1)  double-layer supported liquid membrane
					
	
					
				
				
	
					
				双层支撑液膜
			
					2)  platinum-supported BLMs
					
	
					
				
				
	
					
				铂支撑双层脂膜
			
					3)  supported bilayer lipid membrane
					
	
					
				
				
	
					
				支撑磷脂双层膜
				1.
					In this paper, supported bilayer lipid membrane (s-BLM) was served as a biomembrane model.
						
						以支撑磷脂双层膜(supported bilayer lipid membrane,s-BLM)作为生物膜模型,采用循环伏安法和交流阻抗技术研究了脱氧胆酸钠(sodium deoxycholate,NaDC)与s-BLM的相互作用。
					
					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。
					补充资料:支撑液膜
		分子式:
CAS号:
性质:指液膜溶液借助于支撑体的微孔的毛细管力含浸于支撑体内,料液中要回收的物质通过支撑体微孔中的液膜进行透过而被回收。液膜支撑体主要采用疏水性多孔膜,其性能与支撑体材料、膜的厚度及微孔大小有关,膜厚25~50μm,微孔的平均孔径为0.02~1μm,孔径越小,液膜越稳定,但孔径过小会导致孔隙率下降,从而降低透过速度。支撑体一般采用聚丙烯、聚乙烯、聚砜及聚四氟乙烯等疏水性多孔膜。其透过机理可用示意图表示。支撑液膜多用于处理水溶液。
		
		CAS号:
性质:指液膜溶液借助于支撑体的微孔的毛细管力含浸于支撑体内,料液中要回收的物质通过支撑体微孔中的液膜进行透过而被回收。液膜支撑体主要采用疏水性多孔膜,其性能与支撑体材料、膜的厚度及微孔大小有关,膜厚25~50μm,微孔的平均孔径为0.02~1μm,孔径越小,液膜越稳定,但孔径过小会导致孔隙率下降,从而降低透过速度。支撑体一般采用聚丙烯、聚乙烯、聚砜及聚四氟乙烯等疏水性多孔膜。其透过机理可用示意图表示。支撑液膜多用于处理水溶液。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
	参考词条