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II International Symposium on Carbon for Catalysis ABSTRACTS

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PL-2<br />

the membranes can be tailored over wide ranges to suite various applicati<strong>on</strong>s. The<br />

preparati<strong>on</strong> and properties, of these membranes will be discussed in detail. This will cover<br />

both the gas separati<strong>on</strong> properties 16 and the use of the MAST membranes in the catalytic<br />

17, 18<br />

c<strong>on</strong>versi<strong>on</strong> of water to hydrogen peroxide<br />

1 Tennis<strong>on</strong>, S. R. (1998). "Phenolic-resin-derived activated carb<strong>on</strong>s." Applied <strong>Catalysis</strong> A:<br />

General 173(2): 289-311.<br />

2 Gun'ko, V. M. and S. V. Mikhalovsky (2004). "Evaluati<strong>on</strong> of slitlike porosity of carb<strong>on</strong><br />

adsorbents." Carb<strong>on</strong> 42(4): 843-849.<br />

3 Pigamo, A., M. Bess<strong>on</strong>, et al. (2002). "Effect of oxygen functi<strong>on</strong>al groups <strong>on</strong> synthetic<br />

carb<strong>on</strong>s <strong>on</strong> liquid phase oxidati<strong>on</strong> of cyclohexan<strong>on</strong>e." Carb<strong>on</strong> 40(8): 1267-1278.<br />

4 EU c<strong>on</strong>tract BRPR CT97-0561, Novel Carb<strong>on</strong> Supports <strong>for</strong> Liquid Phase catalysts -<br />

CONSTRUCT<br />

5 EU c<strong>on</strong>tract G5RD-CT-2002-00724, Compact Reactor and Carb<strong>on</strong> Supported Catalyst<br />

System <strong>for</strong> Multiphase air Oxidati<strong>on</strong><br />

6 Koresh, J. and A. Soffer (1984). "185. A molecular sieve carb<strong>on</strong> membrane <strong>for</strong><br />

c<strong>on</strong>tinuous process gas separati<strong>on</strong>." Carb<strong>on</strong> 22(2): 225<br />

7 J<strong>on</strong>es, C. W. and W. J. Koros (1994). "Carb<strong>on</strong> molecular sieve gas separati<strong>on</strong><br />

membranes-I. Preparati<strong>on</strong> and characterizati<strong>on</strong> based <strong>on</strong> polyimide precursors." Carb<strong>on</strong><br />

32(8): 1419-1425.<br />

8 Linkov, V. M., R. D. Sanders<strong>on</strong>, et al. (1994). "Carb<strong>on</strong> Membranes from Precursors<br />

C<strong>on</strong>taining Low-Carb<strong>on</strong> Residual Polymers." Polymer <str<strong>on</strong>g>Internati<strong>on</strong>al</str<strong>on</strong>g> 35(3): 239-242.<br />

9 Tanihara, N., H. Shimazaki, et al. (1999). "Gas permeati<strong>on</strong> properties of asymmetric<br />

carb<strong>on</strong> hollow fiber membranes prepared from asymmetric polyimide hollow fiber."<br />

Journal of Membrane Science 160(2): 179-186<br />

10 Elisa Barbosa-Coutinho, Vera M. M. Salim and Cristiano Piacsek Borges, Carb<strong>on</strong><br />

Volume 41, Issue 9 , 2003, Pages 1707-1714<br />

11 Sznejer, G. A., I. Efremenko, et al. (2004). "Carb<strong>on</strong> membranes <strong>for</strong> high temperature gas<br />

separati<strong>on</strong>s: Experiment and theory." Aiche Journal 50(3): 596-610.<br />

12 Rao, M. B. and S. Sircar (1993). "Nanoporous Carb<strong>on</strong> Membranes <strong>for</strong> Separati<strong>on</strong> of Gas-<br />

Mixtures by Selective Surface Flow." Journal of Membrane Science 85(3): 253-264.<br />

13 Centeno, T. A. and A. B. Fuertes (2001). "Carb<strong>on</strong> molecular sieve membranes derived<br />

from a phenolic resin supported <strong>on</strong> porous ceramic tubes." Separati<strong>on</strong> and Purificati<strong>on</strong><br />

Technology 25(1-3): 379-384.<br />

14 Centeno, T. A. and A. B. Fuertes (2003). "Influence of separati<strong>on</strong> temperature <strong>on</strong> the<br />

per<strong>for</strong>mance of adsorpti<strong>on</strong>-selective carb<strong>on</strong> membranes." Carb<strong>on</strong> 41(10): 2016-2019.<br />

15 Fuertes, A. B. and I. Menendez (2002). "Separati<strong>on</strong> of hydrocarb<strong>on</strong> gas mixtures using<br />

phenolic resin-based carb<strong>on</strong> membranes." Separati<strong>on</strong> and Purificati<strong>on</strong> Technology 28(1):<br />

29-41.<br />

16 Centeno, T. A., J. L. Vilas, et al. (2004). "Effects of phenolic resin pyrolysis c<strong>on</strong>diti<strong>on</strong>s<br />

<strong>on</strong> carb<strong>on</strong> membrane per<strong>for</strong>mance <strong>for</strong> gas separati<strong>on</strong>." Journal of Membrane Science<br />

228(1): 45-54.<br />

17 Abate, S., G. Centi, et al. (2005). "Preparati<strong>on</strong>, per<strong>for</strong>mances and reacti<strong>on</strong> mechanism <strong>for</strong><br />

the synthesis of H2O2 from H2 and O2 based <strong>on</strong> palladium membranes." <strong>Catalysis</strong> Today<br />

<strong>Catalysis</strong> in Membrane Reactors 104(2-4): 323-328.<br />

18 Melada, S., F. Pinna, et al. (2006). "Direct synthesis of H2O2 <strong>on</strong> m<strong>on</strong>ometallic and<br />

bimetallic catalytic membranes using methanol as reacti<strong>on</strong> medium." Journal of <strong>Catalysis</strong><br />

237(2): 213-219.<br />

12

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