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1.
以硝酸钴为钴源,采用水热法合成了MCM-41和不同Co含量的Co-MCM-41分子筛,并利用XRD、FT-IR和低温N2吸附-脱附等方法对合成的分子筛进行表征。当加入的Co/Si物质的量比达到0.1时,依然能够成功合成具有规整有序的介孔结构的Co-MCM-41。MCM-41和Co-MCM-41静态吸附脱除0#柴油中碱氮的实验结果表明,Co/Si物质的量比为0.06的Co-MCM-41(2)分子筛的吸附容量最大,达到5.324 mg(N)/g分子筛,明显高于MCM-41分子筛的吸附容量2.532 mg(N)/g,说明Co进入MCM-41分子筛骨架后显著提高了分子筛的吸附脱除碱氮能力。当加入的Co/Si物质的量比大于0.06时,分子筛吸附脱除柴油中碱氮的能力反而下降,这是由于加入过多Co会使其以Co3O4形式高度分散在分子筛孔道中,堵塞了吸附活性位,使其无法与碱性氮化物接触造成吸附脱氮能力下降。动态吸附脱除0#柴油中碱性氮化物的结果表明,每克CoM CM-41(2)分子筛可将35 m L柴油的碱氮从147.54μg/g吸附脱除到10μg/g以下,吸附容量为4.2 mg(N)/g(吸附剂),由于动态吸附的接触时间较短使MCM-41失去了吸附脱氮能力,说明Co-MCM-41(2)对柴油中的碱氮具有较好的选择性。  相似文献   

2.
采用等体积浸渍法制备了Mn改性活性焦吸附剂(Mn-AC),研究了模拟合成气(0.04%H2S、20%CO、30%H2、N2为平衡气体)下Mn-AC对单质汞的吸附特性,并利用BET、XPS、XRD等手段对吸附剂进行表征,分析了还原性气体对吸附剂脱汞性能的影响。结果表明,在模拟合成气气氛下,Mn-AC具有优异的汞脱除能力,200℃下2 h内平均汞脱除率达到84.3%。合成气中,H2S提供了具有脱汞能力的活性硫吸附位(Sad),显著地提高了Mn-AC的高温脱汞能力;H2消耗了吸附剂表面的活性氧,不利于活性硫的生成,CO消耗了生成的活性硫吸附位,两者对汞脱除均有抑制作用。高温下由于活性硫和汞的反应减弱,同时H2的抑制作用加强,吸附剂对单质汞的脱除能力下降。  相似文献   

3.
凹凸棒土粘结剂对13X分子筛吸附性能的促进作用   总被引:1,自引:0,他引:1  
以凹凸棒土为粘结剂制备了13X分子筛吸附剂.研究了其孔结构、表面电性和对水、CO2和N2分子的吸附性能,并与高岭土为粘结剂的同类吸附剂进行了比较.结果表明,凹凸棒土发达的孔隙结构、大的比表面和表面负电性质有利于其吸附容量的改善,而13X/凹凸棒土中丰富的中孔促进了其对CO2的吸附速率.另外由CO2吸附热力学分析可知,CO2在13X/凹凸棒土上具有较低的吸附热,结果将有利于其在吸附剂上的脱附.  相似文献   

4.
在晶化釜内动态水热合成了MCM-56分子筛, 采用过氧化氢回流处理方法脱除模板剂, 获得了高比表面积分子筛MCM-56[MCM-56(H2O2)]. 采用XRD, N2气吸附-脱附, NH3-TPD和FTIR等对其结构和酸性进行表征, 考察了HMCM-56(H2O2)分子筛在苯与丙烯液相烷基化合成异丙苯中的催化性能. 研究结果表明, 过氧化氢回流处理能够有效去除模板剂. 与焙烧去除模板剂的HMCM-56(C)相比, HMCM-56(H2O2)分子筛的BET比表面积达到563 m2/g, 外表面积提高近2倍. 酸性表征说明, 与HMCM-56(C)相比, HMCM-56(H2O2)的总酸量较高而酸强度分布不变. 在苯与丙烯液相烷基化反应中, HMCM-56(H2O2)分子筛表现出更好的低温活性和更高的异丙苯选择性.  相似文献   

5.
分子筛材料在小分子吸附分离中的应用   总被引:1,自引:0,他引:1  
吸附分离技术与工艺在工业上具有重要意义. 常见的吸附剂包括沸石分子筛、 金属有机框架材料、 活性炭等材料. 分子筛具有比表面积大、 稳定性高、 生产成本低等优势, 可以满足吸附分离技术中高效、 节能和环保的需求, 是一种非常有应用前景的小分子混合物分离吸附剂. 本文综合评述了吸附分离领域中常用的吸附剂材料的特点和吸附分离机理与评价方法, 总结了分子筛在空气分离、 烃类分离、 二氧化碳吸附、 芳香硫化物脱除、 一氧化碳吸附、 氮氧化物吸附、 氢气储存吸附及氢同位素分离等领域的应用, 并对基于分子筛膜的小分子混合物分离现状进行了介绍. 此外, 本文还系统分析了分子筛对不同混合物的吸附分离性能与其拓扑结构、 骨架组成及改性方法之间的关系, 并对未来的研究前景进行了展望.  相似文献   

