Savannah River National Laboratory, Aiken, SC, 29808, USA.
ACP Engineering and Technology, Savannah River Site, Aiken, SC, 29808, USA.
Environ Monit Assess. 2022 Jan 6;194(2):61. doi: 10.1007/s10661-021-09740-5.
We used diffusive gradients in thin films (DGT) to measure potentially bioavailable metals in coastal plain streams in the southeastern USA that exhibited strong to moderate blackwater characteristics. Metals were partitioned into particulate metals, DGT-inert metals (i.e., colloidal and refractory organic complexes not accumulated by DGT), and DGT-labile metals (i.e., free metal ions, small inorganic complexes, and labile organic complexes). We also examined the influence of different DGT deployment times using data collected from the field and a follow-up laboratory study. The DGT-measured fraction of dissolved metals in the streams was 15% for Cd, 21% for Zn, 33% for Cu, 37% for Pb, and 98% for Mn. Metals bound to particulates predominated only for Pb. Most of the Cd, Pb, Zn, and Cu were associated with colloids, refractory organic complexes, or particles. Relatively small amounts were in free ion or labile complexes likely to be bioavailable through respiratory surfaces. Modeled concentrations of free and inorganically bound Cu and Pb were lower than the DGT fraction indicating that DGT accumulated some organically bound Cu and Pb that might not have been bioavailable. DGT-exposure times in excess of 5 days may have contributed to the accumulation of partly labile organic-metal complexes and were associated with substantial biofouling that caused metal uptake by DGT to depart from linearity.
我们使用薄膜扩散梯度技术(DGT)来测量美国东南部具有强到中度黑水河特征的沿海平原溪流中潜在生物可用的金属。金属被分配为颗粒金属、DGT 惰性金属(即不被 DGT 积累的胶体和难溶有机络合物)和 DGT 不稳定金属(即游离金属离子、小无机络合物和不稳定有机络合物)。我们还通过现场收集的数据和后续的实验室研究,考察了不同 DGT 部署时间的影响。溪流中溶解金属的 DGT 测量部分为 Cd 的 15%,Zn 的 21%,Cu 的 33%,Pb 的 37%和 Mn 的 98%。颗粒物质结合的金属仅对 Pb 起主要作用。大多数 Cd、Pb、Zn 和 Cu 与胶体、难溶有机络合物或颗粒结合。只有相对少量的自由离子或不稳定络合物可能通过呼吸表面具有生物利用性。模型化的自由 Cu 和 Pb 浓度低于 DGT 部分,表明 DGT 积累了一些可能没有生物利用性的有机结合的 Cu 和 Pb。超过 5 天的 DGT 暴露时间可能导致部分不稳定有机金属络合物的积累,并与大量生物污垢有关,这导致 DGT 对金属的吸收偏离线性。