05.01.2013 Views

Biofuels in Perspective

Biofuels in Perspective

Biofuels in Perspective

SHOW MORE
SHOW LESS

Create successful ePaper yourself

Turn your PDF publications into a flip-book with our unique Google optimized e-Paper software.

220 <strong>Biofuels</strong><br />

83. P. J. Silva, E. C. Van Den Ban, H. Wass<strong>in</strong>k, H. Haaker, B. de Castro, F. T. Robb, W. R. Hagen,<br />

Enzymes of hydrogen metabolism <strong>in</strong> Pyrococcus furiosus. Eur. J. Biochem.,. 267, 6541–6551<br />

(2000).<br />

84. M. Selig, K. B. Xavier, H. Santos and P. Schonheit,.Comparative analysis of Embden-Meyerhof<br />

and Entner-Doudoroff glycolytic pathways <strong>in</strong> hyperthermophilic archaea and the bacterium<br />

Thermotoga, Arch. Microbiol., 167, 217–32 (1997).<br />

85. T. Hansen, B. Schlicht<strong>in</strong>g and P. Schönheit, Glucose-6-phosphate dehydrogenase from the<br />

hyperthermophilic bacterium Thermotoga maritima: expression of the g6pd gene and characterization<br />

of an extremely thermophilic enzyme, FEMS Microbiol. Lett., 216, 249–53<br />

(2002).<br />

86. J. D. Bok, D. A. Yernool and D. E. Eveleigh, Purification, characterization, and molecular analysis<br />

of thermostable cellulases CelA and CelB from Thermotoga neapolitana, Appl. Environ.<br />

Microbiol., 64, 4774–4781 (1998).<br />

87. C. H. Verhees, S. W. M. Kengen, J. E. Tu<strong>in</strong><strong>in</strong>ga, G. J. Schut, M. W. W. Adams, W. M. de Vos<br />

and J. vander Oost, The unique features of glycolytic pathways <strong>in</strong> Archaea, Biochem. J., 375,<br />

231–246 (2003).<br />

88. S. W. M. Kengen, F. A. M. de Bok, N. D. van Loo, C. Dijkema, A. J. M. Stams and W. M. de Vos,<br />

Evidence for the operation of a novel Embden-Meyerhof pathway that <strong>in</strong>volves ADP-dependent<br />

k<strong>in</strong>ases dur<strong>in</strong>g sugar fermentation by Pyrococcus furiosus, J. Biol. Chem., 269, 17537–17541<br />

(1994).<br />

89. S. Mukund and M. W. W. Adams, Glyceraldehyde-3-phosphate ferredox<strong>in</strong> oxidoreductase, a<br />

novel tungsten-conta<strong>in</strong><strong>in</strong>g enzyme with a potential glycolytic role <strong>in</strong> the hyperthermophilic<br />

archaeon, Pyrococcus furiosus, J. Biol. Chem., 270, 8389–8392 (1995).<br />

90. S. W. M. Kengen, A. J. M. Stams and W. M. de Vos, Sugar metabolism of hyperthermophiles.<br />

FEMS Microbiol. Rev., 18, 119–137 (1996).<br />

91. K. Ma, R. Weiss and M. W. W. Adams, Characterization of sulfhydrogenase II from the<br />

hyperthermophilic Archaeon Pyrococcus furiosus and assessment of its role <strong>in</strong> sulfur reduction,<br />

J. Bacteriol., 182, 1864–1871 (2000).<br />

92. S. W. M. Kengen and A. J. M. Stams, Formation of L-alan<strong>in</strong>e as a reduced end product<br />

<strong>in</strong> carbohydrate fermentation by the hyperthermophilic archaeon Pyrococcus furiosus, Arch.<br />

Microbiol., 161, 168–175 (1994).<br />

93. K. Nath and D. Das, Improvement of fermentative hydrogen production: various approaches,<br />

Appl. Microbiol. Biotechnol., 65, 520–529 (2004).<br />

94. J. Woodward, S. M. Matt<strong>in</strong>gly, M. Danson, D. Hough, N. Ward and M. Adams, In vitro<br />

hydrogen production by glucose dehydrogenase and hydrogenase. Nature Biotechnol., 14,<br />

872–874 (1996).<br />

95. J. Woodward, M. Orr, K. Cordray and E. Greenbaum, Enzymatic production of biohydrogen,<br />

Nature, 405, 1014–1015 (2000).<br />

96. J. Woodward, N. I. Heyer, J. P. Getty, H. M. O’Neill, E. P<strong>in</strong>khassik and B. R. Evans, Efficient<br />

hydrogen production us<strong>in</strong>g enzymes of the pentose phosphate pathway, Proc. DOE Hydrog.<br />

Prog. Rev. NREL/CP-610-32405 (2002).<br />

97. S. Hattori, Y. Kamagata and H. Shoun, Thermacetogenium phaeum gen. nov., sp. nov., a strictly<br />

anaerobic, thermophilic syntrophic acetate-oxidiz<strong>in</strong>g bacterium, Int. J. Syst. Evol. Microbiol.,<br />

50, 1601–1605 (2000).<br />

98. A. Schnürer, B. Sch<strong>in</strong>k and B. H. Svenson, Clostridium ultunense sp. nov., a mesophilic<br />

bacterium oxidiz<strong>in</strong>g acetate <strong>in</strong> syntrophic association with a hydrogenotrophic methanogenic<br />

bacterium, Intl. J. Syst. Bacteriol., 46, 1145–1152 (1996).<br />

99. P. A. M. Claassen and T. de Vrije, Non-thermal production of pure hydrogen from biomass:<br />

HYVOLUTION, Int. J. Hydrogen Energy, 31, 1416 – 1423 (2006).

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!