炭分子筛膜,carbon molecular sieve membrane
1)carbon molecular sieve membrane炭分子筛膜
1.Preparation of tubular carbon molecular sieve membranes for gas separation;气体分离用管状炭分子筛膜
2.Preparation and modification of carbon molecular sieve membranes炭分子筛膜的制备与改性
3.Carbon molecular sieve membrane (CMSM) is a new material in gas separation with high efficiency and low energy consumption, and has drawn much attention in the past several decades because of its high gas selectivity, high thermal and chemical stability.炭分子筛膜是一种用于气体分离的高效、节能的新型材料 ,具有好的气体分离选择性 ,高的热和化学稳定性 ,近年来得到国内外广泛的重视和发展。
英文短句/例句

1.Preparation of Nano-particles Filled Tubular Carbon Molecular Sieve Membranes;纳米粒子填充的管状炭分子筛膜的研究
2.Preparation and Application of Mixed Matrix Carbon Molecular Sieve Membrane Based on a Phenol Formaldehyde Novolac Resin;酚醛树脂基混合基质炭分子筛膜的制备及应用
3.Preparation and Application of NaA Zeolite Membranes and Zeolite/Carbon Composite Membranes;NaA分子筛膜及分子筛/炭复合膜的制备与应用
4.Preparation, Microstructure and Gas Separation Performance of Molecular Sieving Carbon Membranes;分子筛炭膜的制备、微结构及气体分离性能
5.Systhsis of Nanosized Zeolite NaY and Zeolite Membranes;纳米NaY型分子筛及分子筛膜的制备
6.Synthesis of Zeolite ZSM-5 and Zeolite Membranes;ZSM-5分子筛及分子筛膜的合成
7.Synthesis of MCM-41 Mesoporous Molecular Sieve and Zeolite Membranes;MCM-41介孔分子筛及分子筛膜的制备
8.Synthesis, Characterization and Membrane Reactor Applications of MFI Type Zeolite Membrane;分子筛膜的制备和新型分子筛膜反应器
9.Synthesis and Characterization of Porous Carbons Using MCM-48 and NaY Molecular Sieves as Template;MCM-48和NaY分子筛模板炭的合成与表征
10.Study on Coking Problem of SAPO-34 Molecular Sieve;SAPO-34分子筛积炭问题的研究
11.Preparation of Carbon Molecular Sieves for Air Separation by Pressure Swing Adsorption;变压吸附空分制氮用炭分子筛的制备研究
12.THE APPLICATION OF COKE MOLECULAR SEIVE NITROGEN GENERATOR TO CA STORAGE OF TOMATO焦炭分子筛气调机在番茄贮藏中的应用
13.Relative performance of zeolites and activated carbon in gaseous phase adsorption and desorption of toluene沸石分子筛和活性炭吸附/脱附甲苯性能对比
14.Synthesis and Gas Separation Performance of Zeolite Membrane分子筛膜的合成及气体渗透分离性能
15.Preparation and Application of Mesoporous MCM-48 Zeolite Membranes介孔MCM-48分子筛膜的制备与应用研究
16.Fabrication and Applications of Oriented MFI Zeolite MembranesMFI型取向分子筛膜的制备与应用
17.Research on Synthesis of MCM-48/ZSM-5 Composite Molecular Sieve and MembraneMCM-48/ZSM-5复合分子筛及膜的制备研究
18.Synthesis and Application of MnAPSO-5 Molecular Sieve Crystals and MembranesMnAPSO-5分子筛颗粒及膜的合成与应用
相关短句/例句

carbon molecular sieve membrane分子筛炭膜
1.Surface coating is one of effective methods for preparing carbon molecular sieve membrane (CMSM ).表面涂层法是制备分子筛炭膜的有效方法、以酚醛树脂的乙醇溶液作为涂层液对炭膜基板进行处理,制得适合H2/CO2分离的分子筛炭膜。
2.A certain concentration of PF solution served as carbon material was used to manufacture carbon molecular sieve membrane.以一定浓度的酚醛树脂溶液对炭膜基板进行碳沉积处理,考察碳沉积条件对所制备的分子筛炭膜气体分离性能的影响。
3)molecular sieve carbon membrane分子筛炭膜
1.Preparation of molecular sieve carbon membrane with high hydrogen selectivity;高氢选择性分子筛炭膜的制备
2.The emphasis is placed only on the current status and perspectives of the following coal-based carbon materials:carnon molecular sieve,molecular sieve carbon membrane,fullerenes and condenced poly.依据有关文献资料,结合作者的研究结果,重点介绍煤基高性能炭素材料:炭分子筛、分子筛炭膜、富勒烯及缩合多环芳烃树脂的研究现状与发展动态。
4)nickel containing carbon membrane载镍炭分子筛膜
5)Zeolite/Carbon Composite Membranes分子筛/炭复合膜
1.Preparation and Application of NaA Zeolite Membranes and Zeolite/Carbon Composite Membranes;NaA分子筛膜及分子筛/炭复合膜的制备与应用
6)carbon molecular sieve炭分子筛
1.A Dynamic Gas-Water Imbibition Technique for Evaluation of the Air Separation Ability of Carbon Molecular Sieves;吸水驱气法评价炭分子筛空分性能
2.Carbon molecular sieve (CMS) with a specific surface area over 3 000 m2/g is obtained from Daqing petroleum coke by KOH activation.以大庆石油焦为原料,采用物理化学联合活化法制备炭分子筛,考察了碱炭比、活化温度、活化时间对炭分子筛吸附性能的影响,确定了最佳工艺条件并制得比表面积近3 000 m2/g的炭分子筛。
3.A carbon molecular sieve with a mesopore ratio>85% and S_(BET)>1?500?m~2/g was then obtained from the UAC through heat-treatmen.通过热处理得到孔径均一(中孔率>85%),比表面积大于1500m2 g的炭分子筛;再用表面氧化方法,得到表面酸度适宜(150℃~240℃之间为弱酸,240℃~340℃为中强酸,340℃~450℃为强酸分布)的催化剂载体。
延伸阅读

10X分子筛分子式:0.70CaO·0.30Na2O·Al2O3·(2~3)SiO2·6.0H2O CAS号:性质:白色粉末。具有高的吸附性和抗毒性。由水玻璃、偏铝酸钠、氢氧化钠按一定摩尔比混合后,发生反应,经结晶,过滤,洗涤,加入氯化钙进行离子交换(交换率70%)再过滤,再洗涤,烘干,加入粘接剂捏合,成型,灼烧活化制得。用于气体、液体的干燥,气体中硫化物、二氧化碳的脱除,芳烃的分离,以及用作催化剂及载体。