School of the Environment, Geography and Geosciences, University of Portsmouth, Burnaby Road, Portsmouth, PO1 3QL, UK.
School of Pharmacy and Biomedical Sciences, University of Portsmouth, White Swan Road, Portsmouth, PO1 2DT, UK.
Environ Sci Pollut Res Int. 2023 Feb;30(7):17965-17983. doi: 10.1007/s11356-022-23476-w. Epub 2022 Oct 7.
The River Itchen and River Test, two chalk streams in Southern England, are sites of special scientific interest. These ecosystems face a number of environmental pressures from anthropogenic inputs of organic pollutants. Hence, we investigated the occurrence of these chemicals within the two catchments. Spot water samples (1 L) were collected at nineteen sites along the catchment on two occasions (March and June 2019). Samples were extracted (HLB-L sorbent disks) and analysed using high-resolution liquid chromatography-quadrupole-time-of-flight mass spectrometry and gas chromatography-mass spectrometry. Compounds were identified against commercially available databases. Using this approach, we found 115 pharmaceutical and personal care products, 81 plant protection products and 35 industrial chemicals. This complex mixture of pollutants covered a range of physico-chemical properties and included priority substances in the EU Water Framework Directive or currently on the third Watch List. Both rivers had similar chemical profiles for both months. Herbicides and fungicides were dominant in the spring, whereas insecticides occurred more frequently in the summer. Point discharges from wastewater treatment plants were the main source of pharmaceutical and personal care products. Agricultural activities were the main contributor to the presence of plant protection products. The impact of these organic chemicals on the ecology, particularly on macroinvertebrate biodiversity, is unknown and warrants further investigation. Our suspect screening approach could guide future toxicological investigations to assess the environmental impacts of these diverse chemicals.
英格兰南部的伊钦河和特斯特河是两条白垩溪流,是具有特殊科学意义的地点。这些生态系统面临着人为输入有机污染物带来的多种环境压力。因此,我们调查了这两个集水区内这些化学物质的存在情况。在 2019 年 3 月和 6 月两次,在集水区的 19 个地点采集了 1 升点水源水样。使用高分辨率液相色谱-四极杆飞行时间质谱和气相色谱-质谱法,使用 HLB-L 吸附剂圆盘对样品进行提取和分析。使用商业上可用的数据库对化合物进行鉴定。通过这种方法,我们发现了 115 种药物和个人护理产品、81 种植物保护产品和 35 种工业化学品。这种复杂的污染物混合物涵盖了一系列物理化学性质,包括欧盟水框架指令中的优先物质或目前在第三观察名单上的物质。这两条河在两个月内都有相似的化学特征。在春季,除草剂和杀菌剂占主导地位,而杀虫剂在夏季更为常见。来自污水处理厂的点源排放物是药物和个人护理产品的主要来源。农业活动是植物保护产品存在的主要原因。这些有机化学物质对生态系统的影响,特别是对大型无脊椎动物生物多样性的影响尚不清楚,需要进一步调查。我们的可疑筛选方法可以指导未来的毒理学调查,以评估这些不同化学物质的环境影响。