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1.
将过氯乙烯(CPVC)作为渗透汽化膜材料,用于分离乙醇/水溶液,研究了膜对水和乙醇的吸附溶解性能,对乙醇/水溶液的分离性能,分离温度对膜分离性能的影响。发现过氯乙烯膜优先透水,对乙醇/水溶液选择性高而透量较小。膜的稳定性较好。  相似文献   

2.
壳聚糖膜结构与乙醇/水混合液的渗透汽化性能   总被引:6,自引:4,他引:6  
用渗透汽化膜分离混合液体,纤维素、赛璐玢等作醇/水分离膜有较高的渗透通量,但分离系数低.甲壳素是广泛存在于自然界的一类天然高分子.前文报道了用甲壳素脱乙酰基的产物壳聚糖(CS)作醇/水渗透汽化(PV)分离膜,在一定的原料液浓度下具有较好的选择渗透性.本文讨论CS膜结构对乙醇/水混合液PV性能的影响,并探讨了提高选择性的途径.  相似文献   

3.
张浩  伍艳辉 《化学进展》2023,(8):1154-1167
渗透汽化是一种具有能耗低、操作简便等优点的膜分离技术,目前传统聚合物渗透汽化膜在分离性能和稳定性等方面还有欠缺。金属有机框架(MOF)是由金属离子与有机配体以自组装形式组建而成的晶态多孔材料,具有独特的性质,如对目标分子的选择性吸附和分子筛分效应,近年来许多研究表明将MOF作为填料引入聚合物基质中构筑混合基质膜(MMMs)对其渗透汽化性能有很好的促进作用。本文从MOF的不同系列出发,讨论了适用于渗透汽化混合基质膜的MOF种类,分析了MOF-聚合物混合基质膜的制备方法与改性策略,综述了该类混合基质膜在渗透汽化方面(有机溶剂脱水、从稀溶液中回收有机物、有机混合物的分离)的应用进展,总结了用于渗透汽化的MOF-聚合物混合基质膜研究面临的挑战,并对其未来发展提出展望。  相似文献   

4.
明胶膜醇/水分离特性   总被引:1,自引:0,他引:1  
明胶(Gelatin)曾用于与其它高聚物共混制备分离膜材料,但迄今未见单独成膜用于膜分离的报道.本文首次报道高纯牛骨胶经Cr_2(SO_4)_3交联后制膜的方法,并成功地用于醇/水渗透蒸发分离.采用渗透蒸发分离醇/水混合物,既节能又简便.  相似文献   

5.
制备了聚乙烯醇(PVA)/聚丙烯睛(PAN)渗透汽化复合膜,研究了交联剂用量、底膜结构、进料液组成、操作温度等因素对膜的渗透汽化性能的影响.发现PVA/PAN复合膜对水/醇混合液表现为水优先透过,进料液中乙醇浓度在60~99wt%的范围内,渗透通量Jt与温度之间符合Arrhenius关系,选择分离系数αW/E也随温度上升而增大.进料液为95wt%的乙醇/水混合液时,75℃下Jt高达300~450g/m2h,αW/E为800~1100.对异丙醇/水、异丁醇/水及甘油/水混合体系,复合膜显示出更为优秀的透过、分离性能.就膜的化学、物理结构与其渗透汽化性能间的关系进行了讨论.  相似文献   

6.
采用化学气相沉积(CVD)法对MFI分子筛膜进行Sn掺杂, 制备了一种Sn-MFI分子筛膜, 并研究了其渗透汽化分离乙醇/水体系的性能. XRD, 29Si NMR, UV-Vis及分离实验结果表明, 采用CVD法在将Sn引入MFI膜时, 膜层结构基本得到保持, Sn可以进入分子筛骨架, 有效地减少了膜表面的硅羟基缺陷, 提高了膜分离乙醇/水体系时的稳定性. 在SnCl4用量为3 mL、 修饰时间为1 h时, 所得到的Sn-MFI分子筛膜的渗透汽化分离性能最佳, 并可在60 ℃下分离5%(质量分数)乙醇/水混合物时保持良好的稳定性. 在经过连续50 h渗透气化分离后, 其渗透通量仅从1.52 kg·m-2·h-1下降至1.38 kg·m-2·h-1, 分离因子从18下降至16.  相似文献   

