Dissertation > Excellent graduate degree dissertation topics show

Production of Needled Nano-ZnO and Research of Its Application

Author: LiuYaShu
Tutor: JinYunXue;ZhangRongLiang
School: Jiangsu University of Science and Technology
Course: Non-ferrous metallurgy
Keywords: photodegradation nano-ZnO epoxy modify Mechanical properties
CLC: TB383.1
Type: Master's thesis
Year: 2011
Downloads: 113
Quote: 0
Read: Download Dissertation

Abstract


The nano-particle size (5080nm) ZnO were synthesized using hot galvanizing dross as raw materials by vacuum-controlled oxygen method.The products were characterized by scanning electron microscopy (SEM), UV-Vis, fluorescence spectroscopy.And the SEM images showed the product was Nanoneedles,the UV-visible absorption spectra showed that the synthesized nano-ZnO on the 275325nm wavelength range have strong absorption properties of UV.When nano- ZnOs used as photocatalysts to methyl orange photocatalytic degradation,three factors were investigated on the degradation rate of methyl orange including the amount of the catalysts,the initial concentration of methyl orange and different types of catalysts.The results indicated that:the ZnO nano-photocatalytic degradation of methyl orange degradation rate is inversely proportional to the initial concentration of methyl orange;the best dosage of catalyst is 3g/Lwith the degradation rate reaching 85% after 90 min.And it is also shown that the smaller the particle diameter of ZnO is,the higher the photocatalytic activity of nano- ZnO is,and the better effect is.Compared with nano-TiO2,the effect of the photocatalytic degradation of nano-ZnO is better.So the as-synthesized nano-ZnO can be hoped as an efficient,long life light catalyst material.The method of modifying nano-ZnO was researched, the influence of modified nano-ZnO and the contents of nano-ZnO on mechanical properties of the different epoxy composite were investigated, respectively, and the morphology of the fracture surface of nano-ZnO/epoxy was characterized by SEM. The results show that the matrix effects of the interface between the epoxy and the nano-ZnO was enhanced by coupling agent modified by nano-particle, improved the compatibility each other. The tensile strength, the impact strength and the flexural strength increase with increase in nano-ZnO. The toughening effect of nano-ZnO particles on the epoxy resin is remarkably better than that of the ordinary ZnO particles. When the content of nano-ZnO was 4% , the tensile strength, impact strength and flexural strength of the epoxy resin reaches the maximum, respectively.

Related Dissertations

  1. Reactive Hot-Pressing and Mechanical Properties of (ZrB2-ZrO2)/BN Composites,TB332
  2. Synthesis of Polysulfones and Modification for Epoxy Adhesives,TQ433.437
  3. Preparation and Anticorrosion Properties of Doped Polyaniline/Epoxy Coating,TQ637
  4. Curing Mechanism and Properties of Fluorenyl Epoxy Resin,TQ323.5
  5. Preparation of Inorganic Nanometer Antibacteria Agent and Their Antibacterial Mechanism in the Natural Fabric,TS195.2
  6. Synthesis and Self-assembly of Dendrimer and Their In-situ Modification of PMMA,O631.3
  7. Research on High-performance Silicone Resins for LED Packaging,TQ324.21
  8. Fabrication and Characterization of Nano-ZnO by PLA in Liquid Solution,TB383.1
  9. Study on Microstructure and Performance of Laser Cladding Ni-Based Amorphous Alloy Coatings,TG174.4
  10. Preparation, Characterization of Oil-soluble Nano Graphite Lubricant Additives and the Tribological Property,TB383.1
  11. Al Doped Zno Transparent and Heat Insulation Coatings,TB383.1
  12. Molecular Genetic Analysis of One Chinese Family with Leber’s Heriditary Optic Neuropathy,R774.6
  13. AlTi refiner for Al-Mg 2 Si composite microstructure and mechanical properties of,TG27
  14. Longitudinal magnesium alloy AZ91 under AC magnetic field properties of welded joints,TG407
  15. Heat Treatment of Cast Al-Cu-Ti-(La) alloy microstructure and mechanical properties of,TG166.3
  16. Lactic acid -based copolymer / vermiculite ceramic composites and properties of,TB332
  17. Fe 3 O 4 , carbon nanotubes and graphene reinforced regenerated cellulose membrane research,TB383.1
  18. VARTM with a flame retardant unsaturated polyester resin of,TQ323.41
  19. Thermosetting epoxy microsphere preparation, characterization and surface functionalization of,O631.3
  20. Study on the Microstructure and Mechanical Properties of Mg-Zn-Al-(Y) Alloys Reinforced with Quasicrystals,TG146.22
  21. Preparation and Properties of Polyimide Nanocomposites,TB383.1

CLC: > Industrial Technology > General industrial technology > Materials science and engineering > Special structural materials
© 2012 www.DissertationTopic.Net  Mobile