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1.
PSF-SPES共混中空纤维超滤膜制备的研究   总被引:5,自引:0,他引:5  
以聚砜(PSF)、磺化聚醚砜(SPES)和醋酸纤维素(CA)为膜材料,水为内凝胶剂,采用干湿法制备了PSF-SPES共混中空纤维超滤膜,探讨了PSF-SPES铸膜液中SPES离子交换容量(IEC)、SPES浓度、添加剂、外凝胶剂的选择和热处理对膜性能的影响。所得共混超滤膜性能如下:w=0.0 0 1的Na2SO4截留率19.9%,通量62 L/(h.m2.MPa);w=0.001的PEG4000截留率78.2%,通量85 L/(h.m2.MPa)。此外,以PSF-SPES中空纤维为支撑膜,采用醋酸纤维素作为涂层液,研究了CA/PSF-SPES复合超滤膜性能,讨论了CA/PSF-SPES共混中空纤维超滤膜结构。  相似文献   

2.
抗油污染α-纤维素中空纤维超滤膜油-水分离性能的研究   总被引:7,自引:0,他引:7  
以α-纤维素为原料,一水合N-甲基吗琳-N-氧化物(NMMO.H2O)为溶剂,聚乙二醇(PEG400)为添加剂,去离子水为内外凝胶浴,采用浸入相转化法制备用于油水分离的中空纤维非对称超滤膜,并采用纯水通量表征了膜的性能.用纤维素中空纤维超滤膜进行油水分离实验,油水乳液的截留率可达到99%以上,渗透液含油量小于10 mg/L,达到国家环境保护排放要求.考察了物理清洗、物理清洗加0.1 mol/L HCL清洗、物理清洗加0.1 mol/L NaOH清洗3种清洗方法对油水污染后膜的清洗效果.其中,物理清洗加0.1 mol/LNaOH清洗的清洗方法的通量恢复率达到99%.与其它种类的膜相比,α-纤维素中空纤维膜的油水通量衰减率仅为9.5%,表现出优异的抗油污染性能.  相似文献   

3.
介绍了铸膜液温度、成膜过程中的蒸发时间、环境湿度、凝胶浴温度对聚砜/磺化聚砜合金膜的渗透、分离性能的影响.随环境相对湿度、凝胶浴温度增大,合金膜的水通量增大,截留率下降;蒸发时间延长,合金膜的水通量通过一个极大值,截留率呈现下降趋势.  相似文献   

4.
正交设计优化木贼多糖的超声提取工艺(英文)   总被引:1,自引:0,他引:1  
以蒸馏水为溶剂提取,通过单因素实验和正交实验,研究料液比、超声功率、超声提取温度和超声作用时间对木贼多糖提取效果的影响。超声提取法的优化工艺条件为:料液比(g/mL)1∶20,提取温度70℃,超声功率100 W,作用时间50 min。在此条件下,木贼多糖的平均提取率为12.33%,RSD为0.16%。超声波强化提取木贼多糖省时高效。  相似文献   

5.
中空纤维膜因其体积装填密度高、占地面积小、成本相对低等优点备受关注。本文通过将Armos聚合液与聚砜(PSf)共混,经干-湿法纺丝制备了Armos/PSf共混中空纤维超滤膜,研究表明:Armos均匀分散在中空纤维膜中,中空纤维膜断面呈现疏松的多孔结构,随着Armos共混含量的增加,膜的亲水性和纯水通量均提高,但对PEG-20000截留率下降明显。以Armos/PSf共混中空纤维膜为基膜,通过界面聚合制备了中空纤维复合纳滤膜,优化的制备条件为:基膜中Armos的共混含量为4%、水相单体浓度为3%、油相单体浓度为0.15%时,制得的中空纤维复合纳滤膜性能最佳,其通量为8.40L/(m2·h),对MgSO4的截留率为88%。  相似文献   

