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1.
刘江  吴玉芳  许峰  肖静  夏启斌  李忠 《化工学报》2016,67(5):1942-1948
采用水热法成功制备了MOF-74(Ni),使用PXRD、孔径分析对材料进行了表征,测定了材料在不同温度下的C3H6和C3H8吸附等温线,应用程序升温脱附技术估算了脱附活化能,并使用IAST理论预测了材料对C3H6/C3H8二元体系的吸附选择性。讨论了温度对吸附机理和吸附选择性的影响。结果显示,MOF-74(Ni)的BET比表面积高达1306 m2·g-1。在298 K下,C3H6的吸附量高达7.4 mmol·g-1。随着温度升高,C3H8的吸附量大幅降低,而C3H6的吸附量下降程度较小,导致材料对C3H6/C3H8吸附选择性升高。当温度为328K时,MOF-74(Ni)对C3H6/C3H8二元气体混合物的吸附选择接近12。程序升温脱附的实验结果显示,C3H6在MOF-74(Ni)上的脱附活化能大于C3H8,分别为68.92 kJ·mol-1和50.80 kJ·mol-1。C3H6是通过与MOF-74(Ni)的不饱和金属位点Ni2+以p络合作用方式吸附,作用力较强,而C3H8与Ni2+之间的作用力较弱。根据吸附机理不同的特点,适当提高温度,将有助于提高MOF-74(Ni)吸附分离C3H6/C3H8混合物体系的吸附选择性。  相似文献   

2.
应用溶剂热法合成了不同氧化石墨烯(GO)负载量的MOF-505@GO复合材料,分别采用全自动表面积吸附仪、P-XRD、SEM和Raman对材料进行了性能表征,测定了CH4、C2H6和C3H8在MOF-505@GO上的吸附等温线,并进行Langmuir-Freundlich方程拟合,依据IAST理论模型计算了C2H6/CH4和C3H8/CH4二元混合气在MOF-505@5GO上的吸附选择性。研究结果表明,随着GO负载量增大,MOF-505@GO复合材料的孔容及BET比表面积先增大后减小,当GO负载量为5%(质量)时,复合材料MOF-505@5GO的孔容及BET比表面积达到最大,当GO负载量进一步增大至8%(质量)和10%(质量)时,复合材料的孔容及BET比表面积逐渐降低。在0.1 MPa和298 K条件下,MOF-505@5GO对CH4、C2H6和C3H8的吸附容量分别为0.88、4.81和5.17 mmol·g-1,相比MOF-505分别提高了14.9%、30.7%和13.1%。MOF-505@5GO对C2H6/CH4和C3H8/CH4的吸附选择性分别为40.1和3056.1,其对C2H6/CH4和C3H8/CH4具有极高的吸附选择性。  相似文献   

3.
Nitrogen-rich porous organic polymers have shown great potentials in gas adsorption/separation, photocatalysis, electrochemistry, sensing and so on. Herein, 1,2,3-triazole functionalized triazine-based porous organic polymers (TT-POPs) have been synthesized by the copper-catalyzed azide-alkyne cycloaddition (Cu-AAC) polymerization reactions of 1,3,5-tris(4-azidophenyl)-triazine with 1,4-diacetylene benzene and 1,3,5-triacetylenebenzene, respectively. The characterizations of N2 adsorption at 77 K show TT-POPs possess permanent porosity with BET surface areas of 666 m2·g-1 (TT-POP-1) and 406 m2·g-1 (TT-POP-2). The adsorption capacities of TT-POPs for CO2, CH4, C2H2 and C2H4, as well as the selective separation abilities of CO2/N2, CO2/CH4, C2H2/CH4 and C2H4/CH4 were evaluated. The gas selective separation ratio of TT-POPs was calculated by the ideal adsorbed solution theory (IAST) method, wherein the selective separation ratios of C2H2/CH4 and C2H4/CH4 of TT-POP-2 was 48.4 and 13.6 (298 K, 0.1 MPa), which is comparable to other adsorbents (5.6-120.6 for C2H2/CH4, 10-26 for C2H4/CH4). This work shows that the 1,2,3-triazole functionalized triazine-based porous organic polymer has a good application prospect in natural gas purification.  相似文献   

