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Cellular automata modeling of continuous stirred tank reactors
Haret Codratian Rosu,Jaime Enrique Pérez-Terrazas,Vrani Ibarra-Junquera 한국화학공학회 2008 Korean Journal of Chemical Engineering Vol.25 No.3
The classical dynamical systems model of continuous stirred tank reactors (CSTR) in which a first order chemical reaction takes place is reformulated in terms of the stochastic cellular automata procedure developed in the works of Seyborg [2] and Neuforth [3], which is extended by including the feed flow of chemical reactants. We show that this cellular automata model is able to simulate the dilution rate and the mixing process in the CSTR, as well as the details of the heat removal due to the jacket. The cellular automata approach is expected to be of considerable applicability at any industrial scale and especially for any type of microchemical system
Juan Buenrostro-Figueroa,Heliodoro de la Garza-Toledo,Vrani Ibarra-Junquera,Cristóbal Noe Aguilar-González 한국식품과학회 2010 Food Science and Biotechnology Vol.19 No.5
In this study, 2 Trichoderma strains (T-Ⅰ and T-ⅡI)were evaluated for the production, by submerged (SmF)and solid state fermentation (SSF) of an enzymatic complex with the capacity to degrade the cell components of mango peels, using these as support (in SSF) and source of nutrients. Highest enzymatic activity (7,552.5 units of endo-glucanase/L) was found in T-II by SSF. Efficiency of this crude enzymatic extract in the extraction of mango juice was evaluated, improving the yield up to 79%,representing an alternative to give an added value of mango peels improving the yields of production of mango juice.