Guangdong Provincial Key Laboratory of Marine Disaster Prediction and Prevention & Institute of Marine Sciences, Shantou University, Shantou 515063, China.
Third Institute of Oceanography, Ministry of Natural Resource, Xiamen 361005, China.
Mar Pollut Bull. 2023 Aug;193:115222. doi: 10.1016/j.marpolbul.2023.115222. Epub 2023 Jul 3.
The Pu activities and Pu/Pu atom ratios of surface sediments from the Eastern Guangdong coast (EGDC) were determined by sector field ICP-MS in order to examine the sources of plutonium (Pu) and quantify their contributions. The Pu activities in the EGDC ranged from 0.113 to 0.451 Bq kg, with an average of 0.225 ± 0.090 Bq kg (n = 17). Consistently high Pu/Pu atom ratios, ranging from 0.218 to 0.274 (average = 0.254 ± 0.014, n = 17), indicate a non-global fallout Pu source in the EGDC. The horizontal distribution of the Pu/Pu atom ratios in the EGDC sediment suggests the non-global fallout Pu is sourced from close-in fallout from the Pacific Proving Grounds (PPG). Using a simple two end-member mixing model, we calculated the relative proportions of Pu from the PPG and global fallout in the EGDC to be 57 ± 9 % and 43 ± 9 %, respectively. Moreover, from the well-defined relationship between Pu activity and total organic carbon content in sediments and a two end-member mixing model using δC, we further calculated the Terr-global fallout (riverine input) and Mar-global fallout (direct atmospheric deposition) to be 11 ± 2 % and 32 ± 6 %, respectively. Finally, from the activity levels and atom ratios of Pu isotopes in the EGDC, we established a baseline for future use in environmental risk assessment related to nuclear power plant operations.
采用扇形场电感耦合等离子体质谱法(SF-ICP-MS)测定了粤东海域(EGDC)表层沉积物中的 Pu 活度和 Pu/Pu 原子比,以探讨 Pu 的来源并量化其贡献。EGDC 中的 Pu 活度范围为 0.113 至 0.451 Bq kg,平均值为 0.225 ± 0.090 Bq kg(n = 17)。一致较高的 Pu/Pu 原子比(范围为 0.218 至 0.274,平均值为 0.254 ± 0.014,n = 17)表明 EGDC 中的 Pu 非全球沉降源。EGDC 沉积物中 Pu/Pu 原子比的水平分布表明,非全球沉降 Pu 源自太平洋试验场(PPG)的近距离沉降。利用简单的双端元混合模型,我们计算出 EGDC 中来自 PPG 和全球沉降的 Pu 的相对比例分别为 57 ± 9%和 43 ± 9%。此外,根据沉积物中 Pu 活度与总有机碳含量之间的明确关系以及使用 δC 的双端元混合模型,我们进一步计算出 Terr-global fallout(河流输入)和 Mar-global fallout(直接大气沉降)分别为 11 ± 2%和 32 ± 6%。最后,根据 EGDC 中 Pu 同位素的活度水平和原子比,我们为未来与核电站运行相关的环境风险评估建立了基线。