Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?

Membrane bioreactors (MBR) combined with biological phosphorous treatment (Bio-P) has been investigated if that could be an alternative to the future expansion with conventional active sludge treatment at Lundåkra wastewater treatment plant (WWTP) in the proximity of Landskrona, Sweden.The results s...

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Bibliographic Details
Main Author: South, Nicholas
Format: Others
Language:Swedish
Published: Uppsala universitet, Institutionen för geovetenskaper 2014
Subjects:
MBR
Online Access:http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-220196
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spelling ndltd-UPSALLA1-oai-DiVA.org-uu-2201962014-07-02T05:13:37ZMembranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?sweSouth, NicholasUppsala universitet, Institutionen för geovetenskaperInstitutionen för Kemiteknik, Department of Chemical Engineering, Lund University2014MBRBio-PFilamentbildande bakterierBiologiskt reningsstegMembrane bioreactors (MBR) combined with biological phosphorous treatment (Bio-P) has been investigated if that could be an alternative to the future expansion with conventional active sludge treatment at Lundåkra wastewater treatment plant (WWTP) in the proximity of Landskrona, Sweden.The results showed that the surface demand in the biological treatment will be reduced with 67% with the MBR-alternative compared to a conventional activated sludge process. The nutrient removal in the MBR-solution was decreased or unchanged for nitrogen-, phosphorous- and organic parameters. However, the energy demand will increase with an estimated cost of approximately 1 million SEK annually. Moreover, the extra chemical consumption is estimated to cost 370 000 SEK annually.The disturbances caused by filamentous bacteria such as sludge dispersal could be resolved with MBR-technology because the membranes are not affected by these organisms. The Bio-P process combined with MBR-technology works if the wastewater recirculates from the membranes to an aerobic zone.In the proposal, there will be a new pre-treatment step, for instance hole screens. In addition, there will be an introduction of chemical precipitation in the biological treatment, use the present post-precipitation basin with lamella sedimentation as an overflow wastewater treatment and transform one of the clarifiers into a side stream hydrolysis. The new MBR-design will consist of a new basin built between the clarifiers and the lamella sedimentation building. An extended study of the MBR-alternative with respect to sludge treatment and hydraulics is required before it can be shown if that is a better solution than a conventional activated sludge process. Student thesisinfo:eu-repo/semantics/bachelorThesistexthttp://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-220196UPTEC W, 1401-5765 ; 14004application/pdfinfo:eu-repo/semantics/openAccess
collection NDLTD
language Swedish
format Others
sources NDLTD
topic MBR
Bio-P
Filamentbildande bakterier
Biologiskt reningssteg
spellingShingle MBR
Bio-P
Filamentbildande bakterier
Biologiskt reningssteg
South, Nicholas
Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
description Membrane bioreactors (MBR) combined with biological phosphorous treatment (Bio-P) has been investigated if that could be an alternative to the future expansion with conventional active sludge treatment at Lundåkra wastewater treatment plant (WWTP) in the proximity of Landskrona, Sweden.The results showed that the surface demand in the biological treatment will be reduced with 67% with the MBR-alternative compared to a conventional activated sludge process. The nutrient removal in the MBR-solution was decreased or unchanged for nitrogen-, phosphorous- and organic parameters. However, the energy demand will increase with an estimated cost of approximately 1 million SEK annually. Moreover, the extra chemical consumption is estimated to cost 370 000 SEK annually.The disturbances caused by filamentous bacteria such as sludge dispersal could be resolved with MBR-technology because the membranes are not affected by these organisms. The Bio-P process combined with MBR-technology works if the wastewater recirculates from the membranes to an aerobic zone.In the proposal, there will be a new pre-treatment step, for instance hole screens. In addition, there will be an introduction of chemical precipitation in the biological treatment, use the present post-precipitation basin with lamella sedimentation as an overflow wastewater treatment and transform one of the clarifiers into a side stream hydrolysis. The new MBR-design will consist of a new basin built between the clarifiers and the lamella sedimentation building. An extended study of the MBR-alternative with respect to sludge treatment and hydraulics is required before it can be shown if that is a better solution than a conventional activated sludge process.
author South, Nicholas
author_facet South, Nicholas
author_sort South, Nicholas
title Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
title_short Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
title_full Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
title_fullStr Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
title_full_unstemmed Membranbioreaktorteknik- en framtida lösning på Lundåkraverket? : Membrane bioreactors- A future solution at Lundåkra wastewater treatment plant?
title_sort membranbioreaktorteknik- en framtida lösning på lundåkraverket? : membrane bioreactors- a future solution at lundåkra wastewater treatment plant?
publisher Uppsala universitet, Institutionen för geovetenskaper
publishDate 2014
url http://urn.kb.se/resolve?urn=urn:nbn:se:uu:diva-220196
work_keys_str_mv AT southnicholas membranbioreaktorteknikenframtidalosningpalundakraverketmembranebioreactorsafuturesolutionatlundakrawastewatertreatmentplant
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