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1.
以正硅酸乙酯(TEOS)为硅源,P123为模板剂,通过加入适量HAc及调整反应体系pH方式,采用水热及萃取法合成表面羟基含量较高的介孔SBA-15材料.以不同含量四乙烯五胺(TEPA)对SBA-15进行功能化,获得氨基功能化介孔SBA-15材料.利用X射线衍射(XRD)、N2吸-脱附、傅里叶红外光谱(FT-IR)、扫描电子显微镜(SEM)、透射电子显微镜(TEM)、元素分析等手段对材料结构性能进行表征.以不同含量TEPA功能化介孔SBA-15为吸附剂,对CO_2进行吸附,考察了吸附温度、CO_2浓度、水等对吸附效率的影响.实验结果表明,常温、常压下30%TEPA功能化介孔SBA-15的CO_2吸附量最高,且重复使用性能良好.  相似文献   

2.
采用不同硅铝比的介孔分子筛(Al-SBA-15)作为载体负载不同量的铜元素作为催化剂(CuO/AlSBA-15),通过小角X射线衍射、氮气吸附脱附等温线表征其结构性质,并以苯酚羟基化的反应为模型反应考察了材料的催化性能。研究发现,高的铜负载量不利于介孔材料结构的保持,在较低的铜负载量(3%)的情况下就可以使苯酚羟基化达到61.2%的高转化率。通过对Al-SBA-15和SBA-15作为载体的催化剂的循环套用分析,发现Al-SBA-15作为载体经过5次套用之后依然保持着57.9%的高转化率,而SBA-15经5次套用后的转化率仅有43.6%。这种结果应该得益于载体中的铝元素增加了材料表面的电荷,使铜离子与载体的相互作用加强,在循环套用中的铜离子在材料表面的分散更均匀。  相似文献   

3.
以P123为模板,1,2-二(三甲氧基硅基)乙烷(BTME)为硅源合成了介孔氧化硅纳米管(E-SNTs).将ESNTs经过聚乙烯亚胺(PEI)修饰后制得吸附剂用于捕捉CO2.对吸附剂进行了透射电镜(TEM)、物理吸附、傅里叶变换红外(FTIR)光谱、热重分析(TGA)等表征.E-SNTs-PEI吸附剂的最佳CO2吸附温度为75°C.吸附剂的CO2吸附量随着PEI负载量的增加呈现先增大后减小的趋势,其中50%为最佳负载量,此时吸附剂的吸附量最大为3.32 mmol·g-1.相比较SBA-15基吸附剂,E-SNTs基吸附剂具有更优异的吸附性能.在有水汽的存在下,吸附剂E-SNTs-50的CO2吸附量达到3.75 mmol·g-1.经过四次循环吸脱附实验测试E-SNTs-PEI吸附剂的稳定性能,结果表明其CO2吸附量基本不变,该吸附剂表现出较好的稳定性和可再生能力.  相似文献   

4.
采用水热后合成法制备了BiVO_4/SBA-15催化剂,利用XRD、SEM-EDS和N2吸附-脱附等手段对其进行表征分析,并在自制的光催化反应装置中对其静态光催化氧化脱硫性能进行了研究。结果表明,BiVO_4/SBA-15催化剂具有SBA-15分子筛的介孔孔道结构,BiVO_4均匀分布在SBA-15分子筛表面。BiVO_4/SBA-15催化剂具有良好的催化氧化脱硫性能,在BiVO_4负载量为15%、水热合成时间为18 h、530℃下焙烧3 h制备的BiVO_4/SBA-15催化剂,对模拟柴油的脱硫率可达95.6%。  相似文献   

5.
采用孔道内水解法制备了WO_3-TiO_2/SBA-15催化剂用于光催化氧化柴油脱硫,利用XRD、SEM、EDS、N2吸附-脱附、FT-IR、TG-DTA和UV-vis等技术对该催化剂进行了表征,考察了WO_3和TiO_2负载量、焙烧温度和焙烧时间对其光催化氧化脱硫性能的影响。结果表明,WO3和Ti O2负载量分别为1.6%和15%,焙烧温度500℃,焙烧时间为3 h条件所制备的催化剂性能最佳;在该条件下制备的WO_3-TiO_2/SBA-15催化剂仍保持SBA-15的六方介孔结构,模拟柴油的脱硫率高达87.9%,且具有良好的回收再生性能。  相似文献   

