E2.11 Aksuyek 2019 ReNUWIt Annual Meeting Poster

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Abstract/Contents

Abstract
Anaerobic secondary treatment of wastewater has the potential to convert wastewater treatment plants from major energy consumers into renewable power plants. The Staged Anaerobic Fluidized-bed Membrane Bioreactor (SAF- MBR) is a promising system capable of meeting US secondary effluent standards. Originally developed in South Korea (with ReNUWIt researcher Prof. Perry McCarty), the SAF-MBR was deployed as a pilot at the Codiga Resource Recovery Center (CR2C) test bed at Stanford. Successful startup of the system at CR2C has yielded a collaboration with an IAB partner (SVCW) to build a larger SAF-MBR at a local wastewater treatment plant. Ongoing research at CR2C aims to further improve hydraulic and treatment performance and manage dissolved methane. Future tests and will examine nutrient removal and management of sulfur species.

Description

Type of resource other
Date created May 2019

Creators/Contributors

Author Aksuyek, Emir
Author Shin, Chungheon
Author Tilmans, Sebastien
Author McCarty, Perry
Author Criddle, Craig

Subjects

Subject Re-inventing the Nation’s Urban Water Infrastructure
Subject ReNUWIt
Subject E2.11
Subject Efficient Engineered Systems
Subject Energy and resource recovery
Subject California
Subject Codiga Resource Recovery Center
Subject Silicon Valley Clean Water

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User agrees that, where applicable, content will not be used to identify or to otherwise infringe the privacy or confidentiality rights of individuals. Content distributed via the Stanford Digital Repository may be subject to additional license and use restrictions applied by the depositor.
License
This work is licensed under an Open Data Commons Attribution License v1.0.

Preferred citation

Preferred Citation
Aksuyek, E., Shin, C., Tilmans, S., McCarty, P. L., and Criddle, C.S. (2019). E2.11 Aksuyek 2019 ReNUWIt Annual Meeting Poster. Stanford Digital Repository. Available at: https://purl.stanford.edu/cv150nc6923

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Re-inventing the Nation's Urban Water Infrastructure (ReNUWIt)

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