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1)  microporous membrane
微孔膜
1.
Research on structure and performance of PVDF microporous membranes via thermally induced phase separation;
热致相分离法制备聚偏氟乙烯微孔膜的结构及性能研究
2.
Study on the application of microporous membrane filtration in vinegar production;
微孔膜过滤在食醋生产中应用的研究
3.
Effect of the number of carbon atoms in the linear alkyl chain of dialkyl phthalate on polypropylene microporous membrane formation via thermally induced phase separation;
邻苯二甲酸二正烷基酯类稀释剂的烷基长度对热致相分离制备聚丙烯微孔膜的影响
2)  porous membrane
微孔膜
1.
Progresses in functionalization of poly(vinylidene fluoride) porous membranes;
聚偏氟乙烯微孔膜的表面功能化研究进展
2.
The application and cleaning of polyvinylidene fluoride hollow fiber porous membrane;
聚偏氟乙烯中空纤维微孔膜的应用及清洗方法
3.
The strong hydrophobicity of polypropylene porous membranes,which causes the higher driving force and fouling tendency in membrane separation processes,brings up the necessity of hydrophilic modification of polypropylene porous membranes.
聚丙烯微孔膜的强疏水性导致在膜分离过程中驱动力高和易污染,需要亲水化改性。
3)  microporous film
微孔膜
1.
The effect of diluent(mineral oil)viscosity on the micropore structure of HDPE microporous film via thermally-induced phase separation was studied with SEM.
采用扫描电镜(SEM)研究了稀释剂(矿物油)粘度对热诱导相分离高密度聚乙烯(HDPE)微孔膜微孔结构的影响。
2.
MEK is used as one of solvents to make PU microporous film with hytrochemistry method.
使用丁酮和二甲基甲酰胺配备混合溶剂,用于溶解稀释聚氨酯,并采用湿法成膜方法制备了聚氨酯微孔膜
3.
Regular array microporous films from poly(L-lactic-co-glycolic acid) (PLGA) were prepared on stainless steel substrates utilizing the condensation of water droplets on polymer solutions.
水在不锈钢基体、致密膜表面和微孔膜表面的接触角检测结果表明微孔膜呈现较强的疏水特性。
4)  Microporous Membranes
微孔膜
1.
Progress in polypropylene microporous membranes;
聚丙烯微孔膜的研究进展
2.
The results showed that preservation effect could be achieved when Lentinus edoes was coated by 1% chi- tosan solution along with 314μm OPP/PE microporous membranes MAP.
结果表明,采用1%壳聚糖涂膜结合314μm OPP/PE微孔膜气调包装的方法,可延长货架期到19d,并能较好的保持香菇的感官品质和营养价值。
3.
Hydrophobic polyethylene microporous membranes were produced via the TIPS process using the system of low density polyethylene(LDPE)-diphenyl ether(DPE).
选择低密度聚乙烯(LDPE-18D)为主体材料,二苯醚(DPE)为稀释剂,用热诱导相分离法(TIPS)制备了疏水性的聚乙烯微孔膜,重点对不同浓度的LDPE/DPE微孔膜结构以及采用不同牌号的LDPE和采用高密度聚乙烯(HDPE)制备的微孔膜进行了对比探讨。
5)  LLDPE microporous film
LLDPE微孔膜
6)  UHMWPE microfiltration membrane
UHMWPE微孔膜
1.
The wetting characteristic of the modified porous UHMWPE microfiltration membrane was investigated by the moisture adsorption of the membrane with grafted degree.
研究了UHMWPE微孔膜接枝HEMA和MAA后的水蒸气吸附特性、蛋白质吸附性能及其膜的过滤性能随着接枝率的变化。
2.
Hydrophlic modification of UHMWPE microfiltration membrane (Ⅰ) Ozone-induced graft polymerization and characterization;
用ATR-FTIR、XPS等对O3活化及接枝前后的UHMWPE微孔膜结构进行了表征,接触角测试表明接枝后微孔膜具有较好的亲水性。
补充资料:微孔膜
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性质:高分子膜可分为致密膜、多孔膜、纤维膜和复合膜。微孔膜是孔径在5.0纳米~1.0毫米之间的多孔膜。主要用于超滤和膜过滤。

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