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porous membrane中文是什么意思

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用"porous membrane"造句"porous membrane"怎么读"porous membrane" in a sentence

中文翻译手机手机版

  • 多孔薄膜
  • 多孔滤膜
  • 多孔膜

例句与用法

  • Liquids filtration . porous membranes . permeability test using a reference water
    液体过滤.多孔薄膜.使用标准水进行的渗透性试验
  • Liquids filtration . porous membranes . retention rate of ultrafiltration and nanofiltration membranes
    液体过滤.多孔薄膜.超滤和超微滤薄膜的滞留率
  • Purified chitosan was extracted from chitins using sodium hydroxid . collagen then was mixed with 10 % chitosan to fabricate a highly porous membrane by lyophilization
    以胶原与10壳聚糖共混,经冻干成膜,以0卫5戊二醛交联。
  • Through the ir transparent spectra , we found anion of anodizing electrolytes , also participate the formation of porous membrane during the anodizing procedure
    通过ir光谱的谱线发现,在阳极氧化过程中,电解液中的阴离子也参与了多孔膜的形成。
  • In this paper , theories of porous membrane fouling and cleaning were explored , and a series of experiments were especially done to clean caso4 scale in porous membrane
    本文就对多孔膜的污染问题进行了理论探讨,并针对多孔膜中硫酸钙垢的清洗作了一系列实验。
  • The oxidation curve and sem images show that the oxygen evolution at the interface plays a key role in the transition from the compact al oxide layer to the porous membrane
    分孔道的产生说明析氧反应不但在致密膜电解液界面发生,而且在多孔膜孔壁电解液界面也同时发生。
  • This review introduces the latest studies of surface functionalization of the poly ( vinylidene fluoride ) ( pvdf ) porous membranes , including synthesizing imprinting membranes using photo - grafting technique and environment - sensitive separation membranes , and immobilizing some proteins and enzymes on membranes
    摘要介绍了聚偏氟乙烯( pvdf )微孔膜的表面功能化的研究进展,包括合成分子印迹膜、环境敏感性分离膜和分离膜上蛋白和酶的固定化。
  • Aminated and hydroxylated polysulfone membranes were prepared by amination and hydroxylation reaction , respectively . then bovine albumin ( bsa ) - fixed membranes were obtained by crossed - linking albumin into porous membrane with 1 , 1 ' - carbonyldiimidazole and bisoxirane reagents , respectively . a mathematical model for facilitated transport in asymmetric membranes with fixed site carriers was derived by assuming an instantaneous , microscopic concentraion fluctuation in the membrane
    以氯甲基聚砜为基材,通过相转化法制备出具有底部贯通孔的非对称膜,通过胺化和羟基化反应,分别制得胺化聚砜膜和羟基化聚砜膜,再采用羰基二咪唑和双环氧烷两种活化试剂对其进行活化,将牛血清白蛋白固载在膜内,获得固定白蛋白促进传递膜。
  • Aim : to analyze the mechanism , thermadynamic theoretical basis , dynamic mechanism and influencing factors of thermally induced phase separation ( tips ) in order to completely grasp the factors affecting the size , distribution and form of pores , so that the adjusted range of pore can be widened and the preparation of porous membrane can be repeated and controlled . methods : considering from the structural characteristics of tissue engineered materials , the methods of preparing porous membrane using tips technique , the hermadynamic theoretical basis , dynamic mechanism and influencing factors were analyzed , the problems and investigative directions in the future were also analyzed . tips technique is a process of phase separation of polymer homogenous solution under quenching , and it is suitable for diameter and structural form of the micropore materials prepared using tips are closely correlated with the kind and dispensing proportion of polymer attrnuant , polymer concentration and polymer molecular mass , etc . conducted , including determination of polymer - solvent system phase diagram , study of form and appearance of porous membrane of different thickness , study of form and appearance of porous membrane prepared with systems of different x , which is the parameter of polymer - solvent interaction
    目的:分析热致相分离成膜过程的机理、热力学理论基础、动力学机制以及影响因素,以便充分掌握影响孔度大小、分布、形态的因素,使孔度调控范围得以拓宽,使多孔膜的制备能重复可控.方法:从组织工程材料结构特点出发,分析热致相分离聚合物多孔膜的制备方法及该法成膜的热力学理论基础、动力学机制以及影响因素.并分析实验中存在的问题及今后的研究方向.结果:以热致相分离法可制备聚合物多孔膜.热致相分离法制备多孔膜是高聚物均相溶液在淬冷条件下发生相分离的过程,它适用于上临界共溶温度型聚合物一稀释剂二元体系.热致相分离法成膜的过程,可以认为是旋节线机理占主导地位.热致相分离法制备的微孔材料,其孔隙率、孔径大小、结构形态与聚合物稀释剂的种类、组成配比、聚合物浓度、聚合物分子量等因素密切相关.结论:可采用热致相分离技术制备多孔膜,通过改变不同的成膜条件可获得一系列不同孔径尺寸和孔径分布的多孔膜材料.对热致相分离成膜过程中聚合物-溶剂体系的相图测定,不同厚度的多孔膜形貌研究,不同x (聚合物-溶剂相互作用参数)体系所制备的多孔膜形貌等需深人研究
  • Poly ( vinylidene fluoride ) ( pvdf ) hollow - fiber porous membranes have excellent performances . but adsorption fouling will still be created on the hydrophobic surface when the membranes are used in aqueous solution separation systems . this can cause the decrease of the permeate flux and separation efficiency , thus the applications of the membranes are limited
    聚偏氟乙烯( pvdf )中空纤维多孔膜具有优良的性能,然而由于其表面的疏水性,在用于水相体系分离时,仍会产生吸附污染,导致膜通量和分离效率下降,应用范围受到限制。
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