Download e-book for kindle: Biotechnology for Biofuel Production and Optimization by Carrie A Eckert, Cong T Trinh

By Carrie A Eckert, Cong T Trinh

ISBN-10: 0081000537

ISBN-13: 9780081000533

ISBN-10: 0444634754

ISBN-13: 9780444634757

Biotechnology for Biofuel construction and Optimizationis thecompilation of present study findings that conceal the whole strategy of biofuels construction from manipulation of genes and pathways to organisms and renewable feedstocks for effective biofuel creation in addition to diverse cultivation suggestions and technique scale-up issues. This booklet captures contemporary breakthroughs within the interdisciplinary parts of structures and artificial biology, metabolic engineering, and bioprocess engineering for renewable, purifier resources of strength.

    • Describes cutting-edge engineering of metabolic pathways for the construction of quite a few gasoline molecules
    • Discusses contemporary advances in man made biology and metabolic engineering for rational layout, development, review of novel pathways and telephone chassis
    • Covers genome engineering applied sciences to handle complicated biofuel-tolerant phenotypes for improved biofuel construction in engineered chassis
    • Presents using novel microorganisms and multiplied substrate usage recommendations for creation of distinct gas molecules
    • Explores biohybrid equipment for harvesting bioenergy
    • Discusses bioreactor layout and optimization of scale-up

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23. Jones DT, Woods DR. Acetone-butanol fermentation revisited. Microbiol Rev 1986;50:484–524. 24. Yang S-T, El Enshasy Hesham, Thongchul Nuttha. Bioprocessing technologies in biorefinery for sustainable production of fuels, chemicals, and polymers. Hoboken, New Jersey: Wiley; 2013. 25. Lütke-Eversloh T, Bahl H. Metabolic engineering of Clostridium acetobutylicum: recent advances to improve butanol production. Curr Opin Biotechnol 2011;22:634–47. 26. Dekishima Y, Lan EI, Shen CR, Cho KM, Liao JC.

1 82. Minty JJ, Singer ME, Scholz SA, Bae CH, Ahn JH, Foster CE, et al. Design and characterization of synthetic fungal-bacterial consortia for direct production of isobutanol from cellulosic biomass. Proc Natl Acad Sci 2013;110:14592–7. 1 83. Brethauer S, Studer MH. Consolidated bioprocessing of lignocellulose by a microbial consortium. Energy Environ Sci 2014;7:1446–53. 1 84. Worden RM, Grethlein AJ, Jain MK, Datta R. Production of butanol and ethanol from synthesis gas via fermentation. Fuel 1991;70:615–9.

44,45,72,74,175,176 Titer improvements for each organism have been made using traditional metabolic engineering techniques such as gene knockout and overexpression. Higher tolerance to alcohols and other stresses could increase the yield and productivity in a large scale fermentation while no large scale process that uses these hosts is known. Better characterization of metabolic pathways in these strains and further strain engineering could yield increased titers in each of these organisms. Some organisms, such as C.

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Biotechnology for Biofuel Production and Optimization by Carrie A Eckert, Cong T Trinh


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