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Optimization and evaluation of a bottom substrate denitrification tank for nitrate removal from a recirculating aquaculture system
Authors:Wiboonluk Pungrasmi  Cholticha Playchoom and Sorawit Powtongsook
Institution:1. Department of Environmental Engineering, Faculty of Engineering, Chulalongkorn University, Bangkok 10330, Thailand
2. Center of Excellence for Marine Biotechnology, Department of Marine Science, Faculty of Science,Chulalongkorn University, Bangkok 10330, Thailand ;National Center for Genetic Engineering and Biotechnology, National Science and Technology Development Agency,Pathum Thani 12120, Thailand
Abstract:A bottom substrate denitrification tank for a recirculating aquaculture system was developed. The laboratory scale denitrification tank was an 8 L tank (0.04 m2 tank surface area), packed to a depth of 5 cm with a bottom substrate for natural denitrifying bacteria. An aquarium pump was used for gentle water mixing in the tank; the dissolved oxygen in the water was maintained in aerobic conditions (e.g. > 2 mg/L) while anoxic conditions predominated only at the bottom substrate layer. The results showed that, among the four substrates tested (soil, sand, pumice stone and vermiculite), pumice was the most preferable material. Comparing carbon supplementation using methanol and molasses, methanol was chosen as the carbon source because it provided a higher denitrification rate than molasses. When methanol was applied at the optimal COD:N ratio of 5:1, a nitrate removal rate of 4591±133 mg-N/m2 tank bottom area/day was achieved. Finally, nitrate removal using an 80 L denitrification tank was evaluated with a 610 L recirculating tilapia culture system. Nitrate treatment was performed by batch transferring high nitrate water from the nitrification tank into the denitrification tank and mixing with methanol at a COD:N ratio of 5:1. The results from five batches of nitrate treatment revealed that nitrate was successfully removed from water without the accumulation of nitrite and ammonia. The average nitrate removal efficiency was 85.17% and the average denitrification rate of the denitrification tank was 6311±945 mg-N/m2 tank bottom area/day or 126±18 mg-N/L of pumice packing volume/day.
Keywords:denitrification  nitrate removal  methanol  pumice stone  recirculating aquaculture system
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