6.
利用二维编织技术将聚丙烯腈(PAN)纤维编织成中空编织管,以聚丙烯腈为成膜聚合物,以聚乙二醇为成孔剂,配制铸膜液,采用同心圆纺丝法制备同质编织管增强型聚丙烯腈中空纤维膜.研究结果表明,所得同质编织管增强型聚丙烯腈中空纤维膜的表面分离层具有类似于非对称膜的结构,铸膜液可渗入编织管纤维束中;随着编织管编织节距的增大,同质编织管增强型聚丙烯腈中空纤维膜表面分离层厚度减小,同时膜的平均孔径增大,膜的纯水通量随之增大;铸膜液渗入编织管纤维束的现象未影响膜的通透性能;编织管的断裂强度最大可达100 MPa以上.通过水浴振荡、超声波水浴振荡及等力拉伸3种方法测试了同质编织管增强型中空纤维膜和异质编织管增强型中空纤维膜中编织管与表面分离层之间的界面结合性能,结果表明前者的界面结合性能优于后者.  相似文献   

7.
采用正交试验结合响应面法优化诃子多糖的提取工艺,以诃子多糖的提取率为指标,以固液比、提取温度、提取时间和提取次数为因素,正交试验初步筛选工艺参数,响应面法做进一步优化.结果表明,多糖提取的最佳工艺条件为固液比1∶28,提取温度69℃,提取时间1h,提取次数3次,各项指标相对误差均小于2%,应用响应面法可减少诃子多糖提取时间.  相似文献   

8.
为了获得微波提取地黄多糖的最佳条件,采用正交试验法和响应面法分别优化微波提取地黄多糖工艺,以地黄多糖得率为指标,采用微波提取地黄多糖,苯酚-硫酸法测定地黄多糖的含量,以微波提取时间、提取温度和料液比进行三因素分析,根据单因素试验结果设计正交试验和响应面试验,进一步优化微波提取地黄多糖工艺。微波提取地黄多糖工艺通过正交试验法优化的结果表明,最佳条件为微波提取时间150 s,提取温度80℃,料液比1 g∶10 mL,该条件下的地黄多糖得率为72.10%。响应面法优化微波提取地黄多糖工艺的结果表明,修正后的最佳工艺条件为微波提取时间137 s,提取温度89℃,料液比1 g∶8 mL,该条件下的地黄多糖得率为74.41%。经过两种优化方法的比较,响应面法适合优化微波提取地黄多糖工艺,能够有效提高地黄多糖得率。  相似文献   

9.
支载液膜双有机相萃取分离氧氟沙星外消旋体   总被引:9,自引:0,他引:9       下载免费PDF全文
基于化学热力学原理, 采用逆流分级萃取和中空纤维支载液膜技术研究了氧氟沙星外消旋体在手性环境中的萃取分离. 膜内外两相辛醇溶液中分别含有L-二苯甲酰酒石酸和D-二苯甲酰酒石酸手性选择体, 其中膜内相辛醇溶液中含有氧氟沙星外消旋体. 中空纤维膜用含有溴化十六烷基三甲胺的磷酸氢二钠/磷酸缓冲液(pH = 6.86)浸泡48 h. 改性的液膜允许氧氟沙星对映体穿过, 而手性选择体和有机溶剂不能穿过. 对中空纤维膜分级手性萃取理论, 传质性能及立体选择性进行了研究; 并建立了氧氟沙星外消旋体在中空纤维支载液膜手性分离的数学模型R/S=0.976 e0.03NTU. 使用11个22 cm长膜器串联(传质单元数为78)逆流分级萃取, 产品光学纯度达90%以上.  相似文献   

10.
磺化聚砜是一种性能优异的离子交换膜材料,本文采用磺化反应合成了一系列不同离子交换容量(IEC)的磺化聚砜,研究了磺化聚砜膜的离子交换容量与醇水分离性能的关系,考察了用不同碱金属碱中和后膜分离性能的变化规律,结果表明:随着离子交换容量的增大,渗透通量增大,而分离因子在IEC=1.0meq/g左右出现最大值。不同碱金属离子膜的渗透通量按下列次序递减:L_i~+>Na~+>K~+,分离因子变化次序刚好相反。此外,料液温度,料液浓度对膜的醇水分离性能有较大的影响。  相似文献   

11.
磺化聚砜改性超滤膜的制备及性能   总被引:2,自引:0,他引:2  
溶剂萃取过程的乳化现象是影响萃取率和产品质量主要问题,长期以来一直靠破乳剂解决,这会造成环境污染等问题[1,2]。膜分离技术能耗低、对具有生物活性的物质能保持其活性、分离产物易于回收,在抗生素提炼中的应用研究近年来十分活跃[3 5]。本文以磺化聚砜为膜材料、N,N 二甲基酰胺为溶剂,采用多元复合添加剂,用湿法相转移化法制备出孔径为400-500 、具有指孔状或海绵状结构的磺化聚砜改性超滤膜,作为抗生素提炼的分离膜。1 实验部分1 1 主要仪器及试剂扫描电镜(S 250,英国Cambridge公司);离子活度计(PXS 215,上海分析仪器厂)。聚…  相似文献   

