Dissertation > Excellent graduate degree dissertation topics show

Studies on Anode Catalysts for Direct Formic Acid Fuel Cell

Author: WuZuo
Tutor: LiuBinHong
School: Zhejiang University
Course: Materials Science
Keywords: Formic acid Direct formic acid fuel cell Pd/C catalyst Multi-walled carbon nanotubes Alloy catalysts
CLC: TM911.48
Type: Master's thesis
Year: 2010
Downloads: 160
Quote: 2
Read: Download Dissertation

Abstract


Recently, direct formic acid fuel cells (DFAFCs) have attracted considerable attention. The research on anode catalysts for formic acid oxidation is crucial for the development of DFAFCs. In this thesis, we prepared Pd and Pd-based alloy catalysts supported on multi-walled carbon nanotubes (MWCNTs). Their structures, morphologies and electrocatalytic properties for formic acid oxidation was investigated. The main results obtained are as follows:(1) The effects of electrode supporting materials, electrode preparation methods, formic acid and sulfuric acid concentrations, and temperature on electrode properties were studied. It was found that carbon cloth was the best electrode supporting material. The electrode with 30wt% Nafion in the catalyst layer demonstrated better properties. When total catalyst loading was more than 10mg/cm~2, the electrode properties could not be improved further. The preferred concentration of sulfuric acid was 0.5mol/L, and the preferred concentration range of formic acid was lmol/L-5mol/L. The electrode properties could be enhanced by increasing the temperature of solution. We also found that Pd/C catalyst electrodes for formic acid oxidation could be reactivated by applying it to a potential of 1.2V for 60s (vs Ag/AgCl).(2) The multi-walled carbon nanotube supported Pd catalysts (10wt%Pd/MWCNTs) were prepared through liquid phase reduction method. The catalysts were characterized by XRD and TEM. It was found that Pd nanoparticles had an average size of 2-3 nm with a good dispersion. The electrocatalytic properties of the Pd/MWCNTs catalysts for formic acid oxidation were investigated by cyclic voltammetry, impedance and polarization curve. The results demonstrated that Pd/MWCNTs had the best electrocatalytic performance and stability for formic acid electro-oxidation compared with other two commercial 10wt%Pd/C.(3) Pd-Ru/MWCNTs, Pd-Au/MWCNTs, Pd /MWCNTs were prepared with the same Pd loading of 10wt%. These three catalysts were investigated and characterized by cyclic voltammetry and chronoamperometry. The results demonstrated that the addition of Ru decreased the elctrocatalytic properties probably because Ru suppressed the direct pathway of formic acid oxidation on Pd catalysts. The addition of Au increased the elctrocatalytic activity and stability of catalysts for formic acid oxidation presumably owing to the synergic effect of Pd and Au.(4)We fabricated air breathing direct formic acid fuel cells (DFAFCs) with 10wt%Pd/C as anode catalysts and investigated the influences of different Nafion membranes and formic acid concentration on the performance of air breathing DFAFCs.Compared with 10wt%Pd/MWCNTs, the electrocatalytic performance and stability for formic acid electro-oxidation of 30wt%Pd/MWCNTs catalysts were better. The air breathing DFAFC with 30wt%Pd/MWCNT as the anode catalyst showed the maximum power density of 22.0mW/cm~2 at the ambient temperature, while the one fed with oxygen gave the maximum power density of 31.4mW/cm~2.

Related Dissertations

  1. Pt -based catalysts of direct methanol fuel cells,TM911.4
  2. The Study of Anode Catalyst Pd/C for Direct Formic Acid Fuel Cell,O643.36
  3. MWCNTs and ZnO / SnO 2 Composites and NO gas research,TB33
  4. Synthesis of Silver Nanoparticles on Modified Multi-walled Carbon Nanotubes and Their Antimicrobial Effects,TB383.1
  5. Preparation of Functional Multi-walled Carbon Nanotubes for Using in Electrochemical Capacitor Materials and Its Electrochemical Performance,TB383.1
  6. Nano- Pd catalytic oxidation of formic acid,O643.32
  7. Fe 3 O 4 , carbon nanotubes and graphene reinforced regenerated cellulose membrane research,TB383.1
  8. Functional polyacrylamide hydrogel Preparation and Properties,TB383.1
  9. PVA / carbon nanotube nano- fiber mat Preparation and Self-Assembly,TB383.1
  10. Nitrogen-doped SO 4 2 - / TiO 2 photocatalyst precipitation step Preparation and Photocatalytic Performance,O643.36
  11. Sugar polymer nanofiber membrane preparation and its application in enzyme immobilization,TB383.2
  12. Polyurethane / multi- walled carbon nanotube fibers sensitive directional characteristics of micro-nano research,TB383.1
  13. High thermal conductivity epoxy composites and Research,TB332
  14. GC / MS analysis of environmental pollutants in the marine ecosystem and applied research in the field of,X502
  15. Electrochemical Sensor and Its Application in the Production of the Laccase from Penicillium Simplicissimum Isolated from Composting,TQ440.7
  16. Heterogeneous Hydrogenation of Carbon Dioxide to Formic Acid Over the Supported Ruthenium Catalyst,TQ225.121
  17. The Study of Structure Property and Catalytic Activity of Pd/CeO2 Oxidation Catalyst,O643.36
  18. The Fumigation of Ethyl Formate to the Important Insects and the Effect on Two Enzymes,S379.5
  19. Studies on the Electrochemical Properties of PANI/REmOn (RE=La, Ce) Nanocomposites and the Catalysis of Pt Electrode Modified by Them to the Oxidization of CH3OH and HCOOH,TB33
  20. Electrochemical Sensor and Its Application in the Production of the Laccase from Penicillium Simplicissimum Isolated from Composting,TP212
  21. Studies on the Electrochemical Properties of PANI/RE2O3 (RE=Sm, Y) Nanocomposites and the Catalysis of Pt Electrode Modified by Them to the Oxidization of CH3OH and HCOOH,O621.251

CLC: > Industrial Technology > Electrotechnical > Independent power supply technology (direct power) > Chemical power sources,batteries, fuel cells > Fuel cell > Ion-exchange membrane fuel cell
© 2012 www.DissertationTopic.Net  Mobile