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Hogarth

E. H. Pudey, "Lead Sulphide, Selenide and TeUuride," ia C. A. Hogarth, ed.. Materials Used in Semiconductor Devices, Wiley-Interscience, New York, 1965. [Pg.438]

Bennett, J., Lubben, F., Hogarth., S. (2007), Bringing science to life A synthesis of the researeh evidenee on the effeets of eontext-based and STS approaches to science teaching. Science Education, 91, 347-370. [Pg.52]

Mack M, Schneider MA. Moll C. Cihak J. Bruhl H. Ellwart JW Hogarth MP. Stangassinger M, Sch-londorff D Identification of antigen-capturing cells as basophils. J Immunol 2005 174 735-741. [Pg.95]

Such bimetallic alloys display higher tolerance to the presence of methanol, as shown in Fig. 11.12, where Pt-Cr/C is compared with Pt/C. However, an increase in alcohol concentration leads to a decrease in the tolerance of the catalyst [Koffi et al., 2005 Coutanceau et ah, 2006]. Low power densities are currently obtained in DMFCs working at low temperature [Hogarth and Ralph, 2002] because it is difficult to activate the oxidation reaction of the alcohol and the reduction reaction of molecular oxygen at room temperature. To counterbalance the loss of performance of the cell due to low reaction rates, the membrane thickness can be reduced in order to increase its conductance [Shen et al., 2004]. As a result, methanol crossover is strongly increased. This could be detrimental to the fuel cell s electrical performance, as methanol acts as a poison for conventional Pt-based catalysts present in fuel cell cathodes, especially in the case of mini or micro fuel cell applications, where high methanol concentrations are required (5-10 M). [Pg.361]

Hogarth MP, Ralph TR. 2002. Catalysis for low temperature fuel cells. Part III Challenges for the direct methanol fuel cell. Platinum Metals Rev 46 146-164. [Pg.370]

Ambient temperature catalysis of O2 reduction at low overpotentials is a challenge in development of conventional proton exchange membrane fuel cells (pol5mer electrolyte membrane fuel cells, PEMFCs) [Ralph and Hogarth, 2002]. In this chapter, we discuss two classes of enz5mes that catalyze the complete reduction of O2 to H2O multi-copper oxidases and heme iron-containing quinol oxidases. [Pg.604]

Hogarth, G. Alvarez-Falcon, M. M. Inorg. Chim. Acta 2005, 358, 1386-1392. [Pg.303]

Fig. 1. Map showing location of the study sites relative to Hogarth and Caland pit lakes. Black outline represents original lake level (prior to draining for mining). Inset shows location of the Steep Rock iron deposit within Ontario. Fig. 1. Map showing location of the study sites relative to Hogarth and Caland pit lakes. Black outline represents original lake level (prior to draining for mining). Inset shows location of the Steep Rock iron deposit within Ontario.
Cockerton, S. 2008a. Experimental constraints for the source of sulfate toxicity and predictive water quality for the Hogarth and Caland pit lakes, Steep Rock Iron Mine, Northwestern Ontario, Canada. Mine Water and the Environment Proceedings, 10, 551-554. [Pg.334]

M. Hogarth, G. Hards, "Direct Methanol Fuel Cells Technological Advances and Further VcQoyiwQmQnis," Platinum Metals Review, AQ, pp. 150-159, 1996. [Pg.94]

Orser, B. J., Hogarth-Scott, S., Riding, A. L. 2000. Performance, firm size, and management problem solving. Journal of Small Business Management, 38(4) 42-58. [Pg.145]


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See also in sourсe #XX -- [ Pg.389 ]

See also in sourсe #XX -- [ Pg.206 ]




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