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Process optimization‖ J. Wood Chem. Technol; 7: 373–403. , (2000). ―Comparison of SHF and SSF processes for the bioconversion of steam-exploded wheat straw‖. Journal of Industrial Microbiology & Biotechnology; 25: 184–192. , (2005). ‖ Appl. Biochem. Biotechnol. – Part A Enzyme Eng. Biotechnol; 124: 1069–1079. , (1987). ―Optimization of steam explosion as method for increasing susceptibility of sugarcane bagasse to enzymatic saccharification‖. Biotechnol. Bioeng; 29: 733–741. [45] P. Alvira, E. Tomás-Pejó, M.

2005; de Morais and Costa, 2007; Ratledge and Cohen, 2008). Algae are considered to have the highest growth potential among all the photoautotrophic organisms such as higher plants. , 2007), mainly by the aquatic phototrophs, cyanobacteria and algae. These microalgae grow faster and are able to produce a daily biomass of 20 g m-2 dry weight. , 2011). Besides their advantages over crop plants in terms of their cultivation requirements, there exist several other salient features which make algae an excellent candidate for renewable bioethanol applications.

Tryptophan 272: an essential determinant of crystalline cellulose degradation by Trichodermareeseicellobiohydrolase Cel6A‖. FEBS Lett; 429(3): 341-346. , Lee Y-H, Beardmore D H (1980). ―Mechanism of the enzymatic Hydrolysis of cellulose: Effects of major structural features of cellulose on enzymatic hydrolysis‖. Biotechnol Bioeng; 22: 177-199. , (1999). ―Utilization of biomass for the supply of energy carriers‖. Applied Microbiology and Biotechnology; 52: 741– 755. [78] Yan Lin, Shuzo Tanaka. (2006) ―Ethanol fermentation from biomass resources: current state and prospects‖.

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