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Sumilation par SuperPro Designerme du Procede de Fabrication de L-lysine-HCl par C.glutamicume

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dc.contributor.author Djaballah, Yakoub
dc.contributor.author Chaibi, Haydar
dc.contributor.author Amichi, Hayet
dc.date.accessioned 2023-03-21T12:51:23Z
dc.date.available 2023-03-21T12:51:23Z
dc.date.issued 2018
dc.identifier.uri http://localhost:8080/xmlui/handle/123456789/2478
dc.description.abstract This study consists in optimizing the process of production of an amino acid (Llysine-HCl) by Corynebacterium glutamicum by using the software SuperPro Désigner® version 9.0 on the basis of the production process already done en 2015 updated according to the data of the current year (2018). The main objective is to obtain a maximum production of lysine-HCl found equal to 14870,251kg / batch with a cost of 159,6 million USD $ compared to the production of L-lysine-HCl according to the old process which is 14573,434 Kg / batch and with a cost of 169,235 USD$. The environmental study of the process revealed the impact of the outgoing biomass responsible for the need for a treatment of hazardous waste on the environment, so we realized by SuperPro designer a biomass treatment by anaerobic digestion (anaerobic digestion) to produce biogas, of which methane is considered as an energy source that can be used in several sectors and also reduce the severity of this biomass on the environment. en_US
dc.language.iso fr en_US
dc.publisher Université constantine 3 Salah boubnider, Faculté génie des procédés en_US
dc.subject optimization en_US
dc.subject environmental and economic impact en_US
dc.subject anaerobic en_US
dc.subject digestion en_US
dc.subject glucose en_US
dc.subject glutamicum en_US
dc.title Sumilation par SuperPro Designerme du Procede de Fabrication de L-lysine-HCl par C.glutamicume en_US


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