4.
Direct separation of high purity ethylene (C2H4) from an ethane (C2H6)/ethylene mixture is a critical and challenging task owing to the very similar molecular size and physical properties of the two components. While some studies have attempted this separation, there is a lack of excellent porous materials with strong binding affinity for C2H6-selective adsorption via an energy-efficient adsorptive separation process. Herein, we report a titanium metal-organic framework with strong binding affinity and excellent stability for the highly efficient removal of C2H6 from C2H6/C2H4 mixtures. Single component adsorption isotherms demonstrated a larger amount of adsorbed ethane (1.16 mmol·g-1 under 1 kPa) and high C2H6/C2H4 selectivity (2.7) for equimolar C2H6/C2H4 mixtures, especially in the low-pressure range, which is further confirmed by the results of grand canonical Monte Carlo simulations for C2H6 adsorption in this framework. The experimental breakthrough curves showed that C2H4 with a high purity was collected directly from both 1:9 and 1:15 C2H6/C2H4 (volume ratio) mixtures at 298 K and 100 kPa. Moreover, the unchanged adsorption and separation performance after cycling experiments confirmed the promising applicability of this material in future.  相似文献   

5.
With the increasing demand for synthetic rubber, the purification of 1,3-butadiene (C4H6) is of great industrial significance. Herein, the successful removal of n-butene (n-C4H8) and iso-butene (iso-C4H8) from 1,3-butadiene (C4H6) was realized by synthesizing a novel TaOF52- anion-pillared ultramicroporous material TaOFFIVE-3-Ni (also referred to as ZU-96, TaOFFIVE=TaOF52-, 3=pyrazine). Single-component adsorption isotherms show that TaOFFIVE-3-Ni can achieve the exclusion of n-C4H8 and iso-C4H8 in the low pressure region (0-30 kPa), and uptake C4H6 with a high capacity of 92.78 cm3·cm-3 (298 K and 100 kPa). The uptake ratio of C4H6/iso-C4H8 on TaOFFIVE-3-Ni was 20.83 (298 K and 100 kPa), which was the highest among the state-of-the-art adsorbents reported so far. With the rotation of anion and pyrazine ring, the pore size changes continuously, which makes smaller-size C4H6 enter the channel while larger-size n-C4H8 and iso-C4H8 are completely blocked. The excellent breakthrough performance of TaOFFIVE-3-Ni shows great potential in industrial separation of C4 olefins. The specific adsorption binding sites within ZU-96 was further revealed through the modeling calculation.  相似文献   

6.
罗振敏  苏彬  王涛  程方明 《化工学报》2019,70(9):3601-3615
为研究C2H6/C3H8对甲烷爆炸极限参数及动力学特性的影响,采用标准的可燃气体爆炸极限测定装置测定了不同配比的C2H6/C3H8混合气体对甲烷爆炸极限的影响规律,同时得出了氮气惰化条件下甲烷爆炸临界参数的变化规律。此外,利用Chemkin软件模拟了C2H6/C3H8混合气体对甲烷爆炸过程中中间产物浓度的影响情况,并进行了敏感性分析。结果表明,C2H6/C3H8的存在降低了甲烷的爆炸上下限,增大了甲烷的爆炸危险度;在氮气惰化过程中甲烷的爆炸上限下降,爆炸下限上升,最终爆炸上下限重合,重合点处甲烷浓度和氮气临界浓度均随C2H6/C3H8的添加而逐渐减小;此外,C2H6/C3H8混合气体使甲烷爆炸过程中CO和·H的生成量逐渐增大,而CO2、·O和·OH的生成量则有下降趋势,通过对爆炸过程中甲烷体积的敏感性分析,发现C2H6/C3H8的存在在某种程度上促进了甲烷爆炸。对比不同配比的C2H6/C3H8混合气体,发现C3H8含量越高,其对甲烷爆炸过程中相关参数的影响越大,这可为工矿企业的安全生产提供一定的理论依据。  相似文献   

