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A comprehensive investigation of filtration performance in submerged hollow fibre membrane modules with different fibre geometries
Wu,Ruiyu1; Su,Kuizu1; Wang,Zhidong1; Hao,Tianwei2; Liu,Shaogen3
2019-08-15
Source PublicationSeparation and Purification Technology
ISSN18733794 13835866
Pages93-100
Abstract

In this study, computational fluid dynamics simulation was performed to investigate the effects of fibre internal diameter (ID) and length on the filtration process and flux distribution during a dead-end, hollow fibre filtration. The model was combined with the Navier-Stokes and Darcy Brinkman equations to simulate a complete filtration run. A comprehensive membrane fouling mechanism, including reversible fouling resistance and irreversible fouling resistance, was considered. A moving fluid-solid boundary was adopted to evaluate sludge cake deposit along the fibre. Our results showed that non-uniform flux distribution was intensified with increase of fibre length, while an ID between 0.4 and 0.7 mm was optimal; it also demonstrated that an ID below 0.4 mm lead to drastic non-uniform flux distribution due to unfavourable hydrodynamic conditions in the internal channel. In actual filtration, the initial non-uniform flux distribution rapidly became uniform for a while, but over time the phenomenon of non-uniform flux distribution was re-established.

KeywordComputational Fluid Dynamics Flux Distribution Hollow Fibre Membrane Internal Diameter Membrane Fouling
DOI10.1016/j.seppur.2019.03.082
URLView the original
Language英語English
WOS IDWOS:000471085100010
Scopus ID2-s2.0-85063383030
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Document TypeJournal article
CollectionFaculty of Science and Technology
Corresponding AuthorSu,Kuizu; Hao,Tianwei
Affiliation1.Department of Civil EngineeringHefei University of Technology,Hefei,230009,China
2.Department of Civil & Environmental EngineeringUniversity of Macau,Macau,China
3.School of Environment and Energy EngineeringAnhui Jianzhu University,Hefei,230601,China
Corresponding Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Wu,Ruiyu,Su,Kuizu,Wang,Zhidong,et al. A comprehensive investigation of filtration performance in submerged hollow fibre membrane modules with different fibre geometries[J]. Separation and Purification Technology, 2019, 93-100.
APA Wu,Ruiyu., Su,Kuizu., Wang,Zhidong., Hao,Tianwei., & Liu,Shaogen (2019). A comprehensive investigation of filtration performance in submerged hollow fibre membrane modules with different fibre geometries. Separation and Purification Technology, 93-100.
MLA Wu,Ruiyu,et al."A comprehensive investigation of filtration performance in submerged hollow fibre membrane modules with different fibre geometries".Separation and Purification Technology (2019):93-100.
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