区间向高温方向移动.活性现象用程序升温脱附实验(NO-TPD,NO-O2-TPD)进行了解释.XPS研究表明,523K下O2用焙烧Pt的主要价态是Pt2+,而523K下H2和N2焙烧Pt的主要价态为Pt0.  相似文献   

5.
Herein, we report the controlled and direct fabrication of Cu2O/CuO thin film on the conductive nickel foam using electrodeposition route for the electrochemical reduction of carbon dioxide (CO2) to methanol. The electrocatalytic reduction was performed in CO2 saturated aqueous solution consisting of KHCO3, pyridine and HCl at room temperature. CO2 reduction was carried out at a constant potential of −1.3 V for 120 min to study the electrochemical performance of the prepared electrocatalysts. Cu2O/CuO shows better electrocatalytic activity with highest current density of 46 mA/cm2. The prepared catalyst can be an efficient and selective electrode for the production of methanol.  相似文献   

6.
Pronounced activities on the reduction of N2O with CH4 were observed over Fe-ZSM-5, Pd-ZSM-5, and Pt-ZSM-5 catalysts, respectively. No significant deactivation has been detected over Fe-ZSM-5 in the presence of oxygen.  相似文献   

7.
采用溶胶凝胶法和浸渍法制备了负载于蜂窝陶瓷上的Co/Fe/Al2O3/cordierite催化剂,在陶瓷管流动反应器上对其催化C3H6选择性还原NO的性能进行了测试。结果表明,该催化剂表现出最优脱硝性能,在模拟烟气条件下,当反应温度为550 ℃时可实现97%的脱硝效率。Co的引入可显著增强Fe/Al2O3/cordierite催化剂抗SO2和H2O的能力。在模拟烟气中同时引入0.02% SO2和3% H2O后,1.5Co/Fe/Al2O3/cordierite的脱硝性能受影响甚微,当反应温度高于500 ℃时1.5Co/Fe/Al2O3/cordierite催化C3H6还原NO的效率均可达到90%以上;相比之下,未经Co修饰的催化剂Fe/Al2O3/cordierite脱硝性能受到了严重的抑制,在整个反应温度区间(200-700 ℃)内,其催化C3H6还原NO的效率最高不足50%。XRD和SEM表征结果表明,经过适量的Co修饰后的1.5Co/Fe/Al2O3/cordierite表面变得更疏松,且形成了以钴铁和钴铝双金属氧化物为主要成分的球状晶粒。H2-TPR结果表明,相比于Fe/Al2O3/cordierite,1.5Co/Fe/Al2O3/cordierite有更好的低温还原性能。Py-FTIR结果表明,Co的引入可使催化剂表面的Lewis酸明显增加,且生成了Brønsted酸。N2吸附-脱附表征结果表明,Co可增大催化剂的比表面积。  相似文献   

8.
制备了适用于高温氮氧化物储存还原(NSR)反应的Cu O/K_2CO_3/MgAl_2O_4非贵金属催化剂,考察了钾负载量对催化剂NSR性能的影响,发现钾主要以高分散K_2CO_3和体相K_2CO_3的形式存在.在稀燃条件下,NOx在体相K_2CO_3上形成了高温稳定的硝酸盐物种,而高分散K_2CO_3上形成的硝酸盐的高温稳定性则较差.当钾负载量较低时,催化剂的NOx储存能力有限,K_2CO_3主要以高分散形式存在,稀燃阶段形成的硝酸盐的热稳定性较低,高温NSR活性较低;而钾负载量过高时,K_2CO_3则会覆盖Cu O活性位,从而降低催化剂的NSR活性.在450℃的高温条件下,钾负载量为10%时,所制备催化剂的NOx储存还原能力最佳,NOx还原效率达到99.9%,是一种具有潜在应用前景的高温NSR催化剂.  相似文献   

9.
CuO/CeO2和CuO/Al2O3催化剂的催化性能   总被引:13,自引:0,他引:13  
钟依均  陈平 《应用化学》1997,14(1):49-52
本文以CO氧化为模式反应考察了CeO2和Al2O3负载氧化铜催化剂的氧化活性,运用XRD和TPR技术研究了催化剂的还原性能和物相结构,结果表明:载体性质对负载CuO催化剂的CO氧化活性有很大影响,CuO/CeO2催化剂活性明显高于CuO/Al2O3催化剂.催化剂的还原特性随载体不同而不同.同时发现,热处理对催化剂铜物种的存在形式,晶粒大小、还原特性及其催化活性有明显影响,CuO/Al2O3催化剂活性下降的主要因素是生成了活性较低的CuAl2O4相,而CuO/CeO2催化剂活性下降是由于CuO和CeO2发生烧结,晶粒变大  相似文献   

