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The Influence of pH on Zinc Lability and Toxicity to a Tropical Freshwater Microalga

机译:pH对热带淡水微藻锌湿度和毒性的影响

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Increased focus on the development and application of bioavailability-based metal water quality guideline values requires increased understanding of the influence of water chemistry on metal bioavailability and toxicity. Development of empirical models, such as multiple linear regression models, requires the assessment of the influence of individual water quality parameters as toxicity-modifying factors. The present study investigated the effect of pH on the lability and toxicity of zinc (Zn) to a tropical green microalga (Chlorella sp.). Zinc speciation and lability were explored using the Windermere Humic Aqueous Model (WHAM7), ultrafiltration, and diffusive gradients in thin films (DGT). Zinc toxicity increased significantly with increasing pH from 6.7 to 8.3, with 50% growth inhibition effect concentrations decreasing from 185 to 53 mu g l(-1) across the pH range. Linear relationships between DGT-labile Zn and dissolved Zn did not vary across the tested pH range, nor did the linear relationship between dissolved (0.45 mu m) and ultrafiltered (3 kDa) Zn. Our findings show that Zn toxicity to this freshwater alga is altered as a function of pH across environmentally realistic pH ranges and that these toxicity changes could not be explained by Zn speciation and lability as measured by DGT and WHAM7. Environ Toxicol Chem 2021;00:1-10. (c) 2021 SETAC
机译:增加了对基于生物利用度的制造和应用的焦点,需要增加对水化学对金属生物利用度和毒性影响的了解。经验模型的发展,如多个线性回归模型,需要评估各种水质参数作为毒性修改因子的影响。本研究研究了pH对热带绿色微藻锌(Zn)对锌(Zn)的损伤和毒性的影响(小球藻SP。)。使用Windermere腐殖液(WHAM7),超滤和薄膜(DGT)中的扩散梯度探索锌的形态和倾斜。锌毒性随着6.7至8.3的增加而显着增加,50%的生长抑制效应浓度在pH范围内从185-53μg(-1)降低。 DGT - 不稳定Zn与溶解Zn之间的线性关系在测试的pH范围内没有变化,也不会使溶解(&0.45μm)和超滤(& 3kda)zn之间的线性关系。我们的研究结果表明,这种淡水藻类的Zn毒性随着环保性的pH范围的pH函数而改变,并且通过DGT和WHAM7测量的Zn形态和可怜的毒性无法解释这些毒性变化。环境毒素化学2021; 00:1-10。 (c)2021 Setac

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