首页> 外文期刊>The Science of the Total Environment >Time-dependent accumulation of Cd, Co, Cu, Ni, and Zn in natural communities of mayfly and caddisfly larvae: Metal sensitivity, uptake pathways, and mixture toxicity
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Time-dependent accumulation of Cd, Co, Cu, Ni, and Zn in natural communities of mayfly and caddisfly larvae: Metal sensitivity, uptake pathways, and mixture toxicity

机译:CD,Co,Cu,Ni和Zn在Mayfly和Caddisfly幼虫的自然群体中的时间依赖性积累:金属敏感性,摄取途径和混合物毒性

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Conceptual and quantitative models were developed to assess time-dependent processes in four sequential experimental stream studies that determined abundances of natural communities of mayfly and caddisfly larvae dosed with single metals (Cd, Co, Cu, Ni, Zn) or multiple metals (Cd + Zn, Co + Cu. Cu + Ni, Cu + Zn, Ni + Zn. Cd + Cu + Zn, Co + Cu + Ni, Cu + Ni + Zn). Metal mixtures contained environmentally relevant metal ratios found in mine drainage. Free metal ion concentrations, accumulation of metals by periphyton, and metal uptake by four families of aquatic insect larvae were either measured (Brachycentridae) or predicted (Ephemerellidae, Heptageniidae, Hydropsychidae) using equilibrium and biodynamic models. Toxicity functions, which included metal accumulations by larvae and metal potencies, were linked to abundances of the insect families. Model results indicated that mayflies accumulated more metal than caddisflies and the relative importance of metal uptake by larvae via dissolved or dietary pathways highly depended on metal uptake rate constants for each insect family and concentrations of metals in food and water. For solution compositions in the experimental streams, accumulations of Cd, Cu, and Zn in larvae occurred primarily through dietary uptake, whereas uptake of dissolved metal was more important for Co and Ni accumulations. Cd, Cu, and Ni were major contributors to toxicity in metal mixtures and for metal ratios examined. Our conceptual approach and quantitative results should aid in designing laboratory experiments and field studies that evaluate metal uptake pathways and metal mixture toxicity to aquatic biota.
机译:开发了概念和定量模型,以评估四种顺序实验流研究中的时间依赖过程,该研究中确定了用单金属(CD,CO,Cu,Ni,Zn)或多金属(CD +的CDDDisfly幼虫的丰富和Caddisfly幼虫的丰度(CD + Zn,Co + Cu。Cu + Ni,Cu + Zn,Ni + Zn。Cd + Cu + Zn,Co + Cu + Ni,Cu + Ni + Zn)。金属混合物含有在矿井排水中发现的环境相关金属比。使用平衡和生物动力学模型,珀西顿氏菌(Brachycentridae)或预测(Ephemerellidae,Heptageniidae,HypropleChidae)的空常金属离子浓度,金属的覆盖率和金属摄取。包括幼虫和金属效力的金属积聚毒性功能与昆虫家庭的丰富有关。模型结果表明,Mayflies积累了比Caddisflies更多的金属,并且幼虫通过溶解或膳食途径的相对重要性高度依赖于每种昆虫家族的金属摄取率常数和食品和水中的金属浓度。对于实验流中的溶液组合物,幼虫的Cd,Cu和Zn的累积主要通过膳食摄取而发生,而溶解金属的摄取对于CO和Ni累积更为重要。 CD,Cu和Ni是金属混合物中毒性和检查金属比的主要贡献者。我们的概念方法和定量结果应该有助于设计实验室实验和实地研究,评估金属吸收途径和金属混合物对水生生物毒的毒性。

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