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1.
丁靖  熊焰  虞大红 《化工进展》2012,31(4):732-741
CO2在离子液体中的溶解度是离子液体捕集CO2过程的关键数据,而溶解度的准确数据来源有两个:实验测定和模型化方法。本文介绍了测压法、称重法、测压称重联用法、CO2流量法、静态法和色谱法等6类实验测定方法,同时根据各种模型中离子液体“分子模型”的不同分类概述了近年来CO2在离子液体中溶解度模型化方法的研究进展,评述了各种模型应用于离子液体体系的研究前景。  相似文献   

2.
胆碱类低共融溶剂是一种新型的离子液体。它不仅具有传统离子液体的优点,还具有价格低廉、低毒、生物可降解等优势。对胆碱类低共融溶剂在CO2捕集与分离中所涉及的物理性质,如气体的溶解度、CO2的吸收-解吸、密度、稳定性、黏度和表面张力等进行考察,并分析了胆碱类低共融溶剂的结构对各物性的影响。通过与传统离子液体的对比,胆碱类低共融溶剂在CO2捕集与分离中的应用具有一定的优势,如CO2溶解度高,黏度低。然而,胆碱类低共融溶剂在气体的选择性分离、表面张力等的研究还不足,且热稳定性方面还存在瓶颈,因此,其在CO2捕集和分离中的应用还有待进一步探讨。  相似文献   

3.
本文综述了近年来各类离子液体对CO2的捕捉技术,主要包括传统离子液体、功能化离子液体、新型聚离子液体。同时比较CO2在不同种类的离子液体中溶解含量的差异,重点提出了新型聚离子液体对CO2的吸收,具有捕捉速率快和吸收容量高等特征。最后探讨了低黏度、低成本、低毒性离子液体是未来研究者们所研究方向。  相似文献   

4.
离子液体作为CO_2吸附剂的研究进展   总被引:1,自引:0,他引:1  
离子液体(ILs)是完全由特定阳、阴离子构成的在室温或近于室温下呈液态的物质,是一类新型"软"功能材料或介质,CO2能与ILs发生强相互作用,在其中具有很高的溶解度。本文综述了CO2在传统离子液体、功能化离子液体、聚合离子液体及其他形式离子液体中的溶解度,讨论了CO2在离子液体中溶解度的影响因素以及计算机模拟在离子液体溶解CO2研究中的应用,指出了离子液体作为吸收剂的优缺点,展望了其代替传统CO2吸收剂的研究前景。  相似文献   

5.
CO2作为温室效应的主力气体,同时作为资源,CO2的补集吸收也成为现今关注的热点。离子液体作为一种新型绿色吸收剂,以其性质稳定、无挥发、溶解力强、可设计性等优点,受到研究者的重视与研究。大致将离子液体分为常规型离子液体、功能型离子液体、离子液体混合物和离子液体聚合物4类。最终讨论了离子液体吸收CO2的研究进展。  相似文献   

6.
伍艳辉  于世昆  段永超  李佟茗 《化工学报》2011,62(10):2684-2690
室温离子液体是一种“绿色溶剂”,具有独特的气体溶解选择性.基于正规溶液理论,根据文献发表的常规咪唑盐离子液体对不同气体的溶解度数据,结合基团贡献法预测了常压下CO2、CH4、N2、CO在含氰基、醚键等极性基团的咪唑盐离子液体中的亨利系数,进而得到不同气体在该类离子液体中的溶解选择性.结果表明,极性基团的引入有助于提高咪...  相似文献   

7.
介绍了氨基离子液体在固定CO2、有机合成、煤化工等方面的应用,阐述了CO2在氨基功能化离子液体中的溶解机理。指出应用过程中存在的问题。  相似文献   

8.
离子液体是一种饱和蒸汽压低、结构可设计、稳定性强、液态温度范围宽的绿色溶剂,同时对CO2又有较高的溶解度,因此成为当前CO2分离领域的研究热点材料。将离子液体和二维纳米材料结合得到的分离膜材料兼具离子液体和二维纳米材料的优势,在气体分离方面展现了良好的应用前景。其中,离子液体和氧化石墨烯的结合备受关注。针对这一热点问题,本工作综述了国内外通过氧化石墨烯、离子液体及离子液体?氧化石墨烯膜材料在CO2分离方面的研究和进展。相关研究表明,离子液体?氧化石墨烯膜材料具有较好的CO2选择性能、渗透性能和稳定性能,是一种非常有潜力的CO2分离材料。最后,提出了利用离子液体、氧化石墨烯及离子液体?氧化石墨烯膜材料进行CO2捕集分离的未来研究挑战和展望。  相似文献   

