支撑液膜萃取,Supported liquid membrane extraction
1)Supported liquid membrane extraction支撑液膜萃取
英文短句/例句

1.Study on the Supported Liquid Membrane Extraction and Membrane Integration Technology for Fumaric Acid;富马酸废水的支撑液膜萃取与膜集成技术的研究
2.Supported Liquid Membrane Extraction Technology and Its Application in Detection of Meat Security支撑液膜萃取技术及其在肉类安全检测中的应用
3.Effect of Extraction Conditions on Separation of Organic Acid by Supported Liquid Membranes萃取条件对支撑液膜法提取有机酸的影响
4.On-line supported liquid membrane enrichment flow-injection fluorescence spectrophotometric determination of trace phenol in water支撑液膜在线萃取富集流动注射荧光光度法测定水中痕量苯酚
5.Study on the Technique of On-line Supported Liquid Membrane Extraction Combined with Flow Injection Spectrophotometric Determination and Its Application in Environmental Analysis;支撑液膜在线萃取与流动注射分光光度分析联用技术的研究及其在环境分析中的应用
6.RECOVERY OF CHROMIUMLON ION USING HYBRID LIQUID MEMBRANE TECHNOLOGY FROM PLATING WASTEWATER反萃预分散支撑液膜技术回收电镀废水中铬离子的研究
7.Studies on Separation of Drug Enantiomers by Chiral Extraction and Liquid-supported Membrane;药物对映体手性萃取及支载液膜分离理论与应用研究
8.Recovery of Indium from Acid Leachate of Blast Furnace Dust with Emulsified Liquid Membrane用乳状液膜萃取瓦斯灰酸浸液中的铟
9.A STUDY ON MASS TRANSFER PROCESS IN EXTRACTION OF CHROMIUM FROM WASTE WATER WITH LIQUID MEMBRANES液膜法萃取含铬废水传质过程的研究
10.Extraction of Light Rare Earth Metals Using Nonionic Water-in-Oil Microemulsion in Hollow Fiber Membrane;微乳液—中空纤维膜萃取轻稀土的研究
11.Extraction of Neodymium Using a Nonionic Water-In-Oil Microemulsion Within Hollow Fiber Contactor;微乳液—中空纤维膜萃取稀土钕的研究
12.Separation Performance of Polyimide Nanofiltration Membrane for Recovery of Solvent from Spiramycin Extract聚酰亚胺纳滤膜分离螺旋霉素萃取液
13.Study on Transportation of Pt(Ⅳ) in Dispersion Supported Liquid Membrane System分散支撑液膜体系中Pt(Ⅳ)的传输研究
14.Study on transport of nickel(Ⅱ) by dispersion supportedliquid membrane system分散支撑液膜中金属镍(Ⅱ)的迁移研究
15.Transport of Copper(II) Ion in Supported Liquid MembraneCu~(2+)在支撑液膜中的传质过程
16.Droplet-film Alternate Flow and Its Effect on Liquid-liquid Extraction Performance滴膜交替流动现象及其对液液萃取性能的影响
17.Mass Transport and Stability of Supported Liquid Membrane;支撑液膜分离过程传质与膜稳定性研究
18.Separation of Cs/Mo Using Ionic Liquids-Hollow Fiber Supported Liquid Membrane System离子液体-中空纤维支撑液膜技术分离Cs/Mo研究
相关短句/例句

SLME支撑液膜萃取(SLME)
3)Splint supported liquid membrane extraction夹板式支撑液膜萃取
4)Liquid membrane extraction液膜萃取
1.Meanwhile, it chiefly introduces their basic principles, including liquid membrane extraction, liquid-liquid extraction, and their applications in the treatment of wastewater containing phenol in China, and their merit and demerit respectively.简要介绍了液膜萃取制备工艺,液—液萃取的萃取剂分类。
2.Some new extraction technology such as supercritical fluid extraction, solid-phase microextraction, microwave extraction, aqueous two-phase partitioning extraction and liquid membrane extraction are simply introduced.对超临界萃取,微波萃取,固相微萃取,双水相萃取,液膜萃取等几种新型萃取技术作了简要介绍。
3.A nonpoisonous carrier, tributyl phosphate(TBP) dissolved in kerosene was used in the supported liquid membrane extraction system.选用无毒性的磷酸三丁酯为载体 ,煤油为膜溶剂的支撑液膜萃取体系 ,建立了支撑液膜在线萃取富集流动注射分光光度法测定河水中苯胺的新方法。
5)supported liquid membrane支撑液膜
1.On line supported liquid membrane enrichmentflow injection spectrophotometric determination of trace cadmium(Ⅱ) in water;支撑液膜在线萃取富集-流动注射分光光度法测定水中痕量镉(Ⅱ)
2.Research progress of stability of supported liquid membranes;支撑液膜稳定性研究进展
3.Extraction of the citric acid by supported liquid membrane;支撑液膜法提取柠檬酸——膜配方的研究
6)supporting liquid membrane支撑液膜
1.The citric acid was extracted from citric acid solution by polypropylene supporting liquid membrane, and its mass transfer conditions in the technological process were studied.用聚丙烯支撑液膜从柠檬酸溶液中提取柠檬酸,通过正交实验考察和分析料液相浓度、反萃取相浓度、搅拌速率、温度等因素的影响,得到最佳传质条件料液相浓度为0。
2.The transferring behaviour of Cd(Ⅱ)ion through supporting liquid membrane was studied with porous polyproplylene membrane as supporting body and PC-88A/CHCl3 as carries;the effect of carries concentration,pH value,temperature and beginning concentration in feed phase etc.本文以多孔聚丙烯膜为支撑体,PC-88A/CHCL3为膜载体,研究了重金属离子Cd(Ⅱ)的支撑液膜传输的行为。
延伸阅读

液膜萃取分子式:分子量:CAS号:性质:是一项新的萃取技术。以水为连续相,分散以表面活性剂和有机相包覆有水相内核的液滴,形成一乳状液。在外水相中某些组分被液滴外的有机相萃取后进入液滴内的水相,实现萃取分离。由于液滴的直径只几微米,液膜的比表面大,加以被萃取组分很快从有机相转入内水相,传质推动力大、传质不受外水相与表机相平衡浓度的限制,故萃取效率很高。技术的难点是破乳。目前在高压静电场下破乳是最有效的。可用在金属离子分离、生物产品分离以及污水处理等方面。