首页> 外文期刊>Aquacultural Engineering: An International Journal >Performance evaluation of a commercial land-based integrated multi-trophic aquaculture system using constructed wetlands and geotextile bags for solids treatment
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Performance evaluation of a commercial land-based integrated multi-trophic aquaculture system using constructed wetlands and geotextile bags for solids treatment

机译:使用人工湿地和土工布袋进行固体处理的商业陆地综合多营养水产养殖系统的性能评估

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The water chemistry and economics of a commercial-scale inland marine integrated multi-trophic aquaculture (IMTA) system was investigated. The system used a combination of a constructed wetland, sand filter followed by a constructed wetland, and geotextile bags to treat solids waste. This study is a demonstration of a zero-discharge system where commercial nursery production of wetland plants was combined with a marine RAS to treat saline solid waste. Total suspended solids (TSS), chemical oxygen demand (COD), total nitrogen (TN), and total phosphorus (TP) concentrations were measured. Plant and soil samples were analyzed for TN and TP. A significant (p 0.05) difference in the effluent concentrations was not found. The variability inherent in a commercial-scale system made it difficult to isolate the individual efficiencies of the three treatment systems. Production of wetland plants was critical for aiding nutrient removal by facilitating aggregation of solids and providing conditions for denitrification. On average the nitrate concentration decreased over time due to the denitrification occurring in the plant beds. Water samples were analyzed for dissolved metals: Mn, Ni, Se, Sr, Cd, Li, Hg, Mo, Fe, B, Cu, Pb, Zn, La, Ca, K, and Mg; Mn and Fe showed a gradual increase in concentration over time. This IMTA system successfully produced Florida pompano, and the fish waste and uneaten feed provided enough nutrients to produce multiple cohorts of wetland plants over a two-year period. An economic analysis indicated that after one year of production the system would produce a profit, but the production of Florida pompano alone would not result in a positive net return. The sales of wetland plants were necessary for the system to break-even and ultimately produce a profit for the production facility in Sarasota, FL. (C) 2015 Elsevier B.V. All rights reserved.
机译:研究了商业规模的内陆海洋综合多营养水产养殖(IMTA)系统的水化学和经济性。该系统结合了人工湿地,沙滤器,人工湿地和土工布袋的组合来处理固体废物。这项研究证明了零排放系统,该系统将湿地植物的商业苗圃生产与海洋RAS结合使用,以处理含盐固体废物。测量了总悬浮固体(TSS),化学需氧量(COD),总氮(TN)和总磷(TP)浓度。分析植物和土壤样品的总氮和总磷。未发现污水浓度有显着差异(p <0.05)。商业规模系统固有的可变性使得难以隔离这三种处理系统的各个效率。湿地植物的生产对于通过促进固体聚集并提供反硝化条件来帮助去除营养至关重要。平均而言,由于植物床中发生反硝化作用,硝酸盐浓度随时间下降。分析了水样品中的溶解金属:Mn,Ni,Se,Sr,Cd,Li,Hg,Mo,Fe,B,Cu,Pb,Zn,La,Ca,K和Mg;锰和铁的浓度随时间逐渐增加。该IMTA系统成功地产生了佛罗里达mp鱼,而鱼类废物和未进食的饲料则提供了足够的养分,足以在两年内生产出多个队列的湿地植物。一项经济分析表明,生产一年后,该系统将产生利润,但仅佛罗里达po蒲的生产不会带来正的净回报。湿地植物的销售对于系统达到收支平衡是必不可少的,并最终为佛罗里达州萨拉索塔的生产设施带来利润。 (C)2015 Elsevier B.V.保留所有权利。

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