6.
CuO/SBA-15催化剂上巴豆醛选择性加氢   总被引:5,自引:1,他引:4  
通过γ-氨丙基三甲氧基硅烷(APTS)偶联与Cu2 离子络合两步法将CuO负载到介孔分子筛SBA-15上,制得CuO/SBA-15催化剂,考察了催化剂的巴豆醛选择性加氢反应性能.通过X射线粉末衍射、氮气吸脱附和程序升温还原(TPR)技术对催化剂进行了表征.结果表明,SBA-15分子筛负载CuO后保持原有的介孔结构,但是孔容和比面表积随着CuO负载量的增大而下降.TPR结果表明CuO/SBA-15系列催化剂有三种CuO物种:高分散CuO、晶相CuO和进入SBA-15分子筛骨架的Cu2 .高分散CuO物种对巴豆醛加氢反应的催化活性最高,晶相CuO物种次之,而进入SBA-15分子筛骨架的Cu2 物种几乎没有活性.  相似文献   

7.
考察了不同偶联剂改性的介孔材料SBA-15对甲基丙烯酸甲酯(MMA)和苯乙烯(St)的吸附与释放性能,研究了在室温条件下的吸附与释放动力学行为。结果表明,偶联剂的表面改性使介孔材料对MMA和St的饱和吸附量明显降低,而吸附率与释放率升高;介孔材料释放速率先快后慢,释放量最后趋于平衡;改性介孔材料SBA-15对吸附质吸附行为符合准二级吸附动力学方程,释放行为符合一级释放动力学方程。最大释放量实验值与拟合的理论值较为吻合。介孔材料对St的释放时间要远长于MMA。  相似文献   

8.
方林  张坤  李晓红  吴海虹  吴鹏 《催化学报》2012,(1):2125-2133
利用化学浸渍法将蔗糖负载到 SBA-15 介孔材料孔道内部, 高温炭化形成的多聚苯环经发烟硫酸气相磺化处理后, 得到磺酸基团功能化的新型碳-硅介孔复合材料. 发烟硫酸气相磺化处理是该材料合成的关键步骤. X 射线衍射、扫描电镜和氮气吸附结果表明, 碳-硅介孔复合材料经磺酸化处理保持了高度有序的介孔结构. 热重、傅里叶变换的红外光谱及吡啶吸附红外光谱结果证明, 磺酸功能基团成功的嫁接于碳-硅介孔复合材料孔道的内表面, 反应活性中心为 Br?nsted 酸, 酸密度在 0.09~0.70 mmol/g 可以有效调变. 当碳负载量为 35% 时, 该复合材料在生物柴油的绿色合成中显示出最优的催化性能, 且可重复使用 3 次以上.  相似文献   

9.
以不同类型的硅烷偶联剂对自制的介孔分子筛SBA-15进行了改性,研究了改性介孔材料SBA-15对水、甲苯和双环戊二烯(DCPD)/苯乙烯(St)(DCPD/St=9/1,体积比)单体混合液(DS)的吸附和释放性能。研究发现,改性前,SBA-15吸附水和甲苯的量相差不大,而吸附单体混合物量较多;使用硅烷偶联剂改性后,吸附量均下降,但是吸附速率提高,吸附量较小者吸附速度较快。介孔材料对甲苯的释放速率是对水和DS的100倍左右,改性介孔材料提高了对吸附质的释放速率;吸附和释放均符合准二级吸附动力学方程。  相似文献   

10.
以具有骨架结构的SBA-15介孔分子筛为载体,采用浸渍法合成了具有高比表面积、不同金属氧化物含量的Cu-Zn-Zr介孔催化剂CZZx/SBA-15(x=0.3,0.4,0.5,0.6).采用N2吸附-脱附(BET)、X射线衍射(XRD)、H2程序升温还原(H2-TPR)、CO2吸附(CO2-TPD)和透射电子显微镜(TEM)等手段对样品进行了表征.在固定床反应器上评价了其CO2加氢合成甲醇的催化性能.实验结果表明,CZZx/SBA-15催化剂具有介孔结构,负载的Cu O,Zn O和Zr O2能够很好地分散在表面,并且负载氧化物晶粒尺寸不同.催化剂的铜比表面积SCu与甲醇催化活性呈近似线性关系,其中CZZ0.4/SBA-15催化剂表现出最大甲醇选择性(54.32%),与CZZ相比,甲醇选择性增加24.85%.随着金属氧化物负载量的增大,催化剂比表面积和SCu明显减小,甲醇选择性与收率也相应减小,负载型CZZx/SBA-15催化剂表面结构对CO2加氢合成甲醇反应活性起关键作用.  相似文献   

