Microbial Consortium for Ethanol Production from Sugarcane Bagasse: Microbial Saccharification and ethanol fermentation of cellulosic biomass

 
9783846510377: Microbial Consortium for Ethanol Production from Sugarcane Bagasse: Microbial Saccharification and ethanol fermentation of cellulosic biomass

Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils' fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates.

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Dr.Naureen Chaudhary completed her Ph.D. in 2008 from University of the Punjab, Lahore. Prof.Dr.Javed I Qazi supervises research of Ph.D. and graduate students of the Department. His main research areas focus Bioremediatoin, Bioenergy and Single cell protein. Biofuels' generation through solar energy managed process plants is under consideration.

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Book Description Book Condition: New. Publisher/Verlag: LAP Lambert Academic Publishing | Microbial Saccharification and ethanol fermentation of cellulosic biomass | Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils' fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates. | Format: Paperback | Language/Sprache: english | 176 pp. Bookseller Inventory # K9783846510377

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Book Description LAP Lambert Acad. Publ. Okt 2011, 2011. Taschenbuch. Book Condition: Neu. Neuware - Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils' fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates. 176 pp. Englisch. Bookseller Inventory # 9783846510377

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Book Description LAP Lambert Acad. Publ. Okt 2011, 2011. Taschenbuch. Book Condition: Neu. Neuware - Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils' fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates. 176 pp. Englisch. Bookseller Inventory # 9783846510377

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Book Description LAP Lambert Acad. Publ. Okt 2011, 2011. Taschenbuch. Book Condition: Neu. This item is printed on demand - Print on Demand Neuware - Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils' fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates. 176 pp. Englisch. Bookseller Inventory # 9783846510377

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Book Description LAP Lambert Academic Publishing, Germany, 2011. Paperback. Book Condition: New. Aufl.. Language: English . Brand New Book. Bioethanol has been conceived as a sustainable clean future energy source. To replace the fossils fuels, it has to be produced at large and sustainable scale, which is only possible if the cellulosic biomass is mobilized for this purpose. This book describes workable strategies of isolating and cultivating microorganisms capable of saccharifying and fermenting the abundantly available renewable resource into ethanol exemplified in this investigation by Sugarcane Bagasse. Both bacteria and yeasts capable of simultaneous saccharification and fermentation at elevated temperatures appear to be good candidates for obtaining bioethanol from cellulosic biomass. Ethanol tolerance and thermoduric nature of the microbes reported here are imperative features required for exploiting them for the provision of ethanol in a single bioreactor. The protocols described can be worked out for other agro/food industrial wastes rich in soluble and hydrolyzable carbohydrates. Bookseller Inventory # KNV9783846510377

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