10.
采用溶胶-凝胶法制备出SrB2O4和SrCO3复合催化剂(SrB2O4/SrCO3). 紫外光催化还原CO2生成CH4的实验证明, SrB2O4/SrCO3复合催化剂的光催化活性已超过SrB2O4和TiO2(P25)催化剂. 利用X 射线电子衍射(XRD)谱、透射电子显微镜(TEM)和等温氮气吸附-脱附分析确定了催化剂的晶相结构、粒子尺寸和比表面积.利用紫外-可见(UV-Vis)漫反射吸收光谱、X射线光电子能谱(XPS)的价带谱和荧光光谱(PL)确定了催化剂的能带结构, 结果表明: SrB2O4/SrCO3复合催化剂异质结构有利于光生载流子的分离, 从而抑制了光生电子和光生空穴的复合, 提高了光生电子和光生空穴在固液界面参加光催化反应的利用率. 因此, SrB2O4/SrCO3复合催化剂的紫外光催化活性得到了有效的提高.  相似文献   

11.
The selective catalytic reduction (SCR) of NO by propane in excess oxygen-containing gas mixture was studied on Co/Al2O3 catalyst. The oxygen concentration is very important for the reaction. The NO conversion to N2 without oxygen is 3% at 800 K and when the O2 concentration is raised up to 8% the NO conversion reaches its maximum value of 60% at 800 K. Characterization results by TPR and UV-Vis spectroscopy show that in the catalyst, species strongly interacting with tetrahedral and octahedral Co2+ ions in the support are present. This revised version was published online in June 2006 with corrections to the Cover Date.  相似文献   

12.
SnO2—Al2O3复合氧化物催化剂的一氧化氮选择催化还原性能   总被引:10,自引:0,他引:10  
采用双股并流共沉淀方法制备的锡铝复合氧化物,对有氧条件C3H6选择还原NO反应有较高的催化活性和较宽的反应温度区间。具有最佳配比(Sn:Al(摩尔比)=1:1.94)的锡铝复合氧化物样品,在反应温度350℃时可使NO转化率达71%,XRD、H2-TPR及NH3-TPD的研究结果表明,锡与铝难以形成氧化物固溶体, 而SnO2是以微晶形态分散于无定形的Al2O3上,Al2O3的中等强度酸性与SnO2微晶适度的氧化还原性能相结合,使锡铝复合氧化物具有较高的催化活性。  相似文献   

13.
The performance of Mn-W/TiO2 for selective catalytic reduction(SCR) of NOx with NH3 and its resistance to different concentrations of SO2 at various temperatures were investigated. The results show that WO3 increased the active sites and enhanced the strength of acid, so it was an effective promoter of MnOx/TiO2. The NOx conversion on Mn-W/TiO2 ranges from 80.3% to 99.6% between 100 °C to 350 °C at GHSV=18900 h–1, while N2 product selectivity changes from 100% to 98.7%. In the presence of 0.01% SO2 and 6% H2O, NOx conversion maintained 98.5% at 120 °C. The influence of more than 0.01% SO2 on the activity of MnOx-WO3/TiO2 will disappear if the temperature rises above 250 °C. By means of heating and sweeping with He, the activity of the catalysts can be recovered. At 300 °C, NOx conversion yielded 99% with 0.07% SO2 and reached the level of commercial V-W/TiO2 catalysts. The Mn-W/TiO2 catalyst showed excellent performance for SCR of NOx with NH3 in a wider range of temperature with strong tolerance to SO2.  相似文献   

14.
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   

15.
W.M. Shaheen   《Thermochimica Acta》2008,470(1-2):18-26
The effects of calcination temperature and doping with K2O on solid–solid interactions and physicochemical properties of NiO/Fe2O3 system were investigated using TG, DTA and XRD techniques. The amounts of potassium, expressed as mol% K2O were 0.62, 1.23, 2.44 and 4.26. The pure and variously doped mixed solids were thermally treated at 300, 500, 750, 900 and 1000 °C. The catalytic activity was determined for each solid in H2O2 decomposition reaction at 30–50 °C. The results obtained showed that the doping process much affected the degree of crystallinity of both NiO and Fe2O3 phases detected for all solids calcined at 300 and 500 °C. Fe2O3 interacted readily with NiO at temperature starting from 700 °C producing crystalline NiFe2O4 phase. The degree of reaction propagation increased with increasing calcination temperature. The completion of this reaction required a prolonged heating at temperature >900 °C. K2O-doping stimulates the ferrite formation to an extent proportional to its amount added. The stimulation effect of potassium was evidenced by following up the change in the peak height of certain diffraction lines characteristic NiO, Fe2O3, NiFe2O4 phases located at “d” spacing 2.08, 2.69 and 2.95 Å, respectively. The change of peak height of the diffraction lines at 2.95 Å as a function of firing temperature of pure and doped mixed solids enabled the calculation of the activation energy (ΔE) of the ferrite formation. The computed ΔE values were 120, 80, 49, 36 and 25 kJ mol−1 for pure and variously doped solids, respectively. The decrease in ΔE value of NiFe2O4 formation as a function of dopant added was not only attributed to an effective increase in the mobility of reacting cations but also to the formation of potassium ferrite. The calcination temperature and doping with K2O much affected the catalytic activity of the system under investigation.  相似文献   

