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1.
孟凡会  常慧蓉  李忠 《化工学报》2014,65(8):2997-3003
采用共浸渍法制备了Ni-Mn/Al2O3催化剂,考察了助剂Mn的含量对催化剂结构及浆态床CO甲烷化性能的影响。采用XRD、H2-TPR、BET、TEM、H2-化学吸附等表征对催化剂进行了测试分析,结果表明,Mn助剂的引入能够促进Ni物种在载体表面的分散,减弱Ni物种与载体的相互作用,降低催化剂的还原温度,提高催化剂的比表面积,减小活性金属Ni的晶粒尺寸。随着Mn含量的增加,Ni-Mn/Al2O3催化剂的甲烷化性能先升后降,其中以Mn含量为4%(质量分数)时的催化甲烷化性能最佳,添加过量的Mn导致活性组分Ni被部分覆盖,催化甲烷化性能下降。通过对16Ni4Mn/Al2O3催化剂样品的浆态床反应温度及反应压力的研究发现,当反应温度为280℃、反应压力为1.5 MPa时,催化剂样品16Ni4Mn/Al2O3的CO转化率及CH4选择性分别达到96.2%和88.8%。  相似文献   

2.
江罗  陈标华  张吉瑞 《化工学报》2012,63(11):3519-3524
用浸渍法制备了以Al2O3为载体、Ni为活性组分的Ni/Al2O3二氧化碳甲烷化催化剂,在等温固定床反应器中研究了在Ni/Al2O3催化剂作用下,高纯氯化氢中微量CO2甲烷化反应效果,并考察了温度、压力、氯化氢体积空速以及H2/CO2摩尔比对CO2转化率的影响,同时研究了催化剂活性、稳定性及其再生性能。结果表明,在温度为250℃、压力为4.0 MPa、氯化氢空速为100 h-1、H2/CO2摩尔比为500:1条件下,CO2甲烷化反应效果最好,其转化率可达到90%左右,对于高纯氯化氢中微量CO2的脱除起到很好的效果;催化剂在温度高于300℃时,反应不久后会迅速失活;催化剂再生性能只能部分恢复到新鲜水平。  相似文献   

3.
以电熔铬刚玉和白刚玉为主要原料,用Cr2O3微粉部分替代电熔铬刚玉细粉,研究了Cr2O3微粉加入量对Al2O3-Cr2O3质耐火材料常温和高温性能、物相组成和显微结构的影响。结果表明,随着Cr2O3微粉加入量的增加,原位形成了(Al1-xCrx)2O3固溶体,促进了烧结,材料的显气孔率先降低后升高,且(Al1-xCrx)2O3固溶体的晶格常数呈线性增加,符合Vegard定律。材料的常温抗折强度和常温耐压强度随Cr2O3微粉加入量的增加先升高后降低,在Cr2O3微粉加入量为15%(质量分数)时强度达到最大值。而当Cr2O3微粉加入量为20%(质量分数)时,由于有挥发现象,材料显气孔率上升,强度下降。材料高温抗折强度随Cr2O3微粉加入量的增加而增加,材料的残余强度保持率呈先降低后升高的趋势。  相似文献   

4.
N2O是一种重要的温室气体,且对臭氧层有很大的破坏作用,而直接催化分解法是除去N2O最经济有效的方法之一。针对目前报道较多的钴氧化物催化剂活性较差的问题,将包覆型Co3O4核壳材料引入N2O直接催化分解反应,利用核壳结构的限域特性与壳层的多孔孔道使Co3O4分散性增加,粒径减小,金属载体相互作用与接触反应界面增强,从而提高了催化剂在N2O直接催化分解反应中的低温活性。此外,还制备了一系列不同金属含量的Co3O4@SiO2球形核壳催化剂来研究包覆结构对催化剂性能的影响,通过X射线荧光光谱(XRF)、透射电镜(TEM)、X射线衍射(XRD)、N2物理吸附、H2-程序升温还原(H2-TPR)等表征,证实在保证稳定单分散核壳结构的前提下,活性Co3O4位点越多,催化剂反应活性越好。  相似文献   

