4.5 Article

Metal leaching and toxicity of denitrifying woodchip bioreactor outflow?Potential reuse application

期刊

AQUACULTURAL ENGINEERING
卷 93, 期 -, 页码 -

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.aquaeng.2020.102129

关键词

Aquatic life; Effluent; Recirculating aquaculture systems; Salmonid

资金

  1. USDA Agricultural Research Service [59-8082-5-001]

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The denitrifying woodchip bioreactor is capable of remediating nitrate-rich water, but may leach detrimental woodbound contaminants which could affect the reuse of outflow water. Outflow water quality from two different hardwood species showed minor differences, with concentrations of total ammonia nitrogen and tannins-lignin being influenced by operational phases.
The denitrifying woodchip bioreactor is designed to remediate nitrate-rich water, including those produced from aquaculture effluents. Reuse of treated bioreactor outflows in recirculating aquaculture would offer considerable water savings and valuable alkalinity recuperation. However, such bioreactors may leach detrimental woodbound contaminants, preventing outflow reuse. To determine water reuse potential, woodchip media from two hardwood species (white ash, Fraxinus americana; Norway maple, Acer platanoides) were evaluated for 206 d under a range of operating conditions (start-up, steady-state, reducing conditions, and drying-rewetting cycles) for a spectrum of potentially harmful dissolved contaminants. Aerated outflows also were evaluated for acute and chronic toxicity to the biologically sensitive invertebrate Ceriodaphnia dubia. Dissolved metal leaching subsided within the first few weeks of operation, though initial concentrations of copper and zinc were detected at concentrations of concern. Elevated concentrations of tannins-lignin and total ammonia nitrogen were detected throughout the study and were influenced by operational phase. Acute toxicity was not generally detected, though chronic toxicity was observed during drying-rewetting cycles in the maple outflows. The measured toxicity was not correlated with water chemistry, indicating an additive effect of several toxicants. Overall, significant differences in outflow water quality between ash and maple wood species were negligible. Results indicated that bioreactor outflows may be applicable for aquacultural reuse, though reusing outflows immediately following start-up or restarting after a dry period would not be recommended.

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