气体分离膜
- 网络Gas separation membrane
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气体分离膜研究和应用新进展
New progress in the research and application of gas separation membranes
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多孔支撑复合气体分离膜的涂层模型及工艺探讨
Model studies and preparation of composite gas separation membranes
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铸膜液溶剂的相互作用及其对EC气体分离膜的影响
The Interactions Between Solvents of Casting Membrane Solution and Their Effects on Gas Permeability of EC Membrane
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荷电型聚芳醚酮气体分离膜的研究&磺化度与中和离子对H2/N2气体透过行为的影响
Study on charged poly ( aryl ether ketone ) gas membrane & Effects of sulfonation and neutralized ion on permeating behavior of gases of H_2 / N_2
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单外皮层PES中空纤维气体分离膜制备的研究
Study on the Preparation of Hollow Fiber Membranes with Single External-layer for Gas Separation
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高选择性透过二氧化硫气体分离膜的研究(Ⅲ)&乙烯基亚砜与聚乙烯醇的Michael加成反应及其结构表征
Studies on High Permselective Gas Separation Membrane of Sulfur Dioxide (ⅲ)── Michael Addition Reaction of Vinyl Sulfoxide with Poly ( vinyl alcohol ) and Structure Characterization
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通过溶胶-凝胶法制备出系列聚酰亚胺PI(HQDPA-DMMDA)/TiO2纳米复合气体分离膜。
Nano-composite membranes based on a polyimide ( HQDPA-DMMDA ) and TiO_2 sol were fabricated by the sol-gel process .
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尤其是气体分离膜在清洁能源(氢能)的开发利用、温室气体CO2的捕集、分离及回收利用、天然气的纯化以及空气分离等诸多方面有广阔的应用前景。
Especially , membrane-based gas separation technology has attracted much attention in various fields such as the developing and utilization of clean energy ( H2 ), the greenhouse gas carbon dioxide separation and recovery , the natural gas purification and oxygen / nitrogen separation .
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现在商业气体分离膜应用的范围包括:富氮、富氧、氢回收、从天然气中除去酸性气体(CO2和H2S)、天然气脱水和有价值的挥发有机物(VOCs)的回收。
The current spectrum of applications of gas separation membrane include nitrogen enrichment , oxygen enrichment , hydrogen recovery , acid gas ( CO 2 and H 2S ) removal from natural gas , dehydration of natural gas , and valuable VOCs recovery .
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但是,普通高分子膜因受Robeson上限的制约,难以同时实现高渗透通量和高选择性,限制了气体分离膜的研究和应用。
However , the commercially available polymeric membranes cannot achieve both high permeability and selectivity because of the Robeson upper limitation , which hindered the research and application of current gas separation process .
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气体分离膜成膜技术及成膜机理的研究进展
Progress in Membrane & Forming Technique and Mechanism for Gas Separation
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小分子添加剂在气体分离膜中的应用进展
Advance on Polymer Gas Separation Membrane Containing Low Molecular Weight Additives
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中空纤维气体分离膜丝内压降规律的研究
A Study on Pressure Drop in Hollow-Fiber Membrane for Gas Separation
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高分子气体分离膜材料的化学结构与气体透过性能之间的关系
Relationship Between the Chemical Structure and Permselectivity in Polymeric Gas Separation Membrane
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分子筛-聚合物共混气体分离膜研究进展
Advance on molecular sieve-polymer mixed matrix membranes for gas separation
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聚酰亚胺气体分离膜材料的结构与性能
Relationship Between Gas Separation Properties and Structure of Aromatic Polyimides
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含有聚醚链段的可溶性聚酰亚胺气体分离膜材料及其性能
Preparation and Properties of Soluble Polyimide Membranes Containing Polyether Segment for Gas Separation
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介绍了气体分离膜材料的种类;
In this paper , membrane materials for gas separation membrane were introduced .
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双浴凝固法纺制不对称中空纤维气体分离膜
Spinning of Asymmetric Gas Separation Hollow Fiber Membranes by a Dual-Bath Coagulation Method
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聚醚酰亚胺中空纤维气体分离膜及结构
Polyetherimide ( PEI ) hollow fiber membranes for gas separation and its structures
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酸性侵蚀性气体分离膜材料研究及应用进展
Progress in the Research Application of Membrane Materials for Acid Aggressive Gas Separation
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等离子体聚合制备气体分离膜研究概况
Recent Progress in Application of Plasma Polymerization for Preparation of Gas Separation Membranes
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聚酰亚胺气体分离膜的进展
Recent Advance of Polyimide Membrane for Gas Separation
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气体分离膜应用的现状和未来
Current status and future of gas membrane separation
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芳香聚酰亚胺气体分离膜
The Aromatic Polyimide Membrane for Gas Separation
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考虑了气体分离膜应用和气体传递机理的各种技术。
The various technologies for gas separation application and the gas transport mechanisms are reviewed .
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过渡金属有机络合物添加剂对聚酰亚胺气体分离膜性能的影响
Effect of transition metal-containing organic complex additive on the properties of polyimide gas separation membranes
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聚[1-(三甲硅基)1-丙炔]&一种有希望的气体分离膜材料
Poly ( 1 - ( trimethylsilyl ) 1-propyne ) & A Promising Materials for Gas Separation
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渗透汽化膜与气体分离膜的对比研究
The Comparative Study of Cas Separation and Pervaporation Synthesis and Gas Separation Performance of Zeolite Membrane
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气体分离膜具有低耗高效的特点,在节能减排和能源利用方面具有广泛的应用前景。
Gas separation membranes with their low cost characteristics have broad application prospects in terms of energy conservation .