Hydrogen production using Purple Non-Sulfur Bacteria (PNSB) cultivated under natural or artificial light conditions with synthetic or fermentation derived substrates / / Alessandra Adessi.

The aim of this thesis was to verify the feasibility of the hydrogen production process with purple non sulfur bacteria both under sunlight irradiation in an up-scaled system and with the use of low cost substrates. Among the products offermentations tested the best results were obtained with a medi...

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Place / Publishing House:[Place of publication not identified] : : Firenze University Press,, 2013.
©2013
Year of Publication:2013
Language:English
Physical Description:1 online resource (134 pages)
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245 1 0 |a Hydrogen production using Purple Non-Sulfur Bacteria (PNSB) cultivated under natural or artificial light conditions with synthetic or fermentation derived substrates /  |c Alessandra Adessi. 
246 |a Hydrogen production using Purple Non-Sulfur Bacteria  
264 1 |a [Place of publication not identified] :  |b Firenze University Press,  |c 2013. 
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300 |a 1 online resource (134 pages) 
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588 |a Description based on: online resource; title from PDF information screen (directory.doabooks.org, viewed June 27, 2023). 
520 |a The aim of this thesis was to verify the feasibility of the hydrogen production process with purple non sulfur bacteria both under sunlight irradiation in an up-scaled system and with the use of low cost substrates. Among the products offermentations tested the best results were obtained with a medium derived from vegetable wastes. The use of a genetically modified strain of Rhodopseudomonas palustris insensitive to ammonium opened the way towards the use of wastes with attainment of high hydrogen yields also in inhibiting conditions. The experimentation carried out under natural irradiation demonstrated the full feasibility of the process using sunlight instead of artificial light in a semi-pilot reactor: the production rates were the highest so far reported for comparable outdoor systems. 
504 |a Includes bibliographical references and index. 
650 0 |a Hydrogen  |x Biotechnology. 
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