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Genomic resources in lake sturgeon

Principal Investigator: Andrew DeWoody
Affiliation: Purdue University
Initiation Date: 2010
  • Analyze lake sturgeon Acipenser fulvescens DNA sequence data for genetic markers

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Food webs in the 21st century: exploration of new enabling technologies to understand and predict changes in aquatic food webs and impacts of ecosystems

Principal Investigator: Paul Brown
Affiliation: Purdue University
Initiation Date: 2010
  • Explore application of a new enabling technology to aquatic food web dynamics
  • Assess whether organisms within trophic levels have unique chemical/nutrient compositions

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Real-time online access to fish consumption advice

Principal Investigator: Charles Santerre
Affiliation: Purdue University
Initiation Date: 2010
  • Develop a software platform to provide real-time, online access to advisories for consumption of recreationally-caught fish

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Some linked publications may not fully meet current ADA accessibility standards and are provided for historical and archival purposes. If you need a plain-text screen or reader-friendly version of any document on our website, please contact us and we will do our best to provide one.


Assessing consumer preferences and demand for fish: a market analysis of the Midwest aquaculture industry

Principal Investigator: David Ortega
Affiliation: Purdue University
Initiation Date: 2010
  • Identify consumer preferences and demand for fish products
  • Estimate consumers’ willingness-to-pay for important food safety and quality informational attributes embedded in aquaculture products
  • Assess the competitiveness of aquaculture products with regards to food safety versus imported aquaculture products

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Some linked publications may not fully meet current ADA accessibility standards and are provided for historical and archival purposes. If you need a plain-text screen or reader-friendly version of any document on our website, please contact us and we will do our best to provide one.


Energy efficient and sustainable aquaculture water treatment Using microbial fuel cells and membrane-supported biofilms

Principal Investigator: Robert Nerenberg
Affiliation: University of Notre Dame
Initiation Date: 2010
  • Investigate the feasibility of a new treatment process, based on microbial fuel cells and membrane-supported biofilms reactors for removing nitrogen and sulfide in simulated recirculating aquaculture systems wastewater.
  • Determine the nitrogen and sulfide removal efficiencies, and levels of electric power production
  • Test different reactor configurations under variable loading conditions

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Some linked publications may not fully meet current ADA accessibility standards and are provided for historical and archival purposes. If you need a plain-text screen or reader-friendly version of any document on our website, please contact us and we will do our best to provide one.


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