Department of Earth Sciences, Durham University, South Road, Durham DH1 3LE, UK.
Department of Earth Sciences, Durham University, South Road, Durham DH1 3LE, UK.
Mar Pollut Bull. 2024 Oct;207:116828. doi: 10.1016/j.marpolbul.2024.116828. Epub 2024 Sep 5.
Macroalgal nitrogen isotope analysis (δN) is a reliable method for the identification of nitrogen pollutant sources. Understanding δN geospatial variation within small bays and/or harbour environments can help identify point sources of nitrogen pollution. This study sampled over 300 Fucus vesiculosus and Ulva sp. specimens in September 2022 and May 2023 from Staithes Harbour, North Yorkshire, England. δN values for Staithes Beck were elevated when compared to sites in Staithes Harbour and the North Sea: this is attributed to sewage effluent and/or agricultural manure. Few sites within Staithes Harbour were significantly different from one another in terms of δN, suggesting a relatively homogenous nitrogen isotope record of the harbour. Simple harbour environments like Staithes may be relatively well mixed, and thus, sampling one harbour site may be enough to represent the entire harbour. Of course, more complex harbours may require more sample locations to ascertain point sources and mixing in the harbour.
大型藻类氮同位素分析 (δN) 是识别氮污染物来源的可靠方法。了解小海湾和/或港口环境内的 δN 地理空间变化有助于识别氮污染的点源。本研究于 2022 年 9 月和 2023 年 5 月在英格兰北约克郡的 Staithes 港采集了超过 300 个泡叶藻和石莼标本。与 Staithes 港和北海的地点相比,Staithes Beck 的 δN 值升高:这归因于污水和/或农业肥料。Staithes 港内很少有地点在 δN 方面彼此显著不同,表明港口具有相对均匀的氮同位素记录。像 Staithes 这样简单的港口环境可能混合得比较好,因此,采集一个港口地点可能足以代表整个港口。当然,更复杂的港口可能需要更多的采样地点来确定港口内的点源和混合情况。