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Temporal variations in suspended particulate waste concentrations at open-water fish farms in Canada and Norway

机译:加拿大和挪威的开放水域养鱼场中悬浮颗粒物废物浓度的时间变化

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ABSTRACT: The co-cultivation of finfish and bivalve filter feeders, with the purpose of recycling solid waste effluents and enhancing aquaculture revenues, has stimulated efforts to characterize particulate waste dynamics at open-water fish farms. Temporal variability in waste concentrations in the water column was studied at Atlantic salmon Salmo salar farms in eastern Canada and Norway, and at a sablefish Anoplopoma fimbria farm in western Canada. Turbidity and chlorophyll a (chl a) sensors were used to continuously monitor suspended particulate matter (SPM) and chl a concentrations at various depths and distances to the net-pens. Time-series analysis of these data indicated that SPM fluctuations at the study sites corresponded largely with tidal periodicity and variations in phytoplankton biomass (chl a). ANOVA comparisons of mean SPM levels in water flowing from the direction of net-pens (potential farm influence) and towards the farm (control) generally indicated insignificant effects of fish wastes on SPM levels at the farms (p 0.05). A significant effect of the farm was detected by an ANOVA comparison of SPM concentrations collected at 5 m depth at farm and reference stations in an oligotrophic fjord, but the calculated level of waste enhancement over the sampling period was extremely small (0.02 mg l-1). Results indicate that temporal variations in SPM concentrations around the open-water fish farms were largely driven by natural processes and that the addition of fish wastes had a negligible effect. Consequently, there is little rationale for introducing commercial extractive species (e.g. bivalves) in open-water integrated multi-trophic aquaculture systems to mitigate the horizontal flux of particulate fish wastes.
机译:摘要:有鳍鱼类和双壳类滤池饲养者的共同养殖旨在回收固体废物流出物并增加水产养殖收入,从而刺激了人们在开放水域养鱼场表征颗粒废物动态的努力。在加拿大东部和挪威的大西洋鲑 Salmo salar 养殖场以及加拿大西部的黑貂​​ Anoplopoma fimbria 养殖场研究了水柱中废物浓度的时间变化。使用浊度和叶绿素 a (chl a )传感器连续监测各种深度和距离下的悬浮颗粒物(SPM)和chl a 浓度到网笔。这些数据的时间序列分析表明,研究地点的SPM波动主要与潮汐周期和浮游植物生物量(chl a )的变化相对应。从净笔方向(潜在的养殖场影响)和流向养殖场(对照)的水的平均SPM水平的方差分析比较通常表明,鱼粪对养殖场的SPM水平影响不明显(p> 0.05)。通过对贫养性峡湾的农场和参考​​站在5 m深度处收集的SPM浓度进行方差分析比较,发现了该农场的显着效果,但是在采样期间所计算出的废物增强水平非常小(0.02 mg l > -1 )。结果表明,开放水域养鱼场中SPM浓度的时间变化主要受自然过程的影响,而添加鱼废的影响可忽略不计。因此,几乎没有理由在开放水域综合多营养水产养殖系统中引入商业性提取物种(例如双壳类)以减轻颗粒状鱼类废物的水平通量。

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