7.
唐瑜佞  王勋  彭俊洁  吴颖  李忠 《化工学报》2021,72(11):5664-5674
采用实验研究与分子模拟相结合的方法研究了低碳烷烃烯烃在超微孔柔性Cu(Qc)2上的吸附热力学、动力学和吸附分离机理。用常温合成方法制备了超微孔金属-有机骨架材料Cu(Qc)2,测定了低碳烷烃烯烃(CH4/C2H4/C2H6/C3H6/C3H8)在Cu(Qc)2上的吸附相平衡和吸附动力学。使用Materials Studio中的Fortcite模块模拟低碳烷烃烯烃在超微孔柔性Cu(Qc)2上的吸附机理以及材料的结构形变。结果表明Cu(Qc)2具有优良的C2H6 /C2H4吸附选择性和吸附动力学,而对C3H8 /C3H6的吸附选择性很低。273 K和0.1 MPa下,C2H6/C2H4在Cu(Qc)2上的IAST选择性达4.6。298 K和0.05 MPa下C2H6/C2H4在Cu(Qc)2上的扩散时间常数分别达1.42×10-3和1.48×10-3s-1,扩散活化能分别为16.62 和16.43 kJ/mol。应用装填Cu(Qc)2的固定床可在常温条件下实现C2H6 /C2H4二元混合气的完全分离。模拟结果显示Cu(Qc)2为二维堆叠结构,材料会由于吸附不同分子而发生不同程度的结构形变。甲烷易从变大的层间扩散脱附,导致其在材料上的吸附量很低;C2H6/C2H4两者都能稳定吸附在层中的孔道中,其分离推动力主要来源于两种气体在材料上明显的吸附热差异;C3H8/C3H6会分别吸附在两种不同的环境,吸附热差异小导致Cu(Qc)2对C3H8 /C3H6的吸附选择性低。  相似文献   

8.
The separation of propylene and propane is an important but challenging process, primarily achieved through energy-intensive distillation technology in the petrochemical industry. Here, we reported two natural C4 linkers based metal–organic frameworks (MIP-202 and MIP-203) for C3H6/C3H8 separation. Adsorption isotherms and selectivity calculations were performed to study the adsorption performance for C3H6/C3H8 separation. Results show that C3H6/C3H8 uptake ratios (298 K, 100 kPa) for MIP-202 and MIP-203 are 2.34 and 7.4, respectively. C3H6/C3H8 uptake ratio (303 K, 100 kPa) for MIP-203 is up to 50.0. The mechanism for enhanced separation performance of C3H6/C3H8 on MIP-203 at higher temperature (303 K) was revealed by the in situ PXRD characterization. The adsorption selectivities of C3H6/C3H8 on MIP-202 and MIP-203 (298 K, 100 kPa) are 8.8 and 551.4, respectively. The mechanism for the preferential adsorption of C3H6 over C3H8 in MIP-202 and MIP-203 was revealed by the Monte Carlo simulation. The cost of organic ligands for MIP-202 and MIP-203 was lower than that of organic ligands for those top-performance MOFs. Our work sets a new benchmark for C3H6 sorbents with high adsorption selectivities.  相似文献   

9.
Alkali halide added transition metal oxides produced ethylene selectively in oxidative coupling of methane. The role of alkali halides has been investigated for LiCl-added NiO (LiCl/NiO). In the absence of LiCl the reaction over NiO produced only carbon oxides (CO2 + CO). However, addition of LiCl drastically improved the yield of C2 compounds (C2H6 + C2H4). One of the roles of LiCl is to inhibit the catalytic activity of the host NiO for deep oxidation of CH4. The reaction catalyzed by the LiCl/NiO proceeds stepwise from CH4 to C2H4 through C2H6 (2CH4 → C2H6 → C2H4). The study on the oxidation of C2H6 over the LiCl/NiO showed that the oxidative dehydrogenation of C2H6 to C2H4 occurs very selectively, which is the main reason why partial oxidation of CH4 over LiCl/NiO gives C2H4 quite selectively. The other role of LiCl is to prevent the host oxide (NiO) from being reduced by CH4. The catalyst model under working conditions was suggested to be the NiO covered with molten LiCl. XPS studies suggested that the catalytically active species on the LiCl/NiO is a surface compound oxide which has higher valent nickel cations (Ni(2+δ)+ or Ni3+). The catalyst was deactivated at the temperatures>973 K due to vaporization of LiCl and consumption of chlorine during reaction. The kinetic and CH4---CD4 exchange studies suggested that the rate-determining step of the reaction is the abstraction of H from the vibrationally excited methane by the molecular oxygen adsorbed on the surface compound oxide.  相似文献   