11.
Copper species were incorporated into SBA-15 by solid-state grinding precursor with as-prepared mesoporous silica (SPA). The obtained materials (CuAS) were well-characterized by XRD, TEM, N(2) adsorption, H(2)-TPR, IR, and TG and compared with the material derived from calcined SBA-15 (CuCS). Surprisingly, CuO up to 6.7 mmol·g(-1) can be highly dispersed on SBA-15 by use of SPA strategy. Such CuO forms a smooth layer coated on the internal walls of SBA-15, which contributes to the spatial order and results in less-blocked mesopores. However, the aggregation of CuO takes place in CuCS material containing 6.7 mmol·g(-1) copper, which generates large CuO particles of 21.4 nm outside the mesopores. We reveal that the high dispersion extent of CuO is ascribed to the abundant silanols, as well as the confined space between template and silica walls provided by as-prepared SBA-15. The SPA strategy allows template removal and precursor conversion in one step, avoids the repeated calcination in conventional modification process, and saves time and energy. We also demonstrate that the CuAS material after autoreduction exhibits much better adsorptive desulfurization capacity than CuCS. Moreover, the adsorption capacity of regenerated adsorbent can be recovered completely.  相似文献   

12.
A series of Al-containing SBA-15 type materials with different Si/Al ratio, were prepared by post-synthesis modification of a pure highly ordered mesoporous silica SBA-15 obtained by using sodium silicate as silica source, and amphiphilic block copolymer as structure-directing agent. A high level of aluminum incorporation was achieved, reaching an Si/Al ratio of up to 5.5, without any significant loss in the textural properties of SBA-15. These materials were fully characterized by powder X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), 27Al NMR spectroscopy, and N2 adsorption at 77 K. The acid properties of these materials have been evaluated by NH3-TPD, adsorption of pyridine and deuterated acetonitrile coupled to FTIR spectroscopy. The effective acidity of these materials was evaluated using two catalytic reactions: 2-propanol dehydrogenation and 1-butene isomerization. The adsorption of basic probe molecules and the catalytic behavior revealed an evolution of the acid properties with the Al content. These studies have shown that the Al-SBA-15 materials contain Brønsted and Lewis acid sites with medium acidity which makes them appropriate to be used as acid catalysts in heterogeneous catalysis, catalytic supports, and adsorbents.  相似文献   

13.
Hexagonally ordered SBA-15 mesoporous silica spheres with large uniform pore diameters are obtained using the triblock copolymer, Pluronic P123, as template with a cosurfactant cetyltrimethylammonium bromide (CTAB) and the cosolvent ethanol in acidic media. A series of surface modified SBA-15 silica materials is prepared in the present work using mono- and trifunctional alkyl chains of various lengths which improves the hydrothermal and mechanical stability. Several techniques, such as element analysis, nitrogen sorption analysis, small angle X-ray diffraction, scanning electron microscopy (SEM), FTIR, solid-state (29)Si and (13)C NMR spectroscopy are employed to characterize the SBA-15 materials before and after surface modification with the organic components. Nitrogen sorption analysis is performed to calculate specific surface area, pore volume and pore size distribution. By surface modification with organic groups, the mesoporous SBA-15 silica spheres are potential materials for stationary phases in HPLC separation of small aromatic molecules and biomolecules. The HPLC performance of the present SBA-15 samples is therefore tested by means of a suitable test mixture.  相似文献   