6.
Silicalite-1分子筛膜的合成及气体渗透性能   总被引:2,自引:0,他引:2  
采用原位水热合成的方法在管状α Al2 O3 基膜上合成了Silicalite 1分子筛膜 ;并采用XRD ,SEM等方法表征了该膜的性质 ;研究了单组分H2 ,N2 ,Ar,CH4,C2 H4,C2 H6,C3 H8,n C4H10 ,i C4H10 等气体在 2 98K及 473K时的渗透特性 .单组分H2 ,N2 ,Ar的渗透率随压差不变 ,单组分H2 /i C4H10 在 2 98K和 473K时的理想分离系数为 2 49和 36 .2 ,偏离Knudsen扩散的比值 ,表明气体是通过Silicalite 1分子筛的孔道透过 .低碳烷烃的渗透率按以下次序降低 :CH4>C2 H6>C3 H8>n C4H10 >i C4H10 .正异丁烷的理想分离系数在 2 98K时为 1 5 .温度升至 473K时 ,除N2 ,Ar外 ,所有的气体的渗透率都增加 ,正异丁烷的理想分离系数在 473K时降至 9.0 .气体分离数据表明 ,该膜没有缺陷  相似文献   

7.
苯并噻吩在酸改性NaY分子筛上的吸附   总被引:1,自引:0,他引:1  
以NaY分子筛为母体,通过柠檬酸、磷酸改性分别得到吸附剂NaY-C和NaY-P.采用SEM、XRD、XRF、N2物理吸附及NH3-TPD表征可知,柠檬酸改性后得到的NaY-C吸附剂介孔表面积增加,分子筛骨架结构保持不变.同时,磷酸改性使得NaY分子筛表面弱酸量减少强酸量增加,改性后所得吸附剂NaY-P的强酸量大于NaY-C.吸附实验表明,NaY-C和NaY-P均可完全脱除模拟油品中的苯并噻吩,同时NaY-C吸附剂对0#柴油的脱硫能力优于NaY-P吸附剂.再生实验中NaY-C和NaY-P吸附剂对模拟油品的脱硫率由第一次的100%分别下降至第6次的91.97%和85.96%.由此可知,柠檬酸改性NaY分子筛所得NaY-C吸附剂的脱硫能力优于NaY-P,原因是吸附剂上的介孔更易于发生吸附脱硫.  相似文献   

8.
烟气中多环芳烃吸附脱除的研究   总被引:7,自引:0,他引:7  
针对热电厂烟气中排放的多环芳烃(PAHs)污染物,在实验室规模上研究了六种吸附剂对烟气中典型的PAHs, 如萘(Nap)、芴(Flu)、菲(Phe)的吸附脱除行为。考察了吸附剂结构特征与Nap,Flu,Phe高温脱除的相关性,并对煤质活性炭(AC-1)在160 ℃~200 ℃下的吸附等温线进行了研究。结果表明,吸附剂对PAHs的吸附能力与其结构参数中BET表面积和微孔体积具有紧密相关性,而与中孔体积没有明显关系;活性炭表现出很好的脱除烟气中PAHs的作用;吸附剂对PAHs的吸附能力随着PAHs的质量分数增大而增大,随吸附温度的增加而减小;随着PAHs的碳原子数和芳环数增加,其在吸附剂上的吸附能力也增强。  相似文献   

9.
在液相环己酮氨肟化反应中,有机物在钛硅分子筛催化剂(TS-1)上的沉积是造成失活的原因之一。采用傅里叶变换红外光谱、热重-差热、色谱-质谱联用、X-射线衍射、固体核磁共振、N2物理吸附和扫描电镜等分析手段,对失活TS-1的骨架结构及表面沉积物分子的结构和物化性质进行了表征。结果表明,引起催化剂失活的沉积物富集在分子筛的孔道内,主要有环己酮的氧化或还原产物、环己酮的二聚物、环己酮肟深度反应产物、叔丁基环己酮等可溶性沉积物以及它们缩聚而成的不溶性沉积物,其量可占失活催化剂总质量的5.0%。TPO烧炭时靠近Ti中心处的沉积物可以在较低温度下脱除,而孔道内的其他沉积物需要在较高温度下脱除,650℃沉积的炭可完全脱除。失活催化剂经700℃煅烧再生后,催化活性可恢复到新鲜催化剂的水平。  相似文献   

