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Comparison of Cd(II), Cu(II), and Pb(II) biouptake by green algae in the presence of humic acid

机译:腐殖酸存在下绿藻对Cd(II),Cu(II)和Pb(II)生物吸收的比较

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摘要

The present study examines the role of humic acid, as a representative of dissolved organic matter, in Cd(II), Cu(II), and Pb(II) speciation and biouptake by green microalgae. Cellular and intracellular metal fractions were compared in the presence of citric and humic acids. The results demonstrated that Cd and Cu uptake in the presence of 10 mg L-1 humic acid was consistent with that predicted from measured free metal concentrations, while Pb biouptake was higher. By comparing Cd, Cu, and Pb cellular concentrations in the absence and presence of humic acid, it was found that the influence of the increased negative algal surface charge, resulting from humic acid adsorption, on cellular metal was negligible. Moreover, the experimental results for all three metals were in good agreement with the ternary complex hypothesis. Given that metal has much higher affinity with algal sites than humic acid adsorbed to algae, the contribution of the ternary complex to metal bioavailability was negligible in the case of Cd (II) and Cu (II). In contrast, the ternary complex contributed to over 90% of total cellular metal for Pb(II), due to the comparable affinity of Pb to algal sites in comparison with humic acid adsorbed to algae. Therefore, the extension of the biotic ligand model by including the formation of the ternary complex between the metal, humic acid, and algal surface would help to avoid underestimation of Pb biouptake in the presence of humic substances by green algae Chlorella kesslerii.
机译:本研究探讨了腐殖酸作为可溶性有机物的代表在绿色微藻对Cd(II),Cu(II)和Pb(II)的形态形成和生物吸收中的作用。在柠檬酸和腐殖酸存在下比较细胞和细胞内金属部分。结果表明,在10 mg L-1腐殖酸存在下对Cd和Cu的吸收与根据测得的游离金属浓度预测的一致,而Pb的生物吸收较高。通过比较在不存在和存在腐殖酸的情况下Cd,Cu和Pb的细胞浓度,发现由于腐殖酸吸附而增加的负藻表面电荷对细胞金属的影响可以忽略不计。此外,所有三种金属的实验结果与三元复合物假设都很好地吻合。由于金属对藻类部位的亲和力比吸附到藻类上的腐殖酸要高得多,因此在Cd(II)和Cu(II)的情况下,三元络合物对金属生物利用度的贡献可忽略不计。相比之下,由于与吸附到藻类的腐殖酸相比,Pb对藻类位点的亲和力相当,因此三元络合物贡献了Pb(II)的全部细胞金属的90%以上。因此,通过包括金属,腐殖酸和藻类表面之间三元复合物的形成来扩展生物配体模型将有助于避免在存在腐殖质的情况下绿藻小球藻(Chlorella kesslerii)对铅生物吸收的低估。

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