5.
靳元勋  霍地  孙旭东 《化工进展》2021,40(Z2):309-314
采用二乙三胺五乙酸(DTPA)为配合剂,以简易的液相法合成出微纳米纤维状Al和Al-Zr前体,煅烧处理制备了棒状α-Al2O3和Al2O3-ZrO2复合陶瓷粉体。同时研究了DPTA∶Al3+质量比、反应温度与时间对陶瓷粉体形态的影响。利用X射线衍射(XRD)、热分析(TG/DSC)以及扫描电子显微镜(SEM)对粉体进行了表征。结果表明:较高的DTPA∶Al3+质量比以及较长的反应时间有利于制备高长径比的纤维棒状Al和Al-Zr配合物前体。合成纳米纤维状α-Al2O3和Al2O3-ZrO2前体的最优条件是反应温度60℃,反应时间5.5h,DTPA∶Al3+比例为1.2∶1。相应地,该前体煅烧后可以制备出棒状α-Al2O3和Al2O3-ZrO2复合陶瓷粉体。  相似文献   

6.
杨霞  田大勇  孙守理  孙琦 《工业催化》2014,22(2):137-143
甲烷化工艺是煤制天然气的关键技术,甲烷化催化剂则是甲烷化技术的核心。Ni基催化剂具有活性高、选择性好和价格低廉等优点,但易积炭,积炭堵塞催化剂孔道,覆盖表面金属活性位,导致催化剂失活。稀土类金属氧化物(如CeO2、La2O3等)对Ni基催化剂的活性、稳定性、抗积炭性能以及活性组分的分散有明显的促进作用。采用共沉淀法制备了CeO2-La2O3复合氧化物载体,负载Ni后用于CO甲烷化反应,利用N2物理吸附、XRD、H2-TPR、XPS和TG等对催化剂结构进行表征。结果表明,Ni/CeO2-La2O3中CeO2的添加主要发挥了电子助剂的作用,CeO2的存在提高了催化剂表面Ni0周围的电子密度,促进Ni物种的还原,同时还能提高催化剂的抗积炭能力,使催化剂表现出更好的甲烷化活性与稳定性。在V(H2)∶V(CO)=1、反应温度450 ℃、空速24 000 h-1和常压下,Ni/CeO2-La2O3催化剂的CO转化率达82.7%。  相似文献   

7.
本文通过溶液燃烧法,分别以Ni(CH3COO)2·4H2O、Ni(NO3)2·6H2O、NiCl2·6H2O和NiSO4·6H2O为镍源制备系列Ni/Al2O3催化剂,通过X射线衍射(XRD)、扫描电子显微镜(SEM)、N2吸附-脱附、程序升温还原(H2-TPR)等表征手段,进一步揭示了镍源对合成Ni/Al2O3催化剂结构与其催化加氢性能间的构效关系的影响,结果表明,以Ni(CH3COO)2·4H2O为镍源制备的Ni/Al2O3催化剂比表面积最大,达到225m2·g-1,最大孔容0.39c...  相似文献   

8.
采用浸渍法制备了一系列不同助剂下的负载型Pd/γ-Al2O3催化剂,考察了助剂类型对Pd/γ-Al2O3催化剂一步法合成二甲醚(STD)反应稳定性的影响规律;采用氮吸附、XRD、H2-TPR及TG等多种表征手段考察了稳定性试验前后以及烧炭再生后催化剂的表面物化性质及结构变化。结果表明,助剂成分对Pd/γ-Al2O3催化剂的STD反应稳定性影响显著。相比Pd/γ-Al2O3催化剂,添加CeO2可以提高Pd在γ-Al2O3表面的分散度,但会覆盖表面的部分酸性位,一定程度上提高了催化剂的活性和稳定性,但仍存在Pd烧结和积炭现象;添加复合助剂CeO2-ZrO2后形成的Ce-O-Zr固熔晶面能显著促进Pd均匀分散,提高催化剂的抗积炭能力和抗烧结能力,催化剂的活性和稳定性更高;经SO42-改性后Pd/γ-Al2O3催化剂会因为表面积炭加剧和表面硫流失严重,中强酸酸性位减少而快速失活。CeO2-ZrO2-Pd/γ-Al2O3催化剂经历20h的稳定性试验后CO转化率仍保持59%以上,二甲醚选择性65%以上,烧炭再生后催化活性恢复至新鲜催化剂的91.83%。  相似文献   