16.
测定了含ZrO2的Rh/γ-Al2O3催化剂上NO+C2H4和NO+C2H4+O2的反应活性,并应用TPR、XRD、BET比表面等表征了ZrO2的加入方式和晶型对Rh/γ-Al2O3催化剂活性和结构的影响。结果表明,ZrO2的加入一定程度地抑制了Rh3+与γ-Al2O3之间的相互作用和γ-Al2O3的相变,提高了催化剂的热稳定性,明显提高了850℃老化样品的NO+C2H4反应活性。对于NO+C2H4+O2反应,含ZrO2样品的选择还原活性却较低,表明反应机理不同,而且ZrO2对C2H4的深度氧化有促进作用,但老化后活性下降幅度比不含ZrO2的样品小。  相似文献   

17.
采用液相沉淀法制备了Co3O4催化剂,用XRD、IR、TEM、CO滴定等表征技术和连续流动微反装置,考察了焙烧温度对Co3O4催化剂结构和催化性能的影响.结果表明,在研究的温度范围内催化剂均以单一的尖晶石结构存在,具有良好的CO氧化催化活性,经300℃焙烧的催化剂具有高的分散状态,有利于活性氧物种的形成和反应,在空速5000 h-1,CO体积分数0.5%的反应条件下常温可将CO完全转化500 min.焙烧温度高于或低于300℃均引起常温CO氧化性能的下降.通过对催化剂的抗水性试验和失活前后的XPS表征发现,催化剂的活性下降不是由于Co的价态变化引起的,而是由于水蒸气中毒.  相似文献   

18.
以无机铁盐和邻苯二胺为基础原料,经铁基螯合前驱体热解反应,制备出Fe-N-C复合催化剂.经扫描电镜观察,带有折褶的碳微纳米片相互交迭,形成银耳状的三维自支撑结构.氮气吸脱附测试表明此结构富含微孔和介孔,比表面积可达290 m2/g.通过X射线衍射(XRD)确证石墨化C和多晶Fe3C作为催化剂主相存在, X射线光电子能谱(XPS)进一步揭示N原子主要以石墨N和吡啶N形式掺杂到C骨架中.电化学测试表明银耳状Fe-N-C复合催化剂在碱性条件下催化氧还原反应为四电子过程,其催化活性可媲美商业Pt/C催化剂.经过2000次氧还原测试后,催化极限电流衰减小于5%,并且半波电势仅负移5 mV(商业Pt/C催化剂负移35 mV),表现出优异的氧还原催化稳定性.  相似文献   

19.
1.前言 采用具有ZSM-5,ZSM-11和ZSM-48沸石结构的高硅沸石作为CO加氢反应的催化剂载体,有效地控制了产物分布范围。AlPO_4-5分子筛的孔道结构和表面性质决定了它同样可作为催化剂载体以代替沸石。关于AlPO_4-n分子筛的研究,目前多着重于合成和结构方面,以其作为催化剂和催化剂载体的报道较少。由于AlPO_4-n分子筛无离子交换性,致使负载金属AlPO_4-n催化剂的制备受到限制。根据“某些盐类或氧化物与高比表面载体混合,在低于熔点的适当温度下焙烧,这些盐类或氧化物在载体表面能自发分散”的原理,本文采用固相焙烧法制备了系列Fe_2O_3/AlPO_4-5催化剂并用于CO加氢反应,研究铁活性组分在AlPO_4-5分子筛表面的分散状况及催化活性。  相似文献   

20.
制备了有序介孔氮掺杂碳负载三氧化铁,有效降低了氧还原的过电势。通过扫描电子显微镜、透射电子显微镜、氮气吸附-脱附测试、粉末X射线衍射、X射线光电子能谱、拉曼光谱等技术表征了所制备的催化剂的物理化学性质。此外,用旋转圆盘电极测试了其在碱性条件下对氧还原反应的催化活性和选择性。实验结果表明:氮气热解后铁以三氧化二铁的形式负载于有序介孔氮掺杂碳中,其比表面积达到755 cm^2·g^-1。拉曼和X射线光电子能谱结果表明,加入铁前驱体后所制备的催化剂石墨化程度有所提升、阻抗降低、导电性增加。在碱性条件下,Fe2O3@NC催化剂呈现出4电子氧还原反应,其起始电位(-0.01 V vs Ag/AgCl)和半波电位(-0.13 V vs Ag/AgCl)与商用20%Pt/C相当。此外,该催化剂具有较好的抗甲醇性能且其恒电压稳定性优于商用Pt/C。Fe2O3@NC催化剂用于锌-空电池放电测试,其放电功率可以达到88 mW·cm^-2,是商用Pt/C的1.29倍。  相似文献   

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