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Evaluation of a novel choanoid fluidized bed bioreactor for future bioartificial livers 被引量:8
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作者 Cheng-Bo Yu Xiao-Ping Pan +6 位作者 Liang Yu Xiao-Peng Yu Wei-Bo Du Hong-Cui Cao Jun Li Ping Chen Lan-Juan Li 《World Journal of Gastroenterology》 SCIE CAS 2014年第22期6869-6877,共9页
AIM: To construct and evaluate the functionality of a choanoid-fluidized bed bioreactor (CFBB) based on microencapsulated immortalized human hepatocytes.
关键词 choanoid Fluidized bed BIOREACTOR Immortalized human hepatocytes Bioartificial liver
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Hydrodynamics characterization of a choanoid fluidized bed bioreactor used in the bioartificial liver system: Fully resolved simulation with a fctitious domain method
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作者 Jingyuan Sun Zhaosheng Yu Shangjun Ye 《Particuology》 SCIE EI CAS CSCD 2017年第3期39-48,共10页
Choanoid fluidized bed bioreactors (CFBBs) are newly developed core devices used in bioartificial liver- support systems to detoxify blood plasma of patients with microencapsulated liver cells. Direct numerical simu... Choanoid fluidized bed bioreactors (CFBBs) are newly developed core devices used in bioartificial liver- support systems to detoxify blood plasma of patients with microencapsulated liver cells. Direct numerical simulations (DNS) with a direct-forcing/fictitious domain (DF/FD) method were conducted to study the hydrodynamic performance of a CFBB. The effects of particle-fluid density ratio, particle number, and fil- ter screens preventing particles flowing out of the reactor were investigated. Depending on density ratio, two flow patterns are evident: the circulation mode in which the suspension rises along one sidewall and descends along the other sidewall, and the non-circulation mode in which the whole suspension roughly flows upward. The circulation mode takes place under non-neutral-buoyancy where the particle sedimentation dominates, whereas the non-circulation mode occurs under pure or near-neutral buoy- ancy with particle-fluid density ratios of unity or near unity. With particle-fluid density ratio of 1.01, the bioartificial liver reactor performs optimally as the significant particle accumulation existing in the non-circulation mode and the large shear forces on particles in the circulation mode are avoided. At higher particle volume fractions, more particles accumulate at the filter screens and a secondary counter circulation to the primary flow is observed at the top of the bed. Modelled as porous media, the filter screens play a negative role on particle fluidization velocities; without screens, particles are fluidized faster because of the higher fluid velocities in the jet center region. This work extends the DF/FD-based DNS to a fluidized bed and accounts for effects from inclined side walls and porous media, providing some hydrodynamics insight that is important for CFBB design and operation optimization. 展开更多
关键词 choanoid fluidized-bed bioreactor Particle-laden flows Direct numerical simulation Direct-forcing/fctitious domain method Hydrodynamic characteristics
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