首页> 外文期刊>Journal of environmental monitoring: JEM >Near-field loading dynamics of total phosphorus and short-term water quality variations at a rainbow trout cage farm in Lake Huron
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Near-field loading dynamics of total phosphorus and short-term water quality variations at a rainbow trout cage farm in Lake Huron

机译:休伦湖虹鳟网箱养殖场总磷的近场动态和短期水质变化

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Aquatic total phosphorus (Tot-P) is measured at fish-cages in Lake Huron for environmental regulatory compliance. An improved understanding of how Tot-P is manifested in the near-field (<= 30 m) water column relative to reference sites within the same water body, current movement and farm structures is required to help interpret sample results and re. ne monitoring protocols where necessary. The primary aim of this study is to investigate spatial and temporal concentrations of Tot-P at a commercial fish farm. A secondary aim investigates the utility of automated dissolved oxygen (DO) and pH monitoring to assist with Tot-P monitoring. Near-field TP at a commercial rainbow trout (Oncorhynchus mykiss) cage-farm in the North Channel of Lake Huron was intensively sampled for six multi-day periods of differing environmental and fish production scenarios. Current profiles were measured by acoustical Doppler current profilers for five periods, and multi-probes continuously measured temperature, pH and dissolved oxygen, at the farm centre and 30 m north/south for two sampling periods. Near-field Tot-P data was nonnormally distributed. Differences between parametric and non-parametric measures were minor. Phosphorus depth profiles appeared to be influenced by the locations of cages, manure collectors and the lake bottom. Near-field lateral Tot-P concentrations were elevated above background only in down-current locations except during one period of high production and slow current velocity; suggesting adequately flushed cages will have background concentrations at up-current locations. Variation of DO, pH and Tot-P and the correlations among these parameters, increased from the up-current, down-current and the site centre locations, respectively. These relationships suggest some limited utility for the use multi-probes deployed around fish cages to determine nutrient flow direction, thereby inferring short-term trends of Tot-P concentrations adjacent to the farm. Implications for present monitoring practices are discussed.
机译:在休伦湖鱼笼中测量水生总磷(Tot-P),以符合环境法规要求。需要更好地了解Tot-P如何在相对于同一水体,当前运动和养殖场结构内的参考位置的近场(<= 30 m)水柱中表现出来,以帮助解释和重新分析样品。必要时需要监视协议。这项研究的主要目的是调查商业养鱼场中Tot-P的时空浓度。第二个目的是研究自动溶解氧(DO)和pH监测在辅助Tot-P监测方面的实用性。在休伦湖北河道的商业虹鳟(Oncorhynchus mykiss)网箱养殖场中,对近场TP进行了密集,连续六天,不同环境和鱼类生产情景的采样。通过声学多普勒电流剖面仪对电流剖面进行了五个周期的测量,多探头连续两次测量了农场中心和南北30 m处的温度,pH和溶解氧两个采样周期。近场Tot-P数据呈非正态分布。参数和非参数度量之间的差异很小。磷的深度分布似乎受到网箱,粪便收集器和湖底位置的影响。除了在高产量和低流速的一个时期外,近场侧向Tot-P浓度仅在下流位置才高于本底。提示充分冲洗的笼子在当前位置的背景浓度较高。 DO,pH和Tot-P的变化以及这些参数之间的相关性分别从上升流,下降流和站点中心位置增加。这些关系表明,在鱼笼周围部署多探针来确定养分流向的实用性有限,因此可以推断出临近农场的Tot-P浓度的短期趋势。讨论了对当前监视实践的影响。

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