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Determination of spatial and temporal variability of pH and dissolved oxygen concentrations in a seasonally hypoxic semi-enclosed marine basin using continuous monitoring

机译:使用连续监测确定季节性缺氧半封闭海洋盆地中pH和溶解氧浓度的时空变化

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Measurement and prediction of ocean acidification effects for nearshore marine ecosystems is currently a major objective of climate change research. This study examines the scales of pH variability in both surface waters (10 m depth) and deeper waters associated with localised seasonal hypoxia over two years at Lough Hyne marine reserve, Cork, Ireland. Lough Hyne, a semi-enclosed marine system, experiences localised seasonal (approximately May to September each year) hypoxia and eventual anoxia below a depth of circa 25 m, due largely to its bathymetric profile. We report the relationships between pH and other environmental parameters such as dissolved oxygen (DO) and temperature at this location, and we provide data, obtained using continuous autonomous sensing technology, which demonstrates that the variability in pH measurements in the waters of Lough Hyne marine reserve are comparable to predictions of future ocean acidification. This is of interest as comparatively few directly measured time series of pH in marine waters are reported, and additionally the first pH measurements were reported from Lough Hyne over 6 decades ago in 1952. This work also measures for the first time the steep chemical gradients associated with the transition from anoxia to normoxia that result in profound pH changes at Lough Hyne, providing insight into natural variability in pH experienced by marine organisms at such locations.
机译:对近岸海洋生态系统的海洋酸化作用的测量和预测是当前气候变化研究的主要目标。这项研究调查了爱尔兰科克Lough Hyne海洋保护区两年内地表水(<10 m深度)和更深水与局部季节性缺氧有关的pH变异量。半封闭式海洋系统海恩海恩(Lough Hyne)经历局部季节性缺氧(每年大约5月至9月),并且在大约25 m的深度下最终出现缺氧,这主要是由于其测深曲线。我们报告了该位置处pH值与其他环境参数(例如溶解氧(DO)和温度)之间的关系,并提供了使用连续自主传感技术获得的数据,该数据证明了Lough Hyne marine水域中pH测量值的可变性储量可与未来海洋酸化的预测相提并论。这是有意思的,因为据报道很少有直接测量海水中pH的时间序列,另外,1952年Lough Hyne首次报告了pH值测量是在1952年。这项工作还首次测量了与之相关的陡峭化学梯度从缺氧到常氧的转变导致了Lough Hyne的pH值发生了深刻的变化,从而洞察了这些地点海洋生物所经历的pH值的自然变化。

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