14.
Formation of titanium nitride nanoparticles within mesoporous silica SBA-15   总被引:2,自引:0,他引:2  
We report the first synthesis of titanium nitride (TiN) nanoparticles inside the nanoscale channels of mesoporous silica SBA-15. The TiN precursor, Ti(NMe(2))(4) in toluene, was incorporated into the methyl group-modified channels of the SBA-15 powder. The functionalization of pore surfaces with methyl groups generates hydrophobic surfaces that facilitate impregnation with Ti(NMe(2))(4) and minimizes reactions between the TiN precursor and the hydroxyl groups on the surface of SBA-15. Formation of TiN nanoparticles inside the mesoporous channels of SBA-15 was carried out by subsequent ammonolysis at high temperatures (700-750 degrees C). The final products have been characterized by TEM and EELS images, powder XRD patterns, FTIR spectra, UV-vis absorption spectra, and nitrogen adsorption isotherm measurements to confirm the presence and distribution of TiN nanoparticles in the SBA-15 samples.  相似文献   

15.
《Comptes Rendus Chimie》2015,18(10):1013-1029
In this paper, SBA-15 mesoporous silica based adsorbents were synthesized for the desulfurization of flue gas streams, by several methods (wet impregnation, incipient wetness impregnation and ion exchange). The influence of the drying and calcination conditions on the porous texture and the dispersion of the active phase (CuO), as well as the efficiency of the adsorbents for SOx trapping, were studied. Depending on the synthesis conditions, copper species are present as large CuO particles (1 μm) and/or as homogeneously dispersed species, undetectable by XRD/TEM. The SOx adsorption efficiency seems to be closely related to the undetected copper species.  相似文献   

16.
The surface of SBA-15 ordered mesoporous silica was functionalized with sulphonic and amine functional groups to determine the effect of changes in surface acidity on cephalexin adsorption and subsequent release. Cephalexin (CPX), which belongs to the group of cephalosporins or β-lactam antibiotics, was impregnated on functionalized SBA-15. The functionalized silica materials were characterized by SEM, TGA, FTIR and N2 adsorption, and an in vitro drug delivery test was performed. SEM micrographs showed the packed cylinders correspond to SBA 15 materials. Likewise, N2 adsorption–desorption isotherms demonstrated that the SBA-15 structure was obtained when IV-type isotherms were displayed. The inalterable stabilization of the drug was confirmed by FTIR spectroscopy. For all the samples studied, the delivery profiles exhibit two steps. A fast initial stage was obtained over the first 5 h, followed by a slower one. Regarding this second stage, the time needed to attain a plateau was undoubtedly altered by the surface functionalization.  相似文献   

17.
以硝酸镍为镍源, 磷酸氢二铵为磷源, 介孔分子筛SBA-15为载体, 用共浸渍法制备了含磷化镍前驱体的样品, 然后在氢气流中采用程序升温还原法, 制备了Ni2P质量分数为5%-40%的Ni2P/SBA-15催化剂. 用X射线衍射(XRD)、N2吸附脱附、透射电子显微镜(TEM)、傅立叶变换红外光谱(FTIR)等分析测试技术对催化剂的结构进行了表征, 以噻吩和二苯并噻吩(DBT)为模型化合物, 在微型固定床反应器上对催化剂的加氢脱硫(HDS)性能进行了评价. 结果表明, Ni2P/SBA-15催化剂中SBA-15 的介孔结构依然存在, 活性组分Ni2P具有良好的分散性, 但随Ni2P含量的增加, 催化剂的比表面积、孔容和孔径均有明显减小. 当反应温度为320 ℃时, Ni2P含量为15%-25%(w)的催化剂就具有很好的加氢脱硫催化性能; 反应温度在360 ℃以上时, 所有催化剂都具有优异的深度脱硫催化性能. Ni2P/SBA-15催化剂对二苯并噻吩的加氢脱硫(HDS)主要以直接脱硫机理(DDS)进行.  相似文献   

18.
在SBA-15的合成体系中直接引入锆原子硝酸盐,用氨水调节体系的pH值到4.0~5.0,通过水热晶化处理后得到一系列不同含量的Zr-SBA-15介孔微球。利用XRD、氮吸附、SEM、TEM-EDS、ICP、FT-IR、和漫反射UV-vis等技术对该材料的组成、结构及形貌进行了表征。结果表明,这种杂化材料具有纳米介孔结构、高比表面积和空心微球等特征,空心微球形貌的形成可能与金属杂原子的引入、溶液pH值的调节有关,锆原子被高效率地引入到纳米介孔结构中,表面酸性与未改性前相比有了显著的提高,随着锆含量的增加,样品结构和表面酸性的变化直接影响着催化剂在甲醇脱水反应中的表现。  相似文献   

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