Advanced wastewater treatment engineering: investigating membrane fouling in both rotational and static membrane bioreactor systems using empirical modelling

  • Franck Anderson Jones
  • , Parneet Paul

Research output: Contribution to journalArticlepeer-review

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Abstract

Advanced wastewater treatment using membranes are popular environmental system processes since they allow reuse and recycling. However, fouling is a key limiting factor and so proprietary systems such as Avanti's RPU-185 Flexidisks membrane bioreactor (MBR) use novel rotating membranes to assist in ameliorating it. In earlier research, this rotating process was studied by creating a simulation model based on first principles and traditional fouling mechanisms. In order to directly compare the potential benefits of this rotational system, this follow-up study was carried out using Avanti's newly developed static (non-rotating) Flexidisks MBR system. The results from operating the static pilot unit were simulated and modelled using the rotational fouling model developed earlier however with rotational switching functions turned off and rotational parameters set to a static mode. The study concluded that a rotating MBR system could increase flux throughput when compared against a similar static system. It is thought that although the slowly rotating spindle induces a weak crossflow shear, it is still able to even out cake build up across the membrane surface, thus reducing the likelihood of localised critical flux being exceeded at the micro level and lessening the potential of rapid trans-membrane pressure increases at the macro level.
Original languageEnglish
Article number100
JournalInternational Journal of Environmental Research and Public Health
Volume13
Issue number1
DOIs
Publication statusPublished - 5 Jan 2016
Externally publishedYes

Bibliographical note

Note: This work was supported by the Royal Society.

Keywords

  • Chemical engineering
  • cake filtration
  • fouling
  • membrane bioreactor (MBR)
  • modelling
  • rotating membranes
  • wastewater

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