9.
离子液体对二氧化碳有良好的溶解性能,可以实现二氧化碳的固定与转化。超临界二氧化碳可以从离子液体/有机物体系中选择性萃取有机物,避免相间的交叉污染,实现离子液体的回收。从CO2在离子液体中的溶解度实验测定方法、CO2/离子液体二元体系高压相平衡测定、SC-CO2/离子液体/有机物的三元体系相平衡研究以及模型预测四个方面介绍了CO2/离子液体体系相平衡研究的最近进展,分析了这一研究领域的发展方向。  相似文献   

10.
竺琴  张焜  苏流坤 《广州化工》2010,38(11):6-9
综述了气体在离子液体中的溶解性能、影响因素及其传质机理;介绍了CO2、SO2等气体在离子液体中的吸附研究进展;总结了离子液体中气体分离、分析及有气体参与的化学反应等领域的研究现状,并展望了离子液体在气体吸附方面的应用前景。  相似文献   

11.
纤维素在离子液体中的溶解特性研究   总被引:2,自引:0,他引:2  
测定了纤维素在不同结构的离子液体——1-烯丙基-3-甲基咪唑氯化物([AMIM]Cl)和1-丁基-3-甲基咪唑氯化物([BMIM]Cl)中的溶解度和溶解速率。结果发现:相同条件下,纤维素在[AMIM]Cl中具有较大的溶解度和较快的溶解速率;随着纤维素聚合度的增大,相同条件下,纤维素在离子液体中的溶解度降低。进一步通过WXRD、FT-IR、13C NMR和黏度法分析了溶解前后纤维素的化学结构、结晶结构和聚合度,结果表明:纤维素在离子液体中的溶解属于直接溶解,纤维素经离子液体溶解和再生后,晶型由纤维素I转变为纤维素II;溶解时间和温度对再生纤维素的聚合度有较大的影响,随着溶解时间的延长和溶解温度的提高,再生纤维素聚合度降低。  相似文献   

12.
研究了多种离子液体对小分子烃类的溶解性能,发现含有Cu(Ⅰ)的离子液体对烃类具有较高的溶解度和烯烃/烷烃溶解选择性,优选出了Et3NHCl-2.1CuCl离子液体。考察了温度和压力对小分子烃类溶解性能的影响规律,发现低温和高压有利烃类的溶解,烯烃/烷烃溶解选择性随温度和压力的升高而减小;在30℃和0.2 MPa的条件下,烯烃/烷烃溶解选择性均在8.3以上。烃类在离子液体中的初始溶解速率较大,但随时间的延长快速降低,相同条件下烯烃的溶解速率高于烷烃的溶解速率。烯烃/烷烃分离选择性随混合气中烯烃含量的减小而增大。升温可以解吸出离子液体中的烃类,烷烃比烯烃容易解吸,优化条件下的解吸率可达92%以上。离子液体对小分子烷烃和烯烃的吸收分离具有良好的重复使用性能。利用Gaussian 09软件对离子液体的阴离子与烯烃、烷烃的作用进行了计算分析,解释了烯烃和烷烃在不同离子液体中溶解性能差异的原因。  相似文献   

13.
The solubility of light hydrocarbons in a variety of ionic liquids was studied, and it was found that ionic liquids containing Cu(Ⅰ) had higher solubility for hydrocarbons and alkene/alkane solubility selectivity, and Et3NHCl-2.1CuCl ionic liquid was preferred. The effects of temperature and pressure on the solubility of light hydrocarbons were investigated for the selected ionic liquid. It was found that low temperature and high pressure were favorable for the dissolution of light hydrocarbons, and the alkene/alkane solubility selectivity decreased with the increase of temperature and pressure. The alkene/alkane solubility selectivity was above 8.3 at the temperature of 30℃ and the pressure of 0.2 MPa. The initial dissolution rate of hydrocarbons in ionic liquid was large, but it decreased rapidly with prolonging time, and the dissolution rate of alkenes was higher than that of alkanes at the same conditions. The alkene/alkane separation selectivity increased with decreasing content of alkenes in the mixture of alkenes and alkanes. Light hydrocarbons dissolved in ionic liquids could be desorbed by means of increasing temperature, restoring the dissolution capability of ionic liquids to hydrocarbons. Alkanes were easier to be desorbed than alkenes, and small-molecule hydrocarbons were easier to be desorbed than large-molecule hydrocarbons. The desorption percentage exceeded 92% under optimal conditions. Ionic liquid had a good reusable performance in the absorption and separation of light alkanes and alkenes. The solubility only decreased by less than 5% when it was reused five times, and the alkane/alkane solubility selectivity was basically not affected by reusing times. Software Gaussian 09 was used to study the interaction between anions of ionic liquids and light alkanes and alkanes, and the solubility difference of light alkenes and alkanes in different ionic liquids was well explained.  相似文献   

