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High-frequency Data for Temperature and Oxygen Reveal the Potential for Stressful Conditions for Fish in a Southern New England Impoundment

机译:温度和氧气的高频数据揭示了新英格兰南部污染物中鱼的压力条件的潜力

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摘要

Fishes have specific dissolved oxygen and water temperature requirements needed to promote optimal growth. Ongoing anthropogenic climate change will lead to increased water temperature and likely changes in dissolved oxygen concentrations that will affect fish populations in a variety of ways. This study uses high-frequency, automated sensor data from 2011-2015 to examine dissolved oxygen and water temperature in Lake Lillinonah, a hydroelectric impoundment in western Connecticut, to identify potentially stressful conditions for Esox lucius (Northern Pike [NP]) and Micropterus salmoides (Largemouth Bass [LMB]). We found that summer water temperature was nearly always in an optimal range for LMB growth, but was frequently in the stressful range for NP growth. In addition, in some years, Lake Lillinonah experienced consistent hypoxia, reducing the thermal refuge available for NP. Long-term data from Lake Lillinonah show an increase in mean July surface water temperature, and further temperature increases are expected as the climate continues to warm. This trend, coupled with a potential reduction in thermal refuge due to hypoxia, poses serious consequences for NP, given that current conditions frequently exceed documented optimal growth range for the species.
机译:鱼类具有特定的溶解氧和水温要求,以促进最佳生长。正在进行的人为气候变化将导致水温增加,并且可能会以各种方式影响鱼群的溶解氧浓度的可能变化。本研究采用2011-2015的高频自动化传感器数据,在康涅狄格州的水电蓄水湖中检查Lake Lillinonah湖中的溶解氧和水温,以识别Esox Lucius(北部派克[NP])和MicroPeruss Salmoides的潜在压力条件(大声低音[LMB])。我们发现夏季水温几乎始终处于LMB生长的最佳范围内,但经常在NP生长的压力范围内。此外,在多年的几年里,Lillinonah Lake Lillinonah经历了一致的缺氧,减少了NP可用的热避难。来自Lake Lillinonah湖的长期数据显示平均7月表面水温,并且预期进一步的温度升高,因为气候继续温暖。考虑到当前条件经常超过物种的最佳增长范围,加上由于缺氧引起的热避难引起的热避难潜在降低的趋势会产生严重的NP。

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