7.
有机液体优先透过渗透汽化膜及其过程   总被引:10,自引:0,他引:10  
王信玮  陈观文 《高分子通报》1995,(3):163-169,185
本文回顾了近0年来有机液体优先透过渗透汽化膜的研究与发展状况。包括各种欲分离体系及膜材料的选择、膜的渗透汽化特征表征、影响膜分离性能的各种因素,以及近年来有机液体优先透过PV膜的一些研究成果。  相似文献   

8.
有机物优先透过的渗透汽化过程(Organophilic Pervaporation,O-PV)是一种膜分离技术,可以有效脱除化学、制药、电子、石化、印刷、涂料、纺织等工业废水中含有的微量挥发性有机物(Volatile organic compounds,VOCs),如苯、甲苯、三氯乙烯、氯仿和苯酚等.膜(一般指高分子膜)是O-PV过程的核心,而用于O-PV的膜分离性能主要取决于膜材料所具有的内在分离性能.聚二甲基硅氧烷(Poly(dimethyl siloxane), PDMS )是目前为止应用最为广泛的O-PV膜材料.本文综述了有机物优先透过的PDMS渗透汽化膜的改性研究进展,并展望了其未来的发展方向和前景.  相似文献   

9.
渗透汽化芳烃/烷烃分离膜材料   总被引:1,自引:0,他引:1  
芳烃/烷烃混合物的分离在石油化工及环保领域都具有重大意义.与传统的萃取精馏等技术相比,渗透汽化膜技术以其清洁、节能和高效的优点,应用于芳烃/烷烃混合物的分离并受到重视.本文综述了渗透汽化芳烃/烷烃分离膜的研究进展,概述了渗透汽化技术的基本原理和应用,重点介绍了用于渗透汽化芳烃/烷烃分离的聚酰亚胺、聚氨酯等高分子膜材料的结构特点和分离性能.总结了膜材料的接枝、共聚和共混,添加传质促进剂的改性方法.分析了渗透汽化芳烃,烷烃分离膜材料的研究思路,在此基础上对渗透汽化芳烃/烷烃分离膜材料的研究方向和发展前景进行了展望.  相似文献   

10.
丙烯酸交联壳聚糖渗透汽化膜研究(Ⅱ)──乙醇/水混合液的渗透汽化分离性能钟伟,李文俊,葛昌杰,陈新(复旦大学高分子科学系,上海,200433)关键词交联壳聚糖,渗透汽化,丙烯酸,乙醇/水混合液混合液体的渗透汽化(简称PV)膜分离自80年代实现工业化以...  相似文献   

11.
Thin-film zeolite-filled silicone/PVDF composite membranes were fabricated by incorporating zeolite particles into PDMS(poly(dimethylsiloxane)) membranes.The morphology of zeolite particles and zeolite filled silicone composite membranes were characterized by SEM.The zeolite-filled PDMS/PVDF composite membranes were applied for the pervaporation of ethanol/water mixtures and showed higher flux compared with that reported in literatures.The effect of zeolite loading and Si/Al ratio of zeolite particles on...  相似文献   

12.
Sodium alginate (SA) is a progressive material for membrane fabrication. The technological development of SA-based membranes has made a significant contribution to the separation techniques, especially in aqueous organic solutions. The outstanding performance of SA is attributed to its outstanding structural flexibility and hydrophilicity. In view of structural characteristics, SA membranes have immense utilization in the pervaporation separation of organics. Among various organics, dehydration of aqueous ethanol is employed as a standard to check the success of pervaporation (PV) membrane. Because ethanol and water have comparable molecular sizes, thus difficult to extract water from aqueous ethanol mixtures than it is for other organics. A literature survey shows that wide-ranging data are available on the PV performance of SA and its modified membranes. In this context, the present review addresses the recent advances made in SA membranes for enhanced ethanol dehydration performance during the last decade. Available data since 2010 has been compiled for grafted, crosslinked, blend, mixed matrix, and composite hybrid sodium alginate membranes in terms of separation factor, permeation flux, and pervaporation separation index PSI. The data are assessed with reference to the effect of feed composition, membrane selectivity, flux, and swelling behavior.  相似文献   