10.
用液相离子交换法制备了NiY分子筛,并用XRD、TEM、ICP、N2吸附和吡啶吸附原位红外技术等表征手段对其进行了表征. 利用固定床、气相色谱-硫发光检测器(GC-SCD)及傅里叶红外光谱(FT-IR)等方法系统研究了NiY分子筛对噻吩、2-甲基噻吩、3-甲基噻吩、四氢噻吩、苯并噻吩、二苯并噻吩、4-甲基二苯并噻吩、4,6-二甲基二苯并噻吩8种有机硫化物的选择性吸附脱硫性能和吸附机理. 结果表明,NiY分子筛对硫化物的穿透吸附硫容量顺序为四氢噻吩﹥苯并噻吩≈二苯并噻吩≈4,6-二甲基二苯并噻吩﹥4-甲基二苯并噻吩﹥2-甲基噻吩≈3-甲基噻吩﹥噻吩,说明有机硫化物的空间位阻效应不是其在NiY分子筛上吸附的决定因素. 红外结果表明,不同硫化物与NiY分子筛的作用机理并不相同,但主要以硫原子与金属离子配位作用(S-M作用)为主. 噻吩及其烷基取代物在NiY吸附剂上表面酸性作用下发生催化反应,噻吩环的共轭体系遭到破坏形成硫化物大分子或聚合物,导致分子筛孔道的堵塞,严重影响吸附剂的吸附脱硫能力. NiY的选择性吸附脱硫性能是硫化物与吸附中心的作用模式及吸附剂表面酸性综合作用的结果.  相似文献   

11.
Separation of carbon dioxide and methane is an important issue in upgrading low-quality natural gas. Adsorption equilibria and kinetics of CO(2) and CH(4) on a copper metal-organic framework (MOF), Cu(hfipbb)(H(2)hfipbb)(0.5) [H(2)hfipbb=4,4'-(hexafluoroisopropylidene) bis(benzoic acid)], were investigated to evaluate the feasibility of removing CO(2) from CH(4) in a pressure swing adsorption process using this new MOF adsorbent. The heat of adsorption of CO(2) on the Cu-MOF at zero-coverage (29.7 kJ/mol) is much lower than those on a carbon molecular sieve and a zeolite 5A adsorbent; and the heat of adsorption of CH(4) on the Cu-MOF (21.4 kJ/mol) is similar to that on the zeolite 5A adsorbent and smaller than that on a carbon molecular sieve. The Cu-MOF being investigated has apertures of (~3.5 × 3.5 ?), which favors the kinetically controlled separation of CO(2) and CH(4). The kinetic selectivity is found to be 26 at 298 K, and the overall selectivity (combining the equilibrium and kinetic effects) is about 25 for an adsorption separation process. These results suggest that the Cu-MOF adsorbent is an attractive alternative adsorbent for the CO(2)/CH(4) separation.  相似文献   

12.
 以吗啉(C4H9NO)为主要模板剂,以少量四乙基氢氧化铵(TEAOH)为辅助模板剂合成了SAPO -34分子筛,并用氨吸附红外、核磁共振和氮吸附等手段对合成的SAPO-34分子筛进行了表 征. 结果表明,与单独以吗啉为模板剂合成的样品相比,用复合模板剂合成的分子筛样品的比 表面积和孔体积均有所增大; 由于在分子筛骨架中形成了“硅岛”,使其B酸量有所增加 ,对甲醇制低碳烯烃反应的催化性能有所改善.  相似文献   

13.
Adsorption and desorption of H(2) and D(2) from porous carbon materials, such as activated carbon at 77 K, are usually fully reversible with very rapid adsorption/desorption kinetics. The adsorption and desorption of H(2) and D(2) at 77 K on a carbon molecular sieve (Takeda 3A), where the kinetic selectivity was incorporated by carbon deposition, and a carbon, where the pore structure was modified by thermal annealing to give similar pore structure characteristics to the carbon molecular sieve substrate, were studied. The D(2) adsorption and desorption kinetics were significantly faster (up to x1.9) than the corresponding H(2) kinetics for specific pressure increments/decrements. This represents the first experimental observation of kinetic isotope quantum molecular sieving in porous materials due to the larger zero-point energy for the lighter H(2), resulting in slower adsorption/desorption kinetics compared with the heavier D(2). The results are discussed in terms of the adsorption mechanism.  相似文献   

