Xu Weihai, Zhang Lulu, Tian Yuhang, Zhu Xiaowei, Han Xue, Miao Li, Yan Wen
Southern Marine Science and Engineering Guangdong Laboratory (Guangzhou), Guangzhou, 511458, China.
Key Laboratory of Ocean and Marginal Sea Geology, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou, 510301, China.
Environ Sci Pollut Res Int. 2022 Nov;29(51):76961-76969. doi: 10.1007/s11356-022-21192-z. Epub 2022 Jun 7.
Although soluble organic corrosion inhibitors (OCIs) have been observed globally in surface water, data on their exposures in sediments are still scarce. In this study, a comprehensive investigation on spatial variations and potential sources of OCIs were conducted in riverine sediments from the Pearl River Delta (PRD), one of the most developed and urbanized areas in China. Of 12 OCIs, 7 were detected with the total concentrations ranging from 81.8 to 401.2 ng/g. When the results were compared with those of the water phase, OCIs in the riverine sediments exhibited relatively low concentrations, which was likely due to their low K, and they were not expected to be adsorbed onto sediments. The spatial variation of OCIs suggested that the discharge of sewage treatment plants (STPs) effluent could be a major source of OCIs in the PRD region. The total concentrations of OCIs had a significant positive correlation with total organic carbon (TOC) contents, suggesting that they have similar sources. This study strongly indicated that the high consumption of OCIs have led to their wide exposure in different environments in the PRD region and additional ecotoxicological data are needed to evaluate their potential risks in riverine sediments in the future.
尽管可溶性有机腐蚀抑制剂(OCIs)在全球地表水均有发现,但关于它们在沉积物中的暴露数据仍然匮乏。本研究对中国最发达、城市化程度最高的地区之一——珠江三角洲(PRD)河流沉积物中OCIs的空间变化和潜在来源进行了全面调查。在12种OCIs中,检测到7种,总浓度范围为81.8至401.2 ng/g。当将结果与水相结果进行比较时,河流沉积物中的OCIs浓度相对较低,这可能是由于它们的K值较低,预计它们不会吸附在沉积物上。OCIs的空间变化表明,污水处理厂(STPs)的废水排放可能是PRD地区OCIs的主要来源。OCIs的总浓度与总有机碳(TOC)含量呈显著正相关,表明它们具有相似的来源。本研究有力地表明,OCIs的高消耗量导致它们在PRD地区的不同环境中广泛暴露,未来需要更多的生态毒理学数据来评估它们在河流沉积物中的潜在风险。