12.
A two-step process was developed for the purification of polysaccharides from the pulp of Aloe varavia using aqueous two-phase system (ATPS) extraction and a novel copolymer ultrafiltration membrane. The first step was ATPS under optimal separations conditions using a total composition of 18% PEG2000, 25% ammonium sulfate, pH 3.0, and 0.3 M NaCl. To form the copolymer membrane, poly(acrylonitrile-acrylamide-styrene) was prepared by solution polycondensation using azoisobutyronitrile as initiator. Then, membranes were formed from the dissolved copolymer by the phase inversion method. Copolymer structure was investigated by infrared spectrum and thermogravimetric analysis (TGA). The copolymer membrane surface and cross section were observed by scanning electron microscopy. The water flux of this membrane was 26.33 mL/(cm2 h), and retention was 96% for bovine serum albumin and 34% for dextran T40000. The separation and purification of aloe polysaccharide were carried using this copolymer membrane following ATPS. The TGA of aloe polysaccharide demonstrated a high purity of the polysaccharide. By gas chromatographic analysis, it was shown that mannose is the main monosaccharide in the aloe polysaccharide, and only a few glucose residues are present.  相似文献   

13.
许歆瑶  CHEDDAHSoumia  王彦  阎超 《色谱》2020,38(11):1323-1331
葛根多糖具有抗氧化、抗肿瘤等众多生物活性,对葛根多糖进行单糖组成分析对其活性研究具有重要意义。该研究利用响应面分析法考察了超声辅助提取法中液料比、超声温度、超声时间和超声功率对葛根多糖提取率的交互影响,并拟合数据得到多元二次回归方程。同时建立了柱前衍生加压毛细管电色谱检测糖类的方法,对分离8种中性单糖的色谱条件进行了探索与优化,并将此方法应用于两种葛根实际样品的单糖组成测定。响应面分析结果表明,4个试验因素中,超声温度对两种葛根多糖提取率的影响程度最大,其次为液料比,超声时间和超声功率影响程度较小。结合软件预测分析得到的最佳条件及设备实际情况,确定葛根多糖的最佳提取工艺条件为:超声温度90℃,粉葛多糖液料比20 mL/g,柴葛多糖液料比40 mL/g,超声时间30 min,超声功率180 W。优化后的色谱分离条件为:采用Halo-2.7 μm核壳型C18填料毛细管色谱柱,以乙腈-50 mmol/L pH 4.1的醋酸铵水溶液(18:82,v/v)为流动相,在250 nm波长下检测,施加电压-20 kV。在此条件下可以实现24 min内对葡萄糖等8种中性单糖衍生物的快速分离,相比传统液相色谱方法大大提升了分离检测速度和分离柱效。方法学考察表明此方法具有较好的线性关系和良好的重复性。对实际样品分离鉴定表明,粉葛多糖主要由葡萄糖、甘露糖、鼠李糖和岩藻糖组成,4种单糖物质的量之比为1.00:0.16:0.14:0.07;柴葛多糖主要由葡萄糖和甘露糖组成,2种单糖物质的量之比为1.00:0.70。该研究为单糖化合物快速高效分离检测提供了新方法,并为葛根多糖单糖组成分析提供了参考。  相似文献   

14.
对枸杞子中的水溶性多糖成分进行了分离提取及组成分析。采用水提、醇沉等方法提取枸杞子中的多糖成分,用Sevage法除去蛋白质后,用凝胶色谱法进行多糖的纯化,制备3-甲基-1-苯基-2-吡唑啉酮(PMP)衍生物进行液相色谱分析。结果表明,枸杞多糖由鼠李糖、阿拉伯糖、木糖、葡萄糖、半乳糖5种单糖组成,其含量分别为5.28%,17.87%,38.29%,17.82%,20.74%。  相似文献   

15.
用复合酶法对大蒜多糖的提取工艺进行研究,并考察了不同浓度沉淀多糖的抗氧化活性;以多糖提取得率为指标,苯酚-硫酸法测定多糖的总糖含量,采用正交实验确定纤维素酶、木瓜蛋白酶和果胶酶的最佳配比,然后在单因素试验的基础上,采用正交实验优化复合酶提取大蒜多糖的最佳工艺;分别用羟基自由基(·OH)和1-二苯基-2-苦基肼基(DPP...  相似文献   

