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Diffusive Gradients in Thin Films Can Predict the Toxicity of MetalMixtures toTwoMicroalgae: Validation for Environmental Monitoring in Antarctic Marine Conditions

机译:薄膜中的扩散梯度可以预测金属混合物对两种微藻的毒性:在南极海洋条件下进行环境监测的验证

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Anthropogenic contamination in the Antarctic near-shore marine environment is a challenge for environmental managers because of its isolation, high costs associated with monitoring and remediation activities, and the current lack of Antarctic-specific ecotoxicological data. The present study investigated the application of diffusive gradients in thin films (DGT) with a Chelex-100 binding resin for metal contaminant assessment in Antarctic marine conditions. Diffusion coefficients for cadmium (Cd), copper (Cu), nickel (Ni), lead (Pb), and zinc (Zn), determined at 1 degrees C, ranged between 2.1 and 2.6x10(-6) cm(2)/s and were up to 32% lower than those derived by theoretical calculations. Competition of metals on the DGT binding resin was observed at subsaturation concentrations, reducing the effective capacity for metal uptake by approximately 60%. The lability of the dissolved (0.45 mu m filterable) Cd, Cu, Pb, and Zn metal fraction to DGT was generally 90% and unaffected by the presence of the Antarctic marine microalga Phaeocystis antarctica. Both DGT and dissolved metal concentrations gave equivalent mixture toxicity predictions in independent action and concentration addition models to P. antarctica and Cryothecomonas armigera; that is, predictions using DGT-labile concentrations also showed antagonism to P. antarctica, which agrees with previously determined mixture interactivity. The benefits of DGT over traditional sampling techniques (i.e., discrete water sampling) include lower method detection limits (MDLs), in situ assessment, and time-averaged concentrations which capture pulses of contamination typical of the Antarctic near-shore marine environment. The present study provides MDLs and recommended minimum deployment times to guide field deployments in Antarctica. Environ Toxicol Chem 2019;38:1323-1333. (c) 2019 SETAC
机译:南极近岸海洋环境中的人为污染对环境管理人员来说是一个挑战,因为其隔离,与监测和补救活动相关的高成本以及目前缺乏南极特有的生态毒理学数据。本研究调查了具有Chelex-100粘结树脂的薄膜(DGT)中扩散梯度在南极海洋条件下金属污染物评估中的应用。在1摄氏度下确定的镉(Cd),铜(Cu),镍(Ni),铅(Pb)和锌(Zn)的扩散系数在2.1和2.6x10(-6)cm(2)/之间s和比理论计算得出的结果低32%。在亚饱和浓度下观察到金属在DGT粘结树脂上的竞争,使金属吸收的有效能力降低了约60%。溶解的(0.45μm可过滤的)Cd,Cu,Pb和Zn金属馏分对DGT的不稳定性通常> 90%,并且不受南极海洋微藻Phaeocystis antarctica的影响。 DGT和溶解金属的浓度在南极假单胞菌和棉铃虫的独立作用和浓度添加模型中均给出了等效的混合物毒性预测。也就是说,使用不稳定的DGT浓度进行的预测也显示出对南极疟原虫的拮抗作用,这与先前确定的混合物的相互作用一致。 DGT相对于传统采样技术(即离散水采样)的优势包括更低的方法检测极限(MDL),现场评估以及可捕获南极近岸海洋环境典型污染脉冲的时间平均浓度。本研究提供了MDL和建议的最小部署时间,以指导南极洲的现场部署。 Environ Toxicol Chem 2019; 38:1323-1333。 (c)2019年SETAC

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