14.
高效PLOT碳分子筛石英毛细管柱的研制及其性能研究   总被引:4,自引:0,他引:4  
选用碳分子筛作吸附剂 ,用液相沉淀法涂渍出高效PLOT碳分子筛石英毛细管色谱柱 ,并对其色谱性能进行了考察。结果表明 ,该色谱柱具有良好的分离特性 ,1次进样可分离出O2、N2、CO、CO2、CH4、C2H2、C2H4、C2H6 等组分;适用于炼厂气、烟道气、水煤气及变压器油溶解气等的分析。  相似文献   

15.
To exploit an effective adsorbent to separate hydrogen and methane, microporous titanium silicate molecular sieve NaETS-4 was synthesized and modified by strontium. The adsorption characteristics and diffusion behaviors of the prepared titanosilicate molecular sieve were studied by concentration pulse chromatography. And the effects of ion-exchange and dehydration temperature on adsorbent structure and gas diffusion were also discussed. The results showed that the thermal stability and Henry's Law constants were enhanced and micropore diffusivity decreased after exchanging Na+ with Sr2+. With the increase of dehydration temperature, Henry's Law constant and micropore diffusivity of CI-I4 decreased in both NaETS-4 and SrETS-4. While for 1-12 in SrETS-4, the increase of Henry's Law constant and the decrease of diffusion rate can be attributed to the shrinks of pore diameter resulting from the relocation of Sr2+. Correspondingly, the kinetic selectivity of H2/CH4 reached 8.91 indicating its potentiality in separating H2 and CH4.  相似文献   

16.
多孔碳的表面含氧官能团对其吸附及催化性能的影响受到越来越多的关注[1-2],表面含氧基团对活性炭催化醇脱水[3]、乙苯脱氢[4]、O2还原为过氧化氢[5]、Fe(II)与O2氧化反应[6]已有报道.  相似文献   

17.
The adsorption/desorption equilibria of water vapor in a carbon molecular sieve (CMS) membrane and a commercial CMS adsorbent were determined, exhibiting S-shaped, type V isotherms. The fits of several models found in the literature to the experimental data were evaluated. The results obtained led to the development of a new model accounting for both adsorption and desorption and essentially based on the work of Lagorsse et al. (2005) [15]. Furthermore, the adsorption kinetics was also assessed for both materials and well described by a linear driving force model. The existence of hydrophilic groups responsible for water vapor adsorption in such carbonaceous materials has been related to the surface chemistry by means of X-ray microanalysis and by thermogravimetry. It was concluded from X-ray microanalyses that the carbon membrane presents a lower C/O ratio and is thus more sensitive towards water vapor exposure, as evidenced by the measured water adsorption at lower relative pressures. It was also observed that the diffusion rates are higher for the CMS membrane than for the CMS adsorbent.  相似文献   

18.
Using a hierarchical multiscale approach combining quantum mechanics and molecular simulation, we have investigated the adsorption of pure CO(2) and N(2) and their mixture at room temperature in C(168) schwarzite, as a model for nanoporous carbons. First, the adsorbate-adsorbent interaction potential is determined using ab initio quantum mechanics computations, and then the adsorption is predicted using full atomistic Monte Carlo simulations. The extents of adsorption, adsorption energies, and isosteric heats of pure CO(2) and N(2) simulated with the ab initio potential are found to be higher than those with the empirical Steele potential that had been developed from gas adsorption on planar graphite. The inclusion of the electric quadrupole moment of adsorbate in simulation has no discernible effect on N(2) adsorption but results in a larger extent of CO(2) adsorption at high coverages. The selectivity of CO(2) over N(2) in the C(168) schwarzite from a model flue gas is predicted to be significantly larger with the ab initio potential than with the Steele potential. This illustrates the importance of an accurate adsorbate-adsorbent interaction potential in determining gas adsorption and suggests that nanoporous carbons might be useful for the separation of flue gases. As a comparison, the adsorption and selectivity of CO(2) and N(2) in ZSM-5 zeolites are also simulated with the experimentally validated potential parameters. The selectivity in the C(168) schwarzite predicted with the ab initio or Steele potential is found to be larger than the selectivity in all-silica ZSM-5, but less than that in Na-exchanged ZSM-5 zeolites.  相似文献   

19.
The experimental investigation demonstrates that a setisfactory can be expected for pressure swing adsorption (PSA) purification of natural gas as raw material for thermal chlorination process.Using hh-4 molecular sieve as adsorbent for removing C2^ components,the suitable adsorption pressure is 0.4-0.45 MPa,desorption vacuum is 0.08-0.09 MPa and circulation time is 20-21 min.  相似文献   

20.
The experimental investigation demonstrates that a satisfactory result can be expected for pressure swing adsorption (PSA) purification of natural gas as raw material for thermal chlorination process. Using hh-4 molecular sieve as adsorbent for removing C2 components, the suitable adsorption pressure is 0.4-0.45 MPa, desorption vacuum is 0.08-0.09 MPa and circulation time is 20-21 min.  相似文献   

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