10.
王丽  王兴杰  李浩  陈永伟  李忠 《化工学报》2018,69(2):733-740
以淀粉糖(主要成分为葡萄糖)为碳前体,制备了一系列多孔碳材料(C-GLCs-800),对其进行孔隙结构分析,并应用FT-IR、SEM、TGA对其进行了表征,测定了材料在288、298和308 K下的CO2和CH4吸附等温线,根据IAST理论预测了材料对CO2/CH4二元体系的吸附选择性。实验结果显示,活化条件对材料的孔隙结构有明显影响,随着KOH/C质量比的增加,所制备的C-GLCs-800比表面积和总孔容先增加后降低。其中C-GLC-800-4的BET比表面积高达3153 m2·g-1,总孔容为2.056 cm3·g-1。C-GLC-800-2的窄微孔(Vd<1 nm,孔容0.3538 cm3·g-1)含量最高,为30.63%。C-GLC-800-2在298 K和105 Pa下对CO2吸附量高达3.96 mmol·g-1,明显高于许多传统吸附材料和MOFs材料在相同条件下对CO2的吸附容量。应用Clausiuse-Clapeyron方程计算了CO2和CH4在材料上的吸附热,应用IAST理论计算了CO2/CH4的吸附选择性,结果显示C-GLC-800-2对CO2/CH4的吸附选择性为8.35。  相似文献   

11.
The thermal dilatation in (NH3 ·CH3) SnCl6, (NH3 · C2H5) SnCl6 and [N(CH3)] SnCl6 was measured, and as the results it has turned out that (NH3 6·C2H5) SnCl6 and [N(CH3)4]2 SnCl6 undergo the first order transitions at 128 K and 158 K, respectively. The low temperature phases of (NH · C2H5) SnCl6 and [N(CH3)4]2 SnC16 are found to be monoclinic and tetragonal, respectively, No phase transition was observed in (NH3 ·CH3)2 SnCl6 down to 77 K.  相似文献   

12.
吴丽威  张静  王长发  宋涛 《工业催化》2019,27(10):82-84
采用容量法分别测量CH4、CO和CO2在5A分子筛上的等温吸附曲线,探究吸附温度和吸附压力对CH4、CO和CO2吸附量的影响。实验结果表明,吸附量随着吸附压力的上升逐渐增大。设定吸附温度在30 ℃、50 ℃和70 ℃时,5A分子筛在30 ℃时对CH4吸附量最大,为13.60 cm3·g-1;对CO和CO2吸附量均在50 ℃时呈现最大值,分别为17.68 cm3·g-1 和94.38 cm3·g-1。而吸附温度70 ℃时,对3种气体的吸附量均减小。  相似文献   

13.
In view of lacking efficient ethane-selective adsorbent for ethane/ethylene separation, a highly stable microporous mixed metal-organic framework, termed as MUV-10(Mn), was synthesized by the solvothermal method and it could efficiently separate C2H6/C2H4 mixture. The structure and morphology of synthesized material was confirmed by XRD, SEM, TGA and BET, etc. Selectivity and corresponding adsorption heat of C2H6 and C2H4 were calculated based on single component adsorption results measured in details. The results show that MUV-10(Mn) features C2H6/C2H4 selectivity about 1.42 and can absorb more C2H6 than C2H4 at room temperature. And it has high acid, alkali and water vapor stability. Addtionally, dynamic breakthrough experiment showed MUV-10(Mn) could extracted low concentration of C2H6 from C2H6/C2H4 mixture (VC2H6?/?VC2H4=1∶9 and 1∶15) to collect C2H4 gas with high purity, which indicates the promising future of MUV-10(Mn) in C2H4 purification.  相似文献   