16.
In view of the recent emphasis on non-conventional chemistry, application of ultrasound in isolation of plant polysaccharides represents a viable alternative to traditional extraction processes. This review presents an extensive literature survey of ultrasound-assisted extraction of polysaccharides from different plant materials, particularly herbal plants and secondary agricultural plant sources. Targeted, multistep methods were applied with respect to differences in the types of polysaccharides and their location in plant cell walls. The effectiveness of the methods was evaluated according to yield and properties of the isolated polysaccharides in comparison to classical extraction methods. Substantial shortening of extraction time, reduction of reagent consumption and/or extraction temperature are the most important advantages of the ultrasonic treatment. In combination with sequential extraction steps using different solvents, sonication was shown to be effective in separation and/or purification of polysaccharides. The disadvantages of the sonication treatment, such as degradation and compositional changes of the polysaccharide preparations are discussed as well.  相似文献   

17.
Selective transmission of a solute through membranes proves to be a challenge in ultrafiltration processes. This is because the transport of a solute through an ultrafiltration membrane does not depend on size alone, but on several other factors such as solute-solute and solute-membrane interactions. By manipulating physicochemical parameters and process variables (eg. pH, ionic strength, concentration of solute, etc.) and by membrane modification, it is possible to enhance the transmission of a particular solute and thus enhance fractionation of solutes. In this paper, the effect of pH on fractionation of BSA and lysozyme by ultrafiltration through 50 kDa MWCO (molecular weight cut off) polysulfone membrane has been examined. It was found that the selectivity of solute separation for dilute mixtures of BSA and lysozyme was very much pH dependent and varied from 3.3 at pH 5.2 to 220.0 at pH 8.8. However, at a higher feed concentration, the transmission of lysozyme through polysulfone membrane decreases quite dramatically resulting in lower throughput of product. An attempt has been made to enhance the transmission of lysozyme through the polysulfone ultrafiltration membrane by pretreating the surface of the membrane by adsorption of another protein, myoglobin. An increase in lysozyme transmission of up to 63% with respect to native membrane was observed. The stability of this pretreatment and its effect on permeate flux have been examined. The pretreated membrane was used to fractionate BSA/lysozyme mixtures. Even at higher feed concentration, enhanced fractionation with respect to native membrane was observed due to highly enhanced transmission of lysozyme through the pretreated membrane.  相似文献   

18.
Polymeric blend ultrafiltration membranes based on cellulose acetate and polysulfone were prepared by phase inversion technique in presence of different additive concentrations, polyvinylpyrrolidone, and characterized in terms of compaction time, pure water flux (PWF), water content, membrane resistance and scanning electron microscopy (SEM). The blend membranes were subjected to separation of proteins and heavy metal ions using polyethylenimine as a complexing agent and the results were discussed. The molecular weight cut off of blend membranes was also reported.  相似文献   

19.
Although an amount of research has reported that a flux minimum occurs at the isoionic/isoelectric points (pH 4.6-5.0) in the absence of salts in the ultrafiltration of bovine serum albumin (BSA), the real mechanism remains incompletely understood due to the lack of additional techniques in real time to detect the properties of deposited BSA (gel) layers formed during ultrafiltration (UF). An ultrasonic technique was developed as an analytical noninvasive tool to in situ investigate the properties of deposited BSA layers at pH 4.9 (isoionic or isoelectric point, IEP) and 6.9 during crossflow ultrafiltration. The membrane was a polysulfone (PSf) UF membrane with molecular weight cut-off (MWCO) 35 kDa. The feed used was 0.5 g/l BSA solution. Results show good correspondence between the ultrasonic signal responses and the development of BSA gel layers on the membranes. The deposit is thicker at pH 6.9 than at pH 4.9. However, the deposited gel layers are more compressible at pH 4.9 than at pH 6.9. The flux decline is mainly controlled by the density (packing) of the deposit layer. At pH 6.9, protein mainly deposits on the membrane surface. Around the isoelectric point, protein absorbs within and on the membranes. A functional relationship between acoustic signals and fouling resistance exists. The fouling resistance is mainly attributed to pore blocking or pore constriction.  相似文献   

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