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Estimation of waste outputs by a rainbow trout cage farm using a nutritional approach and monitoring of lake water quality

机译:使用营养方法估算虹鳟网箱养殖场的废物产出并监测湖泊水质

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Nutrients released by cage fish farms to the aquatic environment are an issue of concern since these can result in deleterious environmental changes. In the present study, a mass balance model was used to calculate nutrient loadings from an experimental rainbow trout cage farm located in a freshwater, oligotrophic lake. Detection of these nutrient loadings using water quality monitoring was then investigated. The loading of total solids of faecal and feed origin (TS), solid phosphorus (SP) and nitrogen (SN), and dissolved P (DP) and N (DN) wastes from the farmed fish were estimated over two production cycles. Waste outputs were estimated using the Fish-PrFEQ feed requirement and waste output model using measured inputs including diet composition, nutrient digestibility, intake and retention by the fish, and water temperature. Nutrient loading predictions were compared with measured nutrient concentrations of lake water. In 2003, TS, SN and SP and DN and DP waste outputs were 236.0, 12.8, 5.3, 41.3, and 3.4kgtonnea degree 1 of fish produced, respectively. In 2004, the TS, SN and SP and DN and DP waste outputs were 220.0, 12.2, 5.3, 38.0, and 3.4kgtonnea degree 1 of fish produced, respectively. Over 60% of the P waste output from the cage was predicted to be solid for both years while over 65% of the total N waste from the cage farm was predicted to be excreted as ammonia. Concentrations of ammonia and of dissolved and particulate phosphorus were not reflective of waste loading of cage origin, suggesting efficient removal through uptake by biota and/or in the case of ammonia by nitrification. Fish-PrFEQ model is a valuable cage management tool that allows realistic estimation of waste outputs for cage farms and can be used to examine effect of management and feeding practices on waste outputs. However, the model is of limited use as a lake management tool, as it does not consider effects and fate of wastes released by fish. Similarly, reliance on periodic water quality monitoring at stations near cage farms may not be protective of the environment, as our results demonstrate that rapid diffusion, uptake, transformation and removal of nutrients resulted in water quality measures that were relatively insensitive to cage loading. Combining the Fish-PrFEQ model with a consideration of assimilative capacity of the system in addition to the monitoring of chemical and biological variables of the lake is recommended for environmental impact assessment of cage culture operations.
机译:网箱养鱼场向水生环境释放的养分是一个令人关注的问题,因为这些养分可能导致有害的环境变化。在本研究中,质量平衡模型用于计算位于淡水,贫营养湖中的虹鳟网箱养殖场的养分含量。然后研究了使用水质监测来检测这些养分含量。在两个生产周期中,估计了养殖鱼类的粪便和饲料来源(TS),固体磷(SP)和氮(SN)以及溶解的P(DP)和N(DN)废物的总固体含量。使用Fish-PrFEQ饲料需求估算废物产量,并使用包括饲料成分,营养物质消化率,鱼的摄入和滞留量以及水温在内的实测数据估算废物产量。将营养负荷预测值与测得的湖水养分浓度进行比较。 2003年,TS,SN和SP以及DN和DP废物产出的鱼分别为236.0、12.8、5.3、41.3和3.4公斤重。 2004年,TS,SN和SP以及DN和DP废物产量分别为220.0、12.2、5.3、38.0和3.4kgtonnea。预计这两年网箱中的P废物产出中有60%以上是固体,而网箱养殖场中N废物总量中的65%以上则以氨的形式排出。氨以及溶解的磷和微粒磷的浓度不能反映网箱来源的废物负荷,这表明通过生物群的吸收和/或在硝化的氨的情况下可以有效去除。 Fish-PrFEQ模型是一种有价值的网箱管理工具,可以对网箱养殖场的废物产出进行实际估算,并可用于检查管理和喂养方式对废物产出的影响。但是,该模型作为湖泊管理工具的用途有限,因为它没有考虑鱼类释放的废物的影响和命运。同样,依靠网箱养殖场附近站点的定期水质监测可能无法保护环境,因为我们的结果表明,营养物质的快速扩散,吸收,转化和去除导致水质措施对网箱负荷相对不敏感。建议将Fish-PrFEQ模型与系统的同化能力相结合,并同时监测湖泊的化学和生物变量,以进行网箱养殖作业的环境影响评估。

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