Author:
Tetreault Joseph,Fogle Rachel,Guerdat Todd
Abstract
Operation and effluent treatment costs are limiting factors for the success of recirculating aquaculture systems (RAS) in meeting seafood demand in the United States. Adopting a capture-and-reuse waste management model similar to terrestrial agriculture farmers would allow RAS farmers to monetize effluent and offset production costs. The moisture content and nutrient profile of RAS effluent makes it a potential option for use as a hydroponic fertilizer. Treatment of RAS waste is needed to mineralize particulate-bound nutrients before becoming a viable hydroponic nutrient solution. Anaerobic treatment (AT), a method used by municipal and agricultural waste treatment facilities to reduce total solids, has been shown to successfully mineralize particulate-bound nutrients from RAS effluent. Continuously mixed anaerobic batch bioreactors were used to evaluate the degree to which AT may mineralize particulate-bound nutrients in solid RAS waste. Concentrations of twelve different macro- and micro-nutrients were analyzed in the waste before and after treatment. Effluent samples were analyzed to determine the fraction of each nutrient in the solid and aqueous forms. This study showed that AT is an effective method to mineralize particulate-bound nutrients in RAS effluent and the mineralization rate data may be used to design a pilot-scaled flow-through RAS effluent treatment system.
Funder
New Hampshire Sea Grant, University of New Hampshire
New Hampshire Agricultural Experiment Station
National Institute of Food and Agriculture
Reference62 articles.
1. The potential for integrated biological treatment systems in recirculating fish culture—A review
2. A Novel Zero Discharge Intensive Seawater Recirculating System for the Culture of Marine Fish
3. Recirculating Aquaculture;Timmons,2018
4. Waste Management in Aquaculture;Miller;Aquaculture,2002
5. Effluent Limitations Guidelines and New Source Performance Standards for the Concentrated Aquatic Animal Production Point Source Category,2004
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