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Titlebook: Biotechnology for Fuels and Chemicals; The Twenty-Third Sym Mark Finkelstein,James D. McMillan,Brian H. Daviso Book 2002 Humana Press Inc.

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Improvement of Photosynthetic CO2 Fixation at High Light Intensity Through Reduction of Chlorophyll e (DES15) with 700 ppm of CO. in air. The light-saturated rate for CO. assimilation in the mutant DS521 was about two times higher (187 μmol/[h·mg of chl]) than that of the wild type, DES15 (95 μmol/[h·mg of chl]). Significantly, a partial linearization of the light-saturation curve was also observe
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Dilute-Acid Hydrolysis of Sugarcane Bagasse at Varying Conditionsdemonstrated that the dry matter concentration in the reaction slurry has a negative effect on the xylose yield that can be compensated by higher concentrations of sulfuric acid owing to a positive interaction between acid concentration and dry matter contents.
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Hydrogen Production by the Thermophilic Bacterium , maximize hydrogen production and minimize production of hydrogen sulfide, inorganic sulfur donors are avoided and the cysteine concentration in the medium is increased. We and others have demonstrated that different members of the order . utilize a wide variety of feedstocks, including complex carb
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Steady-State Measurements of Lactic Acid Production in a Wild-Type and a Putative ,-Lactic Acid Dehy676. D-lactic acid was detected in the cell-free spent fermentation medium of the mutant, but this could be owing to the presence of a racemase enzyme. Under the steady-state growth conditions provided by the chemostat, the specific rate of glucose consumption was altered at a constant growth rate o
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ely technical details in this important research area. The preface for each session is included in the introductions. Session Chairpersons and Co-Chairpersons Session 1: Advances in Biomass Production and Processing Chair: Sharon Shoemaker, University of California, Davis, CA Co-Chair: David Boron, US Departm978-1-4612-6621-1978-1-4612-0119-9
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