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Average shear rate for non-Newtonian fluids in a concentric-tube airlift bioreactor

Texto completo
Autor(es):
Cerri, M. O. ; Futiwaki, L. ; Jesus, C. D. F. ; Cruz, A. J. G. ; Badino, A. C. [5]
Número total de Autores: 5
Tipo de documento: Artigo Científico
Fonte: Biochemical Engineering Journal; v. 39, n. 1, p. 51-57, Apr. 2008.
Área do conhecimento: Engenharias - Engenharia Química
Assunto(s):Reatores bioquímicos   Geologia estrutural   Cisalhamento   Fluxo dos gases
Resumo

In the present study, a simple methodology for evaluating the average shear rate (over(y, ?)av) in an internal concentric-tube airlift reactor has been developed for non-Newtonian systems. The volumetric oxygen transfer coefficient (kLa) was chosen as the appropriate characteristic parameter to evaluate the average shear rate (over(y, ?)av) because the oxygen transfer occurs through the interfacial area of the air bubbles distributed evenly throughout the bioreactor. The average shear rate (over(?, ?)av) values of up to 9300 s-1 were estimated as a function of the gas velocity in the riser (0.0094 = UGR = 0.0943 m s-1), of the rheological parameters of the fluid (0.180 = K = 1.833 Pa sn and 0.234 = n = 0.461), and of the volumetric oxygen transfer coefficient (0.0056 = kLa = 0.0609 s-1). Profiles of the over(y, ?)av as a function of the gas velocity in the riser (UGR) displayed different behaviors from those of the literature since over(y, ?)av increased up to a maximum value and then decreased with an increase in the UGR. The shear rate estimated by the proposed methodology lay within the range of the correlation values in the literature. Unlike other correlations in the literature, the average shear rate in the present study (over(y, ?)av) is estimated considering the rheological parameters of the fluid, the volumetric oxygen transfer coefficient (kLa), and the mass transfer parameter, which is a function of the operating conditions and the geometry of the bioreactor. (AU)

Processo FAPESP: 05/55079-4 - Produção e purificação de ácido clavulânico, cefamicina C e outros metabolitos bioativos de Streptomyces
Beneficiário:Carlos Osamu Hokka
Modalidade de apoio: Auxílio à Pesquisa - Temático
Processo FAPESP: 03/11722-5 - Producao de acido clavulanico em biorreatores convencional e airlift.
Beneficiário:Alberto Colli Badino Junior
Modalidade de apoio: Auxílio à Pesquisa - Regular