首页> 外文期刊>Aquatic Toxicology >Effect of dissolved organic matter (DOM) of contrasting origins on Cu and Pb speciation and toxicity to Paracentrotus lividus larvae.
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Effect of dissolved organic matter (DOM) of contrasting origins on Cu and Pb speciation and toxicity to Paracentrotus lividus larvae.

机译:不同来源的可溶性有机物(DOM)对Cu和Pb形态的影响以及对 Paracentrotus lividus 幼虫的毒性。

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Water samples of contrasting origin, including natural seawater, two sediment elutriates and sewage-influenced seawater, were collected and obtained to examine the effect of the dissolved organic matter (DOM) present on metal bioavailability. The carbon content (DOC) and the optical properties (absorbance and fluorescence) of the coloured DOM fraction (CDOM) of these materials were determined. Cu and Pb complexation properties were measured by anodic stripping voltammetry (ASV) and the effect of DOM on Cu and Pb bioavailability was studied by means of the Paracentrotus lividus embryo-larval bioassay. Sediment elutriates and sewage-influenced water (1) were enriched 1.4-1.7 times in DOC; (2) absorbed and reemitted more light; and (3) presented higher Cu complexation capacities (LCu) than the natural seawater used for their preparation. LCu varied from 0.08 micro M in natural seawater to 0.3 and 0.5 micro M in sediment elutriates and sewage-influenced water, respectively. Differences in DOC, CDOM and Cu complexation capacities were reflected in Cu toxicity. DOM enriched samples presented a Cu EC50 of 0.64 micro M, significantly higher than the Cu EC50 of natural and artificial seawater, which was 0.38 micro M. The protecting effect of DOM on Cu toxicity greatly disappeared when the samples were irradiated with high intensity UV-light. Cu toxicity could be successfully predicted considering ASV-labile Cu concentrations in the samples. Pb complexation by DOM was only detected in the DOM-enriched samples and caused little effect on Pb EC50. This effect was contrary for both elutriates: one elutriate reduced Pb toxicity in comparison with the control artificial seawater, while the other increased it. UV irradiation of the samples caused a marked increase in Pb toxicity, which correlated with the remaining DOC concentration. DOM parameters were related to Cu speciation and toxicity: good correlations were found between DOC and Cu EC50, while LCu correlated better with the fluorescence of marine humic substances. The present results stress the importance of characterizing not only the amount but also the quality of seawater DOM to better predict ecological effects from total metal concentration data.
机译:收集并获得了具有相反来源的水样,包括天然海水,两种沉积物冲洗液和受污水影响的海水,以检查存在的溶解有机物(DOM)对金属生物利用度的影响。确定了这些材料的有色DOM组分(CDOM)的碳含量(DOC)和光学性质(吸光度和荧光)。通过阳极溶出伏安法(ASV)测定Cu和Pb的络合特性,并通过 Paracentrotus lividus 胚胎幼虫生物测定法研究了DOM对Cu和Pb生物利用度的影响。沉积物中的污水和污水影响的水(1)在DOC中富集1.4-1.7倍; (2)吸收并释放更多的光; (3)呈现出比其制备所用的天然海水更高的铜络合能力( L Cu )。 L Cu 的变化范围从天然海水中的0.08 microM到沉积物水和污水影响的水中的0.3和0.5 microM。铜毒性反映了DOC,CDOM和铜络合能力的差异。富含DOM的样品的Cu EC 50 为0.64 microM,显着高于天然和人工海水的Cu EC 50 0.38 microM。当样品用高强度紫外线照射时,DOM对Cu的毒性大大消失。考虑到样品中ASV不稳定的铜浓度,可以成功预测铜的毒性。 DOM引起的Pb络合仅在富含DOM的样品中检测到,对Pb EC 50 的影响很小。两种洗脱液的效果都相反:与对照人工海水相比,一种洗脱液降低了Pb的毒性,而另一种洗脱液则提高了其毒性。样品的紫外线照射导致Pb毒性显着增加,这与剩余的DOC浓度相关。 DOM参数与Cu的形态和毒性有关:DOC与Cu EC 50 之间具有良好的相关性,而 L Cu 与荧光的相关性更好海洋腐殖质。目前的结果强调了不仅要表征海水DOM的数量而且要表征其质量的重要性,以便更好地根据总金属浓度数据预测生态影响。

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