Impact and recovery of water quality in a river with salmon aquaculture

IF 1.1 Q3 FISHERIES Aquaculture, Fish and Fisheries Pub Date : 2023-11-27 DOI:10.1002/aff2.142
Ronan Cooney, Alexandre Tahar, Alan Kennedy, Eoghan Clifford
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Abstract

Freshwater aquaculture can have negative impacts on chemical, physical and biological water quality. To contextualise the impact that these activities may have, a case study site in Ireland was monitored for 1 year. The study aims were to investigate the impact of freshwater aquaculture on water quality (biological, physical, and chemical) and the degree of the impact and recovery in water quality, within 1000 m downstream of a salmon smolt hatchery. The hatchery was monitored, at four locations (upstream, 10, 100, and 1,000 m downstream of the discharge point). Data on macroinvertebrate, macrophyte, hydromorphology and chemical characteristics were collected. Results for the physical monitoring indicated no significant changes in hydromorphology between up and downstream sites. Chemical water quality did decrease downstream in terms of nitrogen (N) and phosphorus (P). The greatest concentrations in N and P were found at 1000 m though it is likely additional contributions from agriculture impacted this site. Dissolved oxygen was steady throughout the monitoring campaign with a 13% variance between upstream and downstream locations. Changes in biological indices were statistically significant for taxa at all downstream sites. There were positive trends which indicated a degree of recovery in biotic indices.

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鲑鱼养殖对河流水质的影响和恢复
淡水养殖会对化学、物理和生物水质产生负面影响。为了解这些活动可能产生的影响,对爱尔兰的一个案例研究地点进行了为期一年的监测。研究目的是调查淡水养殖对水质(生物、物理和化学)的影响,以及鲑鱼幼体孵化场下游 1000 米范围内水质的影响程度和恢复情况。在四个地点(排放点上游、下游 10 米、100 米和 1000 米)对孵化场进行了监测。收集了有关大型无脊椎动物、大型植物、水文形态和化学特征的数据。物理监测结果表明,上游和下游地点的水文形态没有明显变化。下游的化学水质在氮(N)和磷(P)方面确实有所下降。氮和磷的最大浓度出现在 1000 米处,但农业可能对该地点产生了额外影响。在整个监测过程中,溶解氧保持稳定,上游和下游地点之间的差异为 13%。在所有下游地点,生物指数的变化对分类群都有显著的统计学意义。出现了积极的趋势,表明生物指数有了一定程度的恢复。
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