Pregled bibliografske jedinice broj: 1013044
Mathematical model development of enzyme catalyzed aldol addition
Mathematical model development of enzyme catalyzed aldol addition // Technical Approaches to the Study of Extremophiles 2017
Alicante, Španjolska, 2017. (poster, nije recenziran, ostalo, znanstveni)
CROSBI ID: 1013044 Za ispravke kontaktirajte CROSBI podršku putem web obrasca
Naslov
Mathematical model development of enzyme catalyzed aldol addition
Autori
Česnik, Morana ; Sudar, Martina ; Vasić-Rački, Đurđa ; Roldan, Raquel ; Hernández, Karel ; Clapés, Pere ; Findrik Blažević, Zvjezdana
Vrsta, podvrsta i kategorija rada
Sažeci sa skupova, ostalo, znanstveni
Izvornik
Technical Approaches to the Study of Extremophiles 2017
/ - , 2017
Skup
Technical Approaches to the Study of Extremophiles, International Workshop
Mjesto i datum
Alicante, Španjolska, 26.06.2017. - 29.06.2017
Vrsta sudjelovanja
Poster
Vrsta recenzije
Nije recenziran
Ključne riječi
biocatalysis, aldol addition
Sažetak
Carbon-carbon bond formation between propionaldehyde and formaldehyde using the thermostable D-fructose-6-phosphate aldolase as a green and enantioselective catalyst was investigated. The reaction kinetics can be described by the double substrate Michaelis- Menten kinetics with included substrate inhibitions by formaldehyde and propanal. Mathematical model for the reaction in the batch reactor included self-addition of propanal catalyzed by FSA also described by Michaelis- Menten kinetics. Experiment performed in batch mode shows that the mathematical model describes the experimental data well. Due to inhibition by both substrates high concentration of the product cannot be achieved. Also, high substrate concentration cannot be used due to their negative effect on enzyme stability. Based on the model for reaction in batch reactor, conditions for fed batch reactor were simulated in order to produce higher amount of aldol product. Fed batch mode suits this reaction system better than batch mode, and once optimized it will give the high product concentrations.
Izvorni jezik
Engleski
POVEZANOST RADA
Projekti:
EK-H2020-635595 - Sustainable industrial processes based on a C-C bond-forming enzyme platform (CARBAZYMES) (Findrik Blažević, Zvjezdana, EK - H2020-LEIT-BIO-2014-1) ( CroRIS)
Profili:
Martina Sudar
(autor)
MORANA ČESNIK KATULIĆ
(autor)
Zvjezdana Findrik Blažević
(autor)
Đurđa Vasić-Rački
(autor)