9.
张申  郭玉玉  李星颖  李哲 《化工进展》2019,38(2):885-891
采用浸渍法制备了一系列具有不同CuO含量的Pd-CuO/Al2O3催化剂,并将其用于乙醇氧化反应,其结构与性质通过XRD、H2-TPR和NH3-TPD等手段进行分析。结果发现,催化剂的活性并不是随着CuO含量的增加而增强,Pd-1.0%CuO/Al2O3催化剂表现出最佳的活性,其点火温度和完全转化温度比Pd/Al2O3催化剂至少降低了50℃。与Pd/Al2O3催化剂相比,含CuO催化剂增强的衍射峰强度以及氢化钯分解峰的消失,说明Pd-Cu合金结构的形成有利于Pd、Cu物种之间的协同作用。对于Pd-1.0%CuO/Al2O3催化剂来说,还原峰向低温的移动以及还原峰面积的增大说明该催化剂上氧化性物质更易被还原且数量在增加,这对于氧化反应是十分有利的,新出现的还原峰表示Pd、Cu的相互作用生成了新物种。NH3-TPD结果中更高含量的低温酸有利于高活性,而且新出现的脱附峰说明形成了新的酸性位点。  相似文献   

10.
以Bi(NO3)3·5H2O、Co(CH3COO)2·4H2O为原料,采用化学沉淀-水热法制备了Co3O4-Bi2O2CO3异质结构复合半导体光催化剂,并通过X射线衍射仪(XRD)、扫描电镜(SEM)、X射线光电子能谱(XPS)、紫外可见漫反射光谱(DRS)、荧光光谱(PL)等手段对所合成的复合型催化剂进行了理化性能表征。研究结果表明:引入Co3O4没有改变Bi2O2CO3物相结构,但促进了Bi2O2CO3 对可见光的吸收能力,提高了Bi2O2CO3表面吸附氧物种的数量,抑制了光生载流子复合。复合光催化剂对罗丹明B(RhB)的光催化脱色实验显示引入Co3O4能够明显提高Bi2O2CO3催化剂的光催化脱色能力。尤其是Co3O4引入量为0.6%的Co3O4-Bi2O2CO3样品对罗丹明B染料的光催化脱色率可达到97%(模拟日光照射30min)。本文为复合型光催化剂制备提供了简单易行的技术路线,制备的新型半导体复合光催化剂Co3O4-Bi2O2CO3在环境净化方面表现出了较好的应用前景。  相似文献   

11.
铝铬锆砖因具有优异的抗渣侵蚀性能,被作为炉衬材料广泛应用于工作环境恶劣的危废焚烧炉。然而,铝铬锆砖在制备和服役过程中可能形成有毒的水溶性Cr(VI),相关研究工作却未见报道。本研究分别以单斜氧化锆和锆英石为氧化锆源制备了两种铝铬锆砖,研究了铝铬锆砖在四种不同组成危废焚烧炉渣中的侵蚀行为及熔渣侵蚀前后砖中Cr(VI)的含量。结果表明,锆英石高温下分解形成单斜氧化锆和无定形的二氧化硅,促进化学稳定性较好的(Al,Cr)2O3固溶体的形成,提高了铝铬锆砖的致密化程度,同时改善了铝铬锆砖的抗渣侵蚀性能。此外,生成的二氧化硅可以还原砖中Cr(VI)化合物,降低铝铬锆砖中的Cr(VI)含量。熔渣侵蚀后,铝铬锆砖渗透层中Cr(VI)含量与熔渣成分密切相关。在被高碱性氧化物含量的熔渣侵蚀后,铝铬锆砖渗透层中的Cr(VI)含量较高,但锆英石作为氧化锆源的铝铬锆砖在不同熔渣中侵蚀前后的原砖层和渗透层内的Cr(VI)含量均低于欧盟限制标准。  相似文献   