13.
Three different types of blend membranes based on chitosan and polyacrylic acid were prepared from homogeneous polymer solution and their performance on the pervaporation separation of water-ethanol mixtures was investigated. It was found that all membranes are highly water-selective. The temperature dependence of membrane permselectivity for the feed solutions of higher water content (>30 wt%) was unusual in that both permeability and separation factor increased with increase in temperature. This phenomenon might be explained from the aspect of activation energy and suggested that the sorption contribution to activation energy of permeation should not always be ignored when strong interaction occurs in the pervaporation membrane system.A comparison of pervaporation performance between composite and homogeneous membranes was also studied. Typical pervaporation results at 30°C for a 95 wt% ethanol aqueous solution were: for the homogeneous membrane, permeation flux = 33 g/m2 h, separation factor = 2216; and for the composite membrane, permeation flux = 132 g/m2 h, separation factor = 1008. A transport model consisting of dense layer and porous substrate in series was developed to describe the effect of porous substrate on pervaporation performance.  相似文献   

14.
渗透汽化分离芳烃/烷烃混合体系的研究进展*   总被引:5,自引:0,他引:5  
杨立明  徐利文  郭勇 《化学进展》2001,13(4):303-309
本文对近年来应用于分离芳香烃/ 烷烃混合体系的渗透汽化(简称PV ) 膜材料, 特别是高分子材料进行了较为系统的综述, 并简要概述了渗透汽化膜分离特点、机制以及影响渗透汽化分离过程的主要因素。  相似文献   

15.
Alginate membranes for the pervaporation dehydration of ethanol–water and isopropanol–water mixtures were prepared and tested. The sodium alginate membrane was water soluble and mechanically weak but it showed promising performance for the pervaporation dehydration. To control the water solubility the sodium alginate membrane was crosslinked ionically using various divalent and trivalent ions. Among them the alginate membrane crosslinked with Ca2+ ion showed the highest pervaporation performance in terms of the flux and separation factors.  相似文献   

16.
聚乙烯醇辐照交联共聚物渗透气化分离膜   总被引:11,自引:1,他引:11  
研究了聚乙烯醇(PVA)与丙烯酰胺丙烯酸钠共聚物(PcoAANa)的辐照交联共聚物膜用于水-乙醇混合物的渗透气化分离,随着PcoAANa在共聚物中的含量由0%上升到35%,透量及分离系数同时增大,膜材料对混合物中水及乙醇的选择性溶解,对渗透气化过程起重大影响。求出了水、乙醇及其混合物的表现透过活化能.水,乙醇和混合物的平均扩散系数在水含量为40%时出现极大值。  相似文献   

17.
The separation performance of plasticizer/polysulfone (TGN/PSF) pervaporation membrane was studied. The optimum amount of plasticizer (TGN) in PSF membranes improved the diffusion selectivity of water to ethanol, which was due to the increase in the permeate diffusion rate difference between water to ethanol molecules. On the other hand, the solubility selectivity of water to ethanol in PSF membrane showed a minor change with increasing the plasticizer content in TGN/PSF membrane. The feed ethanol concentration showed a significant influence on the degree of swelling as well as the separation performance of TGN/PSF membrane. It was found that the dominant factor of permeate transport through membranes was the diffusion rate difference, especially at high ethanol concentrations in feed. This study indicated that a good separation performance could be achieved at high ethanol concentrations in feed. This investigation also proves that the flexible polymer chain mobility, which was due to both the addition of TGN in the membrane and the swelling effect of the membrane at the high ethanol concentration in feed solution, strongly influences the separation properties of TGN/PSF membrane.  相似文献   

18.
Hybrid separation processes are becoming more and more important in the practice if membrane technologies are also involved. In this work, a systematic investigation is completed for three sequence alternatives of distillation and pervaporation. These are the following: pervaporation followed with distillation (PV+D), distillation followed with pervaporation (D+PV), two distillation columns and a pervaporation unit between them (D+PV+D). The hybrid separation process alternatives are evaluated with rigorous modelling tools, but first, a rigorous simulation algorithm is determined for the pervaporation. The three hybrid separation processes are rigorously modelled with CHEMCAD, and optimized with the dynamic programming optimization method for the case of the separation of ethanol-water mixture. The objective function is the total annual cost (TAC). The energy consumption is also investigated. The selection of the ethanol-water mixture has two motivations: (i) it is quite often studied and well known, and (ii) to make biofuel (ethanol) production more economical, membrane technologies might also be applied. The results are compared with each other and with the classical separation completed with heteroazeotropic distillation. The optimized TAC shows that the distillation column followed with pervaporation is the most economical hybrid separation process alternative. Its TAC is about 66% of that of the classical separation.   相似文献   

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