Identyfikatory
Warianty tytułu
Porowate materiały węglowe stosowane do budowy elementów w niskotemperaturowych ogniwach paliwowych
Języki publikacji
Abstrakty
The porosity, distribution of pores, shape of pores and specific surface area of carbon materials were investigated. The study of sintered graphite and commercial carbon materials used in low-temperature fuel cells (Graphite Grade FU, Toray Teflon Treated) was compared. The study covered measurements of density, microstructural examinations and wettability (contact angle) of carbon materials. The main criterion adopted for choosing a particular material for components of fuel cells is their corrosion resistance under operating conditions of hydrogen fuel cells. In order to determine resistance to corrosion in the environment of operation of fuel cells, potentiokinetic curves were registered for synthetic solution 0.1M H2SO4+ 2 ppmF-at 80°C.
W ramach niniejszej pracy badano porowatość, rozkład porów, kształt porów i powierzchnia właściwa materiałów węglowych. Badania dotyczyły spiekanego grafitu i materiałów komercyjnych wykorzystywanych do budowy ogniw niskotemperaturowych (Graphite Grade FU, Toray Teflon Treated).
Wydawca
Czasopismo
Rocznik
Tom
Strony
117--120
Opis fizyczny
Bibliogr. 18 poz., rys., tab.
Twórcy
autor
- Czestochowa University of Technology, Department of Energy Engineering, Faculty of Environmental Engineering and Biotechnology, 19 Armii Krajowej Av., 42-200 Częstochowa, Poland
Bibliografia
- [1] A. Hermann, T. Chaudhuri, P. Spagnol, Int. J. Hydrogen Energy 30, 1297 (2005).
- [2] H. Tsuchiya, O. Kobayashi, Int. J. Hydrogen Energy 29, 985 (2004).
- [3] H. Tawfik, Y. Hung, D. Mahajan, J. Power Sources 163, 755 (2007).
- [4] J. W. Lim, D. G. Lee, Int. J. Hydrogen Energy 37, 12504 (2012).
- [5] J. W. Lim, D. G. Lee, Composite Structures 95, 557 (2013).
- [6] H. N. Yu, Y. W. Lim, J. D. Suh, D. G. Lee, J. Power Sources 196, 9868 (2011).
- [7] J. Khazaee, M. Ghazikhami, Heat Mass Transfer 48, 799 (2012).
- [8] M. M. Bruno, H. R. Corti, J. Balach, N. G. Cotella, C. A. Barbero, Funct. Mat. Lett. 2, 135 (2009).
- [9] J. T. Gostick, M. W. Fowler, M. A. Ioannidis, M. D. Pritzker, Y. M. Volfkovich, A. Sakars, J. Power Sources 156, 375 (2006).
- [10] H.-K. Lee, J.-H. Park, D.-Y Kim, T.-H. Lee, J. Power Sources 131, 200 (2004).
- [11] H.-C. Kuan, C.-C. M. Ma, K. H. Chen, S.-M. Chen, J. Power Sources 134, 7 (2004).
- [12] www.iupac.org, website, 2013.
- [13] www.quantachrome.com; Pore network modeling from mercury intrusion/extrusion porosimetry, website, 2013.
- [14] R. Wlodarczyk, A. Dudek, R. Kobylecki, Z. Bis, Handbook: Corrosion Resistance, Chapter 9: Corrosion resistance of com-posites based to graphite used as bipolar plates in fuel cells, Book edited by: H. Shih - INTECH, 189-212 (2012).
- [15] P. A. Webb, et al, Analytical Methods in Fine Particle Technology, Micromeritics Instrument Corporation, Norcross, GA (1997).
- [16] R. Wlodarczyk, A. Wrońska, Arch. Metall. and Mater. 58(1), 1 (2013).
- [17] R. Wlodarczyk, A. Dudek, Arch. Metall. and Mater. 56(3), 797 (2013).
- [18] A. Dudek, R. Wlodarczyk, Mat. Sci. Eng. C C33, 434 (2013).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-137026f8-4f1e-4db5-9f4a-7e871f95352c