作者
V Montalescot, T Rinaldi, R Touchard, S Jubeau, M Frappart, P Jaouen, P Bourseau, L Marchal
发表日期
2015/11/30
期刊
Bioresource Technology
卷号
196
页码范围
339-346
出版商
Elsevier
简介
A study of cell disruption by bead milling for two microalgae, Nannochloropsis oculata and Porphyridium cruentum, was performed. Strains robustness was quantified by high-pressure disruption assays. The hydrodynamics in the bead mill grinding chamber was studied by Residence Time Distribution modeling. Operating parameters effects were analyzed and modeled in terms of stress intensities and stress number. RTD corresponded to a 2 CSTR in series model. First order kinetics cell disruption was modeled in consequence. Continuous bead milling was efficient for both strains disruption. SI–SN modeling was successfully adapted to microalgae. As predicted by high pressure assays, N. oculata was more resistant than P. cruentum. The critical stress intensity was twice more important for N. oculata than for P. cruentum. SI–SN modeling allows the determination of operating parameters minimizing energy …
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