Key laboratory of Pollution process and Environmental Criteria of Ministry of Education, Tianjin Key Laboratory of Environmental Technology for Complex Trans-Media Pollution, China.
Key laboratory of Pollution process and Environmental Criteria of Ministry of Education, Tianjin Key Laboratory of Environmental Technology for Complex Trans-Media Pollution, China.
Sci Total Environ. 2023 Feb 25;861:160658. doi: 10.1016/j.scitotenv.2022.160658. Epub 2022 Dec 5.
Due to the widespread use of organophosphate esters (OPEs), the occurrence and trophic transfer of OPEs have attracted attentions in ecosystems. However, as the final sink for these chemicals, the bioaccumulations and trophodynamics of OPEs in marine ecosystems are still not clear. In this study, seawater, sediment and marine organisms collected from Bohai Bay (BHB), Laizhou Bay (LZB), and Liaodong Bay (LDB) in Bohai Sea (BS), China were analyzed to investigate the occurrence, bioaccumulation and trophic transfer of typical OPEs. Total concentration of OPEs (∑ OPEs) in surface water in LZB (255.8 ± 36.44 ng/L) and BHB (209.6 ± 35.61 ng/L) was higher than that in LDB (170.0 ± 63.73 ng/L). Marine organisms in LZB accumulated the highest concentrations of OPEs among the 3 bays (∑OPEs, 70.56 ± 61.36 ng/g ww). Average bioaccumulation factor (BAF) of OPEs in marine organism in BHB, LZB, and LDB was ranged from -2.48 to 0.16, from -2.96 to 1.78, and from -2.59 to 0.59. We also found that trophic magnification factors (TMF) are generally <1, which suggested trophic dilutions of OPEs in BS, China. Nevertheless, the relatively high OPEs levels in BS still may bring potential risks to ecosystem and human health.
由于有机磷酸酯 (OPEs) 的广泛使用,其在生态系统中的分布和营养传递受到了关注。然而,作为这些化学物质的最终归宿,海洋生态系统中 OPEs 的生物积累和营养动力学仍不清楚。本研究采集了中国渤海湾的渤海湾 (BHB)、莱州湾 (LZB) 和辽东湾 (LDB) 的海水、沉积物和海洋生物,以调查典型 OPEs 在这些地区的分布、生物积累和营养传递情况。LZB(255.8 ± 36.44 ng/L)和 BHB(209.6 ± 35.61 ng/L)表层水中 OPEs 的总浓度(∑OPEs)高于 LDB(170.0 ± 63.73 ng/L)。3 个海湾中,LZB 中的海洋生物积累的 OPEs 浓度最高(∑OPEs,70.56 ± 61.36 ng/g ww)。BHB、LZB 和 LDB 中 OPEs 的平均生物积累因子(BAF)范围分别为-2.48 至 0.16、-2.96 至 1.78 和-2.59 至 0.59。我们还发现,营养级放大倍数 (TMF) 通常<1,这表明 OPEs 在渤海湾存在营养级稀释现象。尽管如此,渤海湾中相对较高的 OPEs 水平仍可能对生态系统和人类健康带来潜在风险。