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Download e-book for iPad: Bioprocessing for Value-Added Products from Renewable by Shang-Tian Yang

Posted On April 20, 2018 at 2:28 pm by / Comments Off on Download e-book for iPad: Bioprocessing for Value-Added Products from Renewable by Shang-Tian Yang

By Shang-Tian Yang

ISBN-10: 0444521143

ISBN-13: 9780444521149

Bioprocessing for Value-Added items from Renewable assets offers a well timed assessment of latest and unconventional suggestions to fabricate high-value items in line with uncomplicated organic fabric. the present resource for many chemical compounds and fabrics is petroleum. Anticipation of its restricted destiny availability, besides list excessive costs has spurred curiosity in possible choices that would be either sustainable and cost-effective.In a truly established manner this e-book starts through describing the trendy applied sciences that shape the foundation for making a bio-based undefined. subsequent it lists a few of the organisms which are compatible for bioprocessing -from micro organism to algae- and it offers their particular features. those first elements set the degree for quite a few novel, experimental bioprocesses, reminiscent of the creation of medicinal chemical substances, the creation of chiral compounds and the layout of biofuel cells. Concludes with examples the place organic, renewable assets turn into a huge feedstock for large-scale business construction. Bioprocessing for Value-Added items from Renewable assets presents a distinct viewpoint of the and the sector and serves as an immense consultant in the direction of the long run. The e-book is appropriate for researchers, practitioners, scholars, and experts within the bioprocess and biotechnology fields.

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Extra resources for Bioprocessing for Value-Added Products from Renewable Resources: New Technologies and Applications

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Stark and U. von Stockar, In situ product removal (ISPR) in whole cell biotechnology during the last twenty years. Adv. Biochem Eng/Biotechnol. 80 (2003) 150-175. S. Department of Energy, DOE/GO-201995-2135, 2005. S. E. Dale, Global potential bioethanol production from wasted crops and crop residues, Biomass and Bioenergy 26 (2004) 361–375. J. Perez, J. Munoz-Dorado, T. de la Rubia, J. Martinez, Biodegradation and biological treatments of cellulose, hemicellulose and lignin: an overview, Int Microbiol 5 (2002) 53–63.

Regenberg, J. Forster, and J. Nielsen, In silico aided metabolic engineering of Saccharomyces cerevisiae for improved bioethanol production. Metabolic Eng. 8 (2006) 102111. A. Aristidou and M. Penttila, Metabolic engineering applications to renewable resource utilization. Curr. Opin. Biotechnol. 11 (2000) 187198. EuropaBio, White biotechnology: Gateway to a more sustainable future. EuropaBio, Brussels, Belgium. J. K. H. Davison, G. Britovsek, J. A. J. P. J. L. R. Mielenz, R. Murphy, R. Templer, T.

Therefore, elucidating the relationships between genotypes and phenotypes is essential for IME in particular and for other areas of biotechnology and biomedicine in general. Various approaches have been proposed for genotype-phenotype mapping. Of these, methods based on the stoichiometric matrix of a metabolic network, such as extreme pathway analysis (EP), elementary mode analysis (EM), and flux balance analysis (FBA), have been shown to be very useful [30−35]. The only prerequisite for these methods is the metabolic stoichiometric information, which can be obtained at the genome level from the metabolic network reconstructed from genome data as described above.

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Bioprocessing for Value-Added Products from Renewable Resources: New Technologies and Applications by Shang-Tian Yang

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