12.
分别以自制固体碱K2O/Al2O3和Na3PO4/MgO为催化剂,1,2-丙二醇为反应溶剂,催化松香与蔗糖合成松香酸蔗糖酯。以酯化率为指标,考察了反应温度、催化剂的负载量、反应时间、松香与蔗糖质量比对松香酸蔗糖酯合成的影响。通过SEM和BET等手段对催化剂进行表征,并对松香酸蔗糖酯的乳化、发泡、表面张力等性能进行测试。结果表明:K2O/Al2O3与Na3PO4/MgO比表面积分别为142.52和19.38m2/g;在松香酸蔗糖酯的合成反应中,催化剂K2O/Al2O3的活性高于Na3PO4/MgO。K2O/Al2O3为催化剂时,最优合成工艺条件为反应时间2.5h,反应温度125℃,K2O/Al2O3催化剂用量3%,催化剂中K2O负载量30%,松香和蔗糖质量比1:2,该条件下酯化率达到98%。合成的松香酸蔗糖酯与市场广泛使用的脂肪酸蔗糖酯相比,具有更好的表面活性。  相似文献   

13.
Dispersing La2O3 on δ- or γ-Al2O3 significantly enhances the rate of NO reduction by CH4 in 1% O2, compared to unsupported La2O3. Typically, no bend-over in activity occurs between 500° and 700°C, and the rate at 700°C is 60% higher than that with a Co/ZSM-5 catalyst. The final activity was dependent upon the La2O3 precursor used, the pretreatment, and the La2O3 loading. The most active family of catalysts consisted of La2O3 on γ-Al2O3 prepared with lanthanum acetate and calcined at 750°C for 10 h. A maximum in rate (mol/s/g) and specific activity (mol/s/m2) occurred between the addition of one and two theoretical monolayers of La2O3 on the γ-Al2O3 surface. The best catalyst, 40% La2O3/γ-Al2O3, had a turnover frequency at 700°C of 0.05 s−1, based on NO chemisorption at 25°C, which was 15 times higher than that for Co/ZSM-5. These La2O3/Al2O3 catalysts exhibited stable activity under high conversion conditions as well as high CH4 selectivity (CH4 + NO vs. CH4 + O2). The addition of Sr to a 20% La2O3/γ-Al2O3 sample increased activity, and a maximum rate enhancement of 45% was obtained at a SrO loading of 5%. In contrast, addition of SO=4 to the latter Sr-promoted La2O3/Al2O3 catalyst decreased activity although sulfate increased the activity of Sr-promoted La2O3. Dispersing La2O3 on SiO2 produced catalysts with extremely low specific activities, and rates were even lower than with pure La2O3. This is presumably due to water sensitivity and silicate formation. The La2O3/Al2O3 catalysts are anticipated to show sufficient hydrothermal stability to allow their use in certain high-temperature applications.  相似文献   

14.
TiO_2 modified Al_2O_3 binary oxide was prepared by a wet-impregnation method and used as the support for ruthenium catalyst. The catalytic performance of Ru/TiO_2–Al_2O_3catalyst in CO_2 methanation reaction was investigated. Compared with Ru/Al_2O_3 catalyst, the Ru/TiO_2–Al_2O_3catalytic system exhibited a much higher activity in CO_2 methanation reaction. The reaction rate over Ru/TiO_2–Al_2O_3 was 0.59 mol CO_2·(g Ru)1·h-1, 3.1 times higher than that on Ru/Al_2O_3[0.19 mol CO_2·(gRu)-1·h-1]. The effect of TiO_2 content and TiO_2–Al_2O_3calcination temperature on catalytic performance was addressed. The corresponding structures of each catalyst were characterized by means of H_2-TPR, XRD, and TEM. Results indicated that the averaged particle size of the Ru on TiO_2–Al_2O_3support is 2.8 nm, smaller than that on Al_2O_3 support of 4.3 nm. Therefore, we conclude that the improved activity over Ru/TiO_2–Al_2O_3catalyst is originated from the smaller particle size of ruthenium resulting from a strong interaction between Ru and the rutile-TiO_2 support, which hindered the aggregation of Ru nanoparticles.  相似文献   