14.
针对乙烷/乙烯分离过程中,缺乏高效稳定的乙烷选择吸附剂,采用溶剂热法合成了一种具有高稳定性的双金属微孔MOF材料MUV-10(Mn),通过吸附分离的方式,实现了乙烯中低浓度乙烷的高效分离。采用XRD、SEM、TGA、比表面分析等表征手段对所制备材料的结构及形貌进行了确认和分析,详细测试了MUV-10(Mn)对乙烷和乙烯单组分气体的吸附性能,并进行了选择性和吸附热的计算。结果表明,MUV-10(Mn)在室温下的乙烷吸附量高于乙烯对于乙烷/乙烯混合气的选择性为1.42,且具有高的酸、碱和水蒸气稳定性。混合气体穿透实验表明,MUV-10(Mn)能够高效去除乙烯中的低浓度乙烷,得到高纯乙烯气体,在乙烯提纯方面显示出良好的应用前景。  相似文献   

15.
刘有毅  黄艳  何嘉杰  肖静  夏启斌  李忠 《化工学报》2015,66(11):4469-4475
主要研究了MOF-74(Ni)材料对CO/N2/CO2的吸附分离性能。应用水热法合成制备MOF-74(Ni),分别采用全自动表面积吸附仪、P-XRD、扫描电子显微镜对材料的孔隙结构和晶体形貌进行了表征,应用静态吸附法测定了CO、N2和CO2在MOF-74(Ni)上的吸附等温线,应用DSLF方程模拟了3种气体MOF-74(Ni)上的吸附等温线,依据IAST理论模型计算了MOF-74(Ni)对CO/N2二元混合物和CO/CO2二元混合物的吸附选择性。研究结果表明:在0.1 MPa和常温条件下,MOF-74(Ni)材料对CO吸附容量高达6.15 mmol·g-1,而相同条件下N2的吸附量只有0.86 mmol·g-1。MOF-74(Ni)在低压下(0~40 kPa)对CO的吸附量明显高于其对CO2的吸附量。应用IAST模型估算MOF-74(Ni)对二元混合物吸附选择性的结果表明:MOF-74(Ni)对CO/N2混合物的吸附选择性在1000以上;MOF-74(Ni)对CO/CO2的吸附选择性在4~9范围,在所研究的二元气体混合物吸附体系中,MOF-74(Ni)都能优先吸附CO。  相似文献   

16.
Adsorption process is considered to be the most promising alternative for the CO2 capture to the traditional energy-intensive amine absorption process, and the development of feasible and efficient CO2 adsorbents is still a challenge. In this work, the NiO@USY (ultrastable Y) composites with different NiO loadings were prepared for the CO2 adsorption using Ni(NO3)2 as the precursor. The composites were characterized by X-ray photoelectron spectroscopy, X-ray diffraction, nitrogen adsorption–desorption test, scanning electron microscopy analysis, and thermogravimetric analysis, and were evaluated for the CO2 adsorption capacity, CO2/N2 adsorption selectivity and CO2 cycle adsorption capacity. The characterization results show that after the activation at 423 K, the Ni(NO3)2 species were well dispersed into the surface of zeolite USY, and after the further activation at 823 K, Ni(NO3)2 could be converted into highly dispersed NiO. The adsorption results show that the presence of the active component NiO plays an important role in improving the CO2 adsorption performance, and the NiO@USY composite with a NiO loading of 1.5 mmol·g-1 USY support displays a high adsorption capacity and adsorption selectivity for CO2, and shows a good cycle stability. In addition, the Clausius–Clapeyron equation was used to evaluate the isosteric heat of adsorption of CO2 on the NiO(1.5)@USY composite, and the heat of adsorption was 17.39–38.34 kJ·mol-1.  相似文献   

17.
Samples of methane molecules grade diameter channel CHA-type molecular sieves(Chabazite-K, SAPO-34 and SSZ-13) were investigated using the adsorption separation of CH_4/N_2 mixtures. The isotherms recorded for CH_4 and N_2 follow a typical type-Ι behavior, which were fitted well with the Sips model(R~20.999) and the selectivity was calculated using IAST theory. The results reveal that Chabazite-K has the highest selectivity(SCH_4/N= 5.5).2 SSZ-13 has the largest capacity, which can adsorb up to a maximum of 30.957 cm~3·g~(-1)(STP) of CH_4, due to it having the largest pore volume and surface area, but the lowest selectivity(S_(CH_4/N_2)= 2.5). From the breakthrough test, we can conclude that SSZ-13 may be a suitable candidate for the recovery of CH_4 from low concentration methane(CH_420%) based on its larger pore volume and higher CH_4 capacity. Chabazite-K is more suited to the separation of high concentration methane(CH_450%) due to its higher selectivity.  相似文献   

