International audienceLactic acid is an important molecule for biopolymer production that can be obtained by biological processes. This work deals with the control of the lactic acid concentration in its production bioprocess using wheat flour as substrate. An adaptive control strategy for the simultaneous saccharification, proteins hydrolysis and fermentation (SSPHF) continuous process of lactic acid production is proposed in order to regulate the lactic acid concentration to the target value. The latter is determined so that the lactic acid productivity is maximized. The control strategy effectiveness and robustness are illustrated by means of experimental results
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceLactic acid is an important molecule for biopolymer production that can be obt...
International audienceLactic acid is an important molecule for biopolymer production that can be obt...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceThe key feature of this paper is the development of a control strategy for the...
International audienceThe key feature of this paper is the development of a control strategy for the...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
Cette thèse de doctorat porte sur l’optimisation du bioprocédé de production d’acide lactique à part...
Cette thèse de doctorat porte sur l’optimisation du bioprocédé de production d’acide lactique à part...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceLactic acid is an important molecule for biopolymer production that can be obt...
International audienceLactic acid is an important molecule for biopolymer production that can be obt...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceIn this study, a control strategy for lactic acid production process from whea...
International audienceThe key feature of this paper is the development of a control strategy for the...
International audienceThe key feature of this paper is the development of a control strategy for the...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
This PhD thesis focuses on the optimization of the bioprocess of lactic acid production from wheat f...
Cette thèse de doctorat porte sur l’optimisation du bioprocédé de production d’acide lactique à part...
Cette thèse de doctorat porte sur l’optimisation du bioprocédé de production d’acide lactique à part...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...
International audienceA kinetic model of the simultaneous saccharification, protein hydrolysis, and ...