14.
High pressure solubility of carbon dioxide in three phosphonium-based ionic liquids has been measured experimentally. A synthetic method was used to measure vapor–liquid, vapor–liquid–liquid and liquid–liquid equilibria of carbon dioxide in the ionic liquids trihexyltetradecylphosphonium bromide [thtdp][Br], trihexyltetradecylphosphonium dicyanamide [thtdp][dca] and trihexyltetradecylphosphonium bis(2,4,4-trime-thylpentyl)phosphinate [thtdp][phos] for a temperature range of 271–363 K and up to 90 MPa. Furthermore, the densities and viscosities of these ILs have been measured in a temperature range of 293–363 K. The solubility of carbon dioxide in these ILs is (on mole fraction basis) significantly larger than most of the commonly used fluorinated imidazolium ionic liquids. The latter statement, however, does not hold for the [Br] and [dca] based IL if the solubility is compared on molality (mole/mass solvent) basis, where the solubility differences among physical ILs tends to vanish indicating a strong molecular weight effect. The solubility of carbon dioxide in [thtdp][phos], both on mole fraction and molality basis, is among the highest compared to all the other physical ILs reported so far in the literature. The Peng–Robinson equation of state in combination with Wong–Sandler mixing rules incorporating the NRTL Gibbs excess energy model was applied to represent the experimental data with acceptable accuracy.  相似文献   

15.
The effect on the melting temperature depression (MTD) of organic substances and ionic liquids caused by different types of pressurizing gases is analyzed. A high pressure gas produces a combined effect between solubility and pressure that causes the melting temperature to decrease. The authors have previously used phase equilibrium relations to correlate MTD of organic substances and ionic liquids under high pressure carbon dioxide, but other gases were not considered. The Peng–Robinson equation of state with the Wong–Sandler mixing rules showed to be appropriate for correlating the phase equilibrium in these high pressurized systems and is the model used is in this work. Three organic substances (naphthalene, biphenyl and octacosane) under high pressure produced by three gases (ethane, ethylene and carbon dioxide) for which experimental data on MTD are available were considered in this study. Then extension to an ionic liquid under high pressure carbon dioxide and high pressure ethylene was done. The proposed thermodynamic method and the model used show to have the necessary flexibility to acceptably correlate the MTD produced in these systems.  相似文献   

16.
离子液体介质中纤维素资源转化研究进展   总被引:6,自引:11,他引:6       下载免费PDF全文
李昌志  王爱琴  张涛 《化工学报》2013,64(1):182-197
木质纤维素是地球上最丰富的可再生有机碳资源,将其高效转化为化学品或燃料,对缓解全球能源危机和解决环境污染问题具有重要意义。离子液体因对木质纤维素具有独特的溶解性能,近年来作为新型溶剂在生物质转化中获得广泛应用。综述了离子液体用于木质纤维素预处理及化学转化的最新研究进展,包括纤维素溶解、木质纤维素组分分离、纤维素水解制葡萄糖、六碳糖及纤维素催化转化制5-羟甲基糠醛以及碳水化合物的其他转化途径等,同时对基于离子液体平台的生物质转化技术存在的挑战、未来发展趋势及工业化前景进行了展望。  相似文献   

17.
The dissolution of petroleum asphaltenes with ionic liquids is studied for the first time. The results show that the ionic liquids could be used as novel solvents for asphaltenes. The important parameters governing the ability of ionic liquids for dissolution of asphaltenes are discussed. It is found that, the ionic liquids based on the cations containing a conjugated aromatic core or the anions which are strong hydrogen bond acceptors are most effective, whereas the ionic liquids containing 'non coordinating' anions such as [BF4]^- and [PF6]^- are nonsolvents for asphaltenes. Increase in the effective anion charge density enhances the ability of ionic liquids to break the extensive asphaltene associations and thus enhances the solubility of asphaltenes in the ionic liquid. The dissolution ability of ionic liquid decreases apparently with increasing the substituted alkyl chain length of its cationic head ring. Temperature is found to play an important role on dissolution of asphaltenes, and the dissolution can be significantly imoroved bv microwave heatinz.  相似文献   

18.
两种咪唑类离子液体对杉木粉的溶解性能   总被引:3,自引:1,他引:3  
郭立颖  史铁钧  李忠  段衍朋 《化工学报》2008,59(5):1299-1304
合成了氯化1-(2-羟乙基)-3-甲基咪唑([HeMIM]Cl)和氯化1-烯丙基-3-甲基咪唑([AMIM]Cl)两种离子液体,并用红外和核磁谱图对其结构进行表征。以不同浓度的NaOH对杉木粉进行活化预处理,比较了这两种离子液体对活化后的杉木粉的溶解能力,并用红外光谱和X射线衍射分析了溶解前和溶解后杉木粉的化学结构与结晶结构的变化。结果表明,两种离子液体对木材中的纤维素表现出一定的溶解能力,且[HeMIM]Cl对杉木粉的溶解能力优于[AMIM]Cl,当选用浓度为25%的NaOH对杉木粉进行活化时,溶解性能最佳,且溶解后再生纤维素的结晶度变低。  相似文献   

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