lastID = -279849
Skip to main content Skip to top navigation Skip to site search
Top of page
  • My citations options
    Web Back (from Web)
    Chicago Back (from Chicago)
    MLA Back (from MLA)
Close action menu

You need to login to use this feature.

Please wait a moment…
Please wait while we update your results...
Please wait a moment...
Loading icon
Description: Access Water
Context Menu
Description: OxyMem, The Flexiable MABR.
OxyMem, The Flexiable MABR.
  • Browse
  • Compilations
    • Compilations list
  • Subscriptions
Tools

Related contents

Loading related content

Workflow

No linked records yet

X
  • Current: 2022-05-04 13:38:47 Adam Phillips
  • 2020-03-30 23:11:52 Adam Phillips
  • 2020-03-30 23:11:51 Adam Phillips
  • 2020-03-27 15:56:41 Katherine Saltzman
  • 2020-03-27 15:56:40 Katherine Saltzman
  • 2020-03-26 23:40:49 Adam Phillips
  • 2020-02-23 14:51:33 Adam Phillips
  • 2020-02-23 14:51:32 Adam Phillips
  • 2020-02-01 02:42:48 Administrator
  • 2020-02-01 02:42:47 Administrator
Description: Access Water
  • Browse
  • Compilations
  • Subscriptions
Log in
0
Accessibility Options

Base text size -

This is a sample piece of body text
Larger
Smaller
  • Shopping basket (0)
  • Accessibility options
  • Return to previous
Description: OxyMem, The Flexiable MABR.
OxyMem, The Flexiable MABR.

OxyMem, The Flexiable MABR.

OxyMem, The Flexiable MABR.

  • New
  • View
  • Details
  • Reader
  • Default
  • Share
  • Email
  • Facebook
  • Twitter
  • LinkedIn
  • New
  • View
  • Default view
  • Reader view
  • Data view
  • Details

This page cannot be printed from here

Please use the dedicated print option from the 'view' drop down menu located in the blue ribbon in the top, right section of the publication.

screenshot of print menu option

Description: OxyMem, The Flexiable MABR.
OxyMem, The Flexiable MABR.
Abstract
The Membrane Aerated Biofilm Reactor (MABR) has moved from the pilot stage through the demonstration stage and is now a commercial available technology for the biological treatment of wastewater. The MABR is carrying on with the current trend of engineering reactors to provide specific conditions which take advantage of non-sterile environmental bio-technology processes. The counter diffusion of the oxygen and substrate in the membrane attached biofilm provid a unique and controllable environment for processes such as simultaneous nitrification/denitrification as well as high rate systems utilising pure Oxygen. The OxyMem MABR which utilised PDMS hollow fibre Membranes can be used in various configurations to achieve efficient and economical treatment outcomes
The Membrane Aerated Biofilm Reactor (MABR) has moved from the pilot stage through the demonstration stage and is now a commercial available technology for the biological treatment of wastewater. The MABR is carrying on with the current trend of engineering reactors to provide specific conditions which take advantage of non-sterile environmental bio-technology processes. The counter diffusion of...
Author(s)
Eoin SyronBarry Heffernan
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jun, 2017
ISSN1938-6478
DOI10.2175/193864717821494150
Volume / Issue2017 / 3
Content sourceNutrient Removal and Recovery Symposium
Copyright2017
Word count113

Purchase price $11.50

Get access
Log in Purchase content Purchase subscription
You may already have access to this content if you have previously purchased this content or have a subscription.
Need to create an account?

You can purchase access to this content but you might want to consider a subscription for a wide variety of items at a substantial discount!

Purchase access to 'OxyMem, The Flexiable MABR.'

Add to cart
Purchase a subscription to gain access to 18,000+ Proceeding Papers, 25+ Fact Sheets, 20+ Technical Reports, 50+ magazine articles and select Technical Publications' chapters.
Loading items
There are no items to display at the moment.
Something went wrong trying to load these items.
Description: OxyMem, The Flexiable MABR.
OxyMem, The Flexiable MABR.
Pricing
Non-member price: $11.50
Member price:
-279849
Get access
-279849
Log in Purchase content Purchase subscription
You may already have access to this content if you have previously purchased this content or have a subscription.
Need to create an account?

You can purchase access to this content but you might want to consider a subscription for a wide variety of items at a substantial discount!

Purchase access to 'OxyMem, The Flexiable MABR.'

Add to cart
Purchase a subscription to gain access to 18,000+ Proceeding Papers, 25+ Fact Sheets, 20+ Technical Reports, 50+ magazine articles and select Technical Publications' chapters.

Details

Description: OxyMem, The Flexiable MABR.
OxyMem, The Flexiable MABR.
Abstract
The Membrane Aerated Biofilm Reactor (MABR) has moved from the pilot stage through the demonstration stage and is now a commercial available technology for the biological treatment of wastewater. The MABR is carrying on with the current trend of engineering reactors to provide specific conditions which take advantage of non-sterile environmental bio-technology processes. The counter diffusion of the oxygen and substrate in the membrane attached biofilm provid a unique and controllable environment for processes such as simultaneous nitrification/denitrification as well as high rate systems utilising pure Oxygen. The OxyMem MABR which utilised PDMS hollow fibre Membranes can be used in various configurations to achieve efficient and economical treatment outcomes
The Membrane Aerated Biofilm Reactor (MABR) has moved from the pilot stage through the demonstration stage and is now a commercial available technology for the biological treatment of wastewater. The MABR is carrying on with the current trend of engineering reactors to provide specific conditions which take advantage of non-sterile environmental bio-technology processes. The counter diffusion of...
Author(s)
Eoin SyronBarry Heffernan
SourceProceedings of the Water Environment Federation
SubjectResearch Article
Document typeConference Paper
PublisherWater Environment Federation
Print publication date Jun, 2017
ISSN1938-6478
DOI10.2175/193864717821494150
Volume / Issue2017 / 3
Content sourceNutrient Removal and Recovery Symposium
Copyright2017
Word count113

Actions, changes & tasks

Outstanding Actions

Add action for paragraph

Current Changes

Add signficant change

Current Tasks

Add risk task

Connect with us

Follow us on Facebook
Follow us on Twitter
Connect to us on LinkedIn
Subscribe on YouTube
Powered by Librios Ltd
Powered by Librios Ltd
Authors
Terms of Use
Policies
Help
Accessibility
Contact us
Copyright © 2026 by the Water Environment Federation
Loading items
There are no items to display at the moment.
Something went wrong trying to load these items.
Description: WWTF Digital Boot 180x150
WWTF Digital (180x150)
Created on Jul 02
Websitehttps:/­/­www.wef.org/­wwtf?utm_medium=WWTF&utm_source=AccessWater&utm_campaign=WWTF
180x150
Eoin Syron# Barry Heffernan. OxyMem, The Flexiable MABR. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Web. 4 Apr. 2026. <https://www.accesswater.org?id=-279849CITANCHOR>.
Eoin Syron# Barry Heffernan. OxyMem, The Flexiable MABR. Alexandria, VA 22314-1994, USA: Water Environment Federation, 2018. Accessed April 4, 2026. https://www.accesswater.org/?id=-279849CITANCHOR.
Eoin Syron# Barry Heffernan
OxyMem, The Flexiable MABR.
Access Water
Water Environment Federation
December 22, 2018
April 4, 2026
https://www.accesswater.org/?id=-279849CITANCHOR