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John C. Amphlett

Affiliations: 
1967-2007 Royal Military College of Canada (Canada) 
Area:
Chemical Engineering, Materials Science Engineering
Website:
https://everitas.rmcalumni.ca/dr-john-amphlett-faculty-sports-leader-extraordinaire/
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"John Amphlett"

Parents

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Eric Whittle grad student 1967 Cardiff University (Physics Tree)
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Publications

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Qi C, Amphlett JC, Peppley BA. (2009) Stability of NiAl layered double hydroxides derived catalysts for the steam reforming of methanol Catalysis Communications. 11: 71-76
Qi C, Amphlett JC, Peppley BA. (2009) H2 Production via the Steam Reforming of Methanol Over NiAl-layered Double Hydroxide Derived Catalysts Catalysis Surveys From Asia. 13: 16-21
Qi C, Amphlett JC, Peppley BA. (2007) K (Na)-promoted Ni, Al layered double hydroxide catalysts for the steam reforming of methanol Journal of Power Sources. 171: 842-849
Mann RF, Amphlett JC, Peppley BA, et al. (2007) Anode activation polarization on Pt(h k l) electrodes in dilute sulphuric acid electrolyte Journal of Power Sources. 163: 679-687
Qi C, Amphlett JC, Peppley BA. (2007) Hydrogen production by methanol reforming on NiAl layered double hydroxide derived catalyst: Effect of the pretreatment of the catalyst International Journal of Hydrogen Energy. 32: 5098-5102
Mann RF, Amphlett JC, Peppley BA, et al. (2006) Henry's Law and the solubilities of reactant gases in the modelling of PEM fuel cells Journal of Power Sources. 161: 768-774
Mann RF, Amphlett JC, Peppley BA, et al. (2006) Application of Butler–Volmer equations in the modelling of activation polarization for PEM fuel cells Journal of Power Sources. 161: 775-781
Qi C, Amphlett JC, Peppley BA. (2006) Product composition as a function of temperature over NiAl-layered double hydroxide derived catalysts in steam reforming of methanol Applied Catalysis a-General. 302: 237-243
Qi C, Amphlett JC, Peppley BA. (2005) Methanol Steam Reforming Over NiAl and Ni (M) Al Layered Double Hydroxides (M = Au, Rh, Ir) Derived Catalysts Catalysis Letters. 104: 57-62
Mann RF, Amphlett JC, Peppley B, et al. (2004) A Mechanistic Model for the Water Gas Shift Reaction Over Commercial Catalysts Containing CuO/ZnO International Journal of Chemical Reactor Engineering. 2
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