18.
Herein, we develop cost-efficient superhigh-performance of engineering carbonaceous adsorbent from cigarette butts using combined wet-impregnated and re-dispersed method of KOH, which optimizes the implant approach of activator, breaking the restriction of selective capture of toluene using traditional activated carbon. The Brunauer-Emmett-Teller (BET) surface area and pore volume of targeted adsorbent can attain 3088 m2·g-1 and 1.61 cm3·g-1, respectively, by optimizing the temperature-dependent synthetic factor effect of the adsorbent. The adsorption capacity of resultant adsorbent for presenting volatile benzene and toluene shows a positive correlation with increasing carbonization temperature of carbon precursor. Besides, we demonstrated the unsmoked and smoked butts derived adsorbents afford feeble difference in saturated adsorbed capacity of volatile organic compounds (VOCs). The highest adsorption capacity of sample CF-800 for benzene and toluene in CF group is as high as 1268.1 and 1181.6 mg·g-1 respectively, slightly higher than that of sample UF-800, but far outperforming reported other adsorbents. The predicted adsorption selectivity of CF-800 and UF-800 for C7H8/H2O (g) using the DIH (difference of isosteric heats) equation reach up to ca. 3800 and 7500 respectively, indicating the weak adsorbability of water vapor on the developed adsorbent and greater superiority of the smoked butts derived adsorbents in selective capture of VOCs at low relative humidity in the competitive adsorption process for practical mixed VOCs.  相似文献   

19.
CO2的捕获和分离具有重要的工业和环境意义。采用溶剂热法,以羧基和路易斯碱位点功能修饰的配体和锌离子构筑了阴离子型金属有机框架材料{[Zn2(N)·(DMF)3·(CH3)2NH2]·(DMF)2}n (NEM-7-Zn)。为了提高骨架的稳定性,通过金属离子置换工艺,将NEM-7-Zn转化为高稳定性的铜基框架材料NEM-7-Cu。采用EA、PXRD、TGA及比表面积分析等技术对多孔材料进行综合表征,并测定了NEM-7-Cu对二氧化碳、乙炔和甲烷单组分气体的吸附等温线。实验结果表明,NEM-7-Cu不仅具有较高的CO2 吸附性能(74 cm3·g-1),更表现出优异的CO2/CH4(11.5)和C2H2/CH4(7.1)吸附选择性。通过巨正则Monte Carlo方法(GCMC)计算得到CO2在NEM-7-Cu中的主要吸附位点为功能基团羧基与路易斯碱位点附近以及Cu的金属团簇附近。  相似文献   

20.
以淀粉为原料,使用水热法将其碳化后用活化剂KOH对其活化,制备了淀粉基多孔碳材料,并对其进行结构表征和CO2/CH4的吸附性能测试,计算吸附热以及材料对CO2/CH4的吸附选择性,讨论了碳材料结构对其吸附性能的影响。结果表明:在制备过程中,随着活化剂KOH用量比例的增大,所制得的材料其比表面积和孔容增大,其孔径分布也就越宽。所制得的碳材料其比表面积可达2972 m2·g-1。这些淀粉基多孔碳材料对水蒸气的吸附等温线呈现出Ⅳ类等温线。所制备材料对CO2吸附容量主要取决于其孔径小于0.8 nm的累积孔容(Vd < 0.8 nm)。材料的超微孔的孔容越大,其对CO2吸附容量也越大。所制备的C-KOH-1材料在101325 Pa和298 K条件下,对CO2的吸附量达到4.2 mmol·g-1,其对CO2的吸附热明显高于其对CH4吸附热,其对CO2/CH4吸附选择性为3.7~4.26,同时本文通过对材料的水蒸气吸附等温线进行测试,结果表明所得材料主要表现为中等憎水性,这对材料在实际工况的应用奠定了基础。  相似文献   

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