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Hamilton Harbour over the last 25 years: Insights from a long-term comprehensive water quality monitoring program

机译:过去25年的汉密尔顿港:长期全面水质监测计划的见解

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Hamilton Harbour was identified by the International Joint Commission as a problem area in 1978 and later identified as an Area of Concern in 1985. In response to its Remedial Action Plan, the harbour has been systematically monitored since 1987. In this study, we present the long-term water quality record (1987 to 2012) of Hamilton Harbour, focusing on the parameters and seasonal intervals of particular importance to the Remedial Action Plan beneficial use impairments. The long-term summer records showed that total phosphorus concentrations decreased in the first decade and have remained relatively unchanged since 1998, while an increasing trend in Secchi disc depth was observed until 2005 only to be reversed since then. No significant changes in chlorophyll a concentrations have been observed since 1987 despite significant changes in total phosphorus. Hypoxia in the hypolimnion of Hamilton Harbour remains a common occurrence and despite long-term trend improvements there has been little change over the last decade. Spring conditions have also changed, and higher conductivity values and chlorophyll a concentrations have been measured in recent years. A strong correlation between spring hypolimnetic dissolved organic carbon concentrations and dissolved oxygen depletion rates was found suggesting the organic material load to the harbour is an important controlling factor for hypoxia. Finally, the data suggest that the hypolimnetic accumulation rate of soluble reactive phosphorus in the summer has increased since 1987, most notably since the early 2000s. However, it is only since 2008 that this translated into an increasing trend in hypolimnetic soluble reactive phosphorus concentrations. These data suggest that conditions have recently changed in Hamilton Harbour and that sediment phosphorus release may delay water quality improvements for many years following reductions in total phosphorus loadings. Further research is needed to understand the implications to the Remedial Action Plan water quality goals.
机译:汉密尔顿港在1978年被国际联合委员会确定为有问题的地区,随后在1985年被确定为“关注区域”。根据其《补救行动计划》,自1987年以来对该港口进行了系统的监控。在本研究中,我们介绍了汉密尔顿港的长期水质记录(1987年至2012年),重点关注对补救行动计划有益使用减损特别重要的参数和季节间隔。长期的夏季记录显示,自1998年以来,总磷浓度在第一个十年中有所下降,并且一直保持相对不变,而直到2005年,塞克奇盘深度的增加趋势才出现逆转。尽管总磷有显着变化,但自1987年以来,未观察到叶绿素a浓度的显着变化。汉密尔顿港的低氧环境中的缺氧现象仍然很普遍,尽管长期趋势有所改善,但在过去十年中变化不大。春季条件也发生了变化,近年来已测得较高的电导率值和叶绿素a浓度。春季低铁的溶解有机碳浓度与溶解氧耗竭率之间存在很强的相关性,这表明向港口的有机物质负荷是缺氧的重要控制因素。最后,数据表明,自1987年以来,夏季可溶性反应磷的低铁累积速率有所增加,特别是自2000年代初以来。然而,仅从2008年起,这转化为低边际可溶性反应性磷浓度的上升趋势。这些数据表明,汉密尔顿港的情况最近发生了变化,随着总磷含量的降低,沉积物中磷的释放可能会使水质改善推迟许多年。需要进一步研究以了解对《补救行动计划》水质目标的影响。

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