Dissertation > Excellent graduate degree dissertation topics show
Rule of Pore Size Change of Composite Ultrafiltration Membrane in Magnetic Fields
Author: ZhaoJinLong
Tutor: PanJian
School: Hefei University of Technology
Course: Biochemical Engineering
Keywords: Liquid-liquid interfacial method composite ultrafiltration membrane pore size distribution rejection
CLC: TQ028.8
Type: Master's thesis
Year: 2009
Downloads: 48
Quote: 0
Read: Download Dissertation
Abstract
|
That one membrane separates kinds of efficacious composition realized by the invented separate method of magnetic composite ultrafiltration membrane. Ultrafiltration membrane separation is mainly based on the screening mechanism. Ultrafiltration membrane pore size is due to a statistical average, usually referred to as "the equivalent aperture." Thus the measurement, equivalent diameter and equivalent pore size distribution (EPSD) of magnetic ultrafiltration membrane, is particularly important. A rapid and reliable method suitable for determination of pore size change of composite ultrafiltration membrane in magnetic fields has been developed. The rule and elements of EPSD change of composite ultrafiltration membrane in magnetic fields has been analyzed and examined methodically. The conclusions as follows:1. a stable, accurate, and easy detection method of magnetic membrane EPSD in magnetic fields has been set up.2. in magnetic fields, the EPSD change of un-composite ultrafiltration membrane is inapparent. The EPSD change of composite ultrafiltration membrane changed by the mix method and the surface sediment method is distinct.3. With the rise of magnetic intensity, the former equivalent pore size increases in 0T~0.4T, reduces in 0.4T~1.2T; the latter pore size reduces in 0T~1.2T.4. The SEM express, Two styles , sediment and pack particle exist in the composite ultrafiltration membrane. For torsion and magnetostrictive of magnetic exist. The EPSD change of composite ultrafiltration membrane caused by the Synergy both of them with the mix method, and by the sediment alone with the surface sediment method.
|
Related Dissertations
- The Research and Design of Phase Conjugation Mixer in Retro-directive Array,TN773
- Preparation of the use of medicinal charcoal charcoal Study on New Technology,TQ424.1
- Galectin-7 Gene Expression in Mice Skin Graft and Its Significance,R736.1
- Differences in urine metabolite analysis in the diagnosis of acute renal allograft rejection reaction,R699.2
- Materials characterization techniques in weathered sandstone heritage research applications,K854
- Research on the Fabrication of C/SiC Composite Using C/C Foam Preform Via Gaseous Silicon Infiltration Process,TB332
- Preparation and Properties of PMP Hollow Fiber Membranes,TQ320.721
- Determination of Pore Size Distribution of Porous Media by Inverse Size-exclusion Chromatography,TQ028.8
- Contrast-enhanced Ultrasonography in Diagnosis of Early Kidney Allograft Dysfunction after Transplantation,R699
- Effect Analysis of Elder Donors in Living Kidney Transplantation,R699.2
- Knockout of GGTA1 Gene by Promoter-trap Strategy in Wuzhishan Miniature Pig,Q78
- New Graphene Oxide/Polyvinylidene Fluoride Composite Ultrafiltration Membrane,TB383.2
- Effect of Inorganic Salts on the Early Age Shrinkange of Concrete,TU528.1
- Analysis of HLA Mismatch Rate in Renal Transplantation and the Clinical Study of the Relationship with Acute Rejection,R699
- Association of ABO Genotype with Acute Rejection in Renal Transplantation,R699
- Correlation of Mycophenolic Acid Plasma Trough Levels with Rejection and Toxicity in Renal Transplant Patients,R699
- Anti-MICA Antibodies: Risk Factors for Sensitization and the Impact on Renal Transplantation Outcomes,R699
- Identification and Evaluation of Proteins Related to Renal Acute Allograft Rejection,R699
- Preliminary Study of Carbon Fiber Paper for Proton-exchange Membrane Fuel Cells,TM911.4
- Multi-carrier communication systems Signal Optimization and Simulation,TN919.3
- Ka-band harmonic image rejection mixer MMIC design,TN773
CLC: > Industrial Technology > Chemical Industry > General issues > Chemical processes ( physical processes and physical and chemical processes ) > Separation process > New separation method
© 2012 www.DissertationTopic.Net Mobile
|