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大孔氧化铝支撑体上细孔膜的制备研究 被引量:7
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作者 赖炜 李刚 +1 位作者 刘杏芹 孟广耀 《膜科学与技术》 CAS CSCD 北大核心 2001年第4期29-33,共5页
采用悬浮粒子浸涂法在宽孔径分布的大孔 (平均孔径为 12 μm )管状支撑体上进行了氧化铝细孔膜制备过程的研究 探讨了浆料中固体含量和涂膜时间对膜的孔径大小、分布和形貌的影响 ,初步得到孔径分布比较窄而且表面比较平整的微滤膜 ;... 采用悬浮粒子浸涂法在宽孔径分布的大孔 (平均孔径为 12 μm )管状支撑体上进行了氧化铝细孔膜制备过程的研究 探讨了浆料中固体含量和涂膜时间对膜的孔径大小、分布和形貌的影响 ,初步得到孔径分布比较窄而且表面比较平整的微滤膜 ;提出了在这种大孔支撑体上的简单的成膜模型 。 展开更多
关键词 氧化铝支撑体 微滤陶瓷膜 悬浮粒子法 湿膜形式 制备
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Synthesis and characterization of FeAl nanoparticles by flow-levitation method 被引量:1
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作者 陈善俊 陈艳 +4 位作者 唐永建 罗炳池 易早 韦建军 孙卫国 《Journal of Central South University》 SCIE EI CAS 2013年第4期845-850,共6页
The synthesis of high purity intermetallic FeAI nanoparticles using the flow-levitation (FL) method was reported. Iron and aluminium droplets were levitated stably at about 2 230℃. The morphology, clystal structure... The synthesis of high purity intermetallic FeAI nanoparticles using the flow-levitation (FL) method was reported. Iron and aluminium droplets were levitated stably at about 2 230℃. The morphology, clystal structure and chemical composition of FeAI nanoparticles were investigated by transmission electron microscopy (TEM), high-resolution TEM, X-ray diffraction and energy dispersive spectrometry. The results show that the average particle size of these nanoparticles is about 34.5 nm. Measurements of the d-spacing from X-ray diffraction and electron diffraction studies confirm that the intermetallic nanoparticles have the same crystal structure (B2) as the bulk FeA1. A thin oxidation coating is formed around the particles when being exposed to air. Based on the XPS measurements, the surface coating of the FeAI nanoparticles is composed of Fe2O3 and FeAl2O4. Besides, hysteresis curve reveals that saturation magnetization (Ms) of FeA1 is 1.66 A/m2, and the coercivity is about 1.214×10^3 A/re. 展开更多
关键词 intermetallic compound FeA1 nanoparticles flow-levitation method
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