15.
Nanosized particles dispersed uniformly on Al2O3 particles were prepared from the decomposition of precursor Cr(CO)6 by metal organic chemical vapor deposition (MOCVD) in a fluidized chamber. These nanosized particles consisted of Cr2O3, CrC1−x, and C. A solid solution of Al2O3–Cr2O3 and an Al2O3–Cr2O3/Cr3C2 nanocomposite were formed when these fluidized powders were pre-sintered at 1000 and 1150 °C before hot-pressing at 1400 °C, respectively. In addition, an Al2O3–Cr2O3/Cr-carbide (Cr3C2 and Cr7C3) nanocomposite was formed when the particles were directly hot pressed at 1400 °C. The interface between Cr3C2 and Al2O3 is non-coherent, while the interface between Cr7C3 and Al2O3 is semi-coherent.  相似文献   

16.
It is shown that introduction of additives of rare-earth element oxides (La2O3, CeO2) enables regulating the structural and functional characteristics of Pd/Al2O3-catalysts (applied on ceramic monoliths of honeycomb structure) of nitrogen oxide reduction by methane. Modifying additives provide increase of thermal stability of porous structure of both highly dispersed Al2O3, as the second support, and the catalyst as a whole.

Contribution of La2O3 and CeO2 in increasing the thermal stability is of an additive nature, and lanthanum oxide shows the higher efficiency than cerium one. According to X-ray phase analysis data, stabilizing action is conditioned by occurrence of rare-earth element oxides into lattice of Al2O3, which retards diffusional processes leading to phase transitions of low-temperature crystalline modifications of alumina into high-temperature ones with a low specific surface. For the catalyst samples modified with La2O3 an effect of thermal activation is observed, which is revealed by increase in catalytic activity as a result of annealing at 850 °C. Such a phenomenon, as shown by means of X-ray photoelectron spectroscopy technique, can be explained via stabilization of palladium in singly charged state in the form of groups of Pd+O2 and corresponding increase in concentration of active centers.  相似文献   


17.
以Al_2O_3为载体,RuCl_3·xH_2O和FeCl_3·6H_2O为活性组分前驱体,采用吸附-沉淀法制备了Ru-Fe/Al_2O_3和Ru/Al_2O_3催化剂,以马来酸二甲酯加氢合成丁二酸二甲酯为探针反应,结合H_2-TPR和XRD表征技术,考察Fe改性Ru基催化剂的氧化-还原性能及催化活性。经氧化-还原循环处理后,催化剂Ru-Fe/Al_2O_3上马来酸二甲酯加氢活性高于Ru/Al_2O_3。XRD结果显示,经处理的Ru-Fe/Al_2O_3上未见金属Ru的特征衍射峰,而Ru/Al_2O_3上出现了金属Ru的特征衍射峰。结合H_2-TPR结果推断,Ru与Fe之间发生了相互作用,这种协同作用可以改善Ru/Al_2O_3催化剂的热稳定性。  相似文献   

18.
The study of catalytic decomposition of nitrous oxide to nitrogen and oxygen over Rh catalysts supported on various supports (USY, NaY, Al2O3, ZrO2, FSM-16, CeO2, La2O3) showed that the activities of Rh/Al2O3 and Rh/USY (ultrastable Y zeolite) catalysts were comparable to or higher than the other catalysts reported in the literatures. The catalytic activity of N2O decomposition was sensitive not only to the Rh dispersion but also to the preparation variables such as the Rh precursors and the supports used. A pulsed N2O experiment over a Rh/USY catalyst suggested that the catalytic N2O decomposition occurs on oxygen-covered surface and that O2 may be freed on collision of N2O molecules with the adsorbed oxygen atoms.  相似文献   

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