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The importance of drying and grinding samples for determining mobile chromium fractions in polluted river sediments

机译:干燥和研磨样品对测定污染的河流沉积物中活动铬含量的重要性

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A possible impact of sample preparation on the chemical fractionation results is generally underestimated in studies of forms of occurrence of heavy metals in river sediments. Our analysis of the recently published results of sequential extraction of chromium has revealed the effect of sample grinding on the result of determination of mobile chromium fractions in river sediments. This observation has been experimentally verified along with the analysation of potential effect of river sediment drying conditions on chromium distribution pattern. The studies were carried out on river sediments polluted with tannery effluents (Cr, 29.2-233 mg/kg). The determined content of chromium bound to carbonates in powdered samples was 2 to 7 times higher than those in raw river sediment samples. It was shown that the main reason was the different kinetic characteristics of chromium leaching in these sediments. Using the shrinking core model, it was found that diffusion through the "ash layer" was the rate-controlling step during the extraction of the carbonate fraction of chromium. It has been additionally confirmed that common air drying of sediment samples does not affect the results of chemical fractionation of chromium. The results of our studies are also vital for the assessment of environmental risk posed by river sediments polluted with heavy metals. In the case of sediment samples used in this study, powdering changed the risk category (RAC) from low risk to high risk. Hence, in order to achieve a realistic assessment of chromium mobility and environmental risk, it is advisable to use raw samples, despite their poorer homogeneity, and thus, lower precision of chemical fractionation results.
机译:在研究河流沉积物中重金属的存在形式时,通常低估了样品制备对化学分馏结果的可能影响。我们对最近发表的铬的连续提取结果的分析表明,样品研磨对测定河流沉积物中可移动的铬组分的影响。通过分析河流沉积物干燥条件对铬分布模式的潜在影响,已对该实验进行了实验验证。该研究是针对被制革厂废水(Cr,29.2-233 mg / kg)污染的河流沉积物进行的。粉末样品中与碳酸盐结合的铬的测定含量是原始河底沉积物样品中铬的2至7倍。结果表明,主要原因是这些沉积物中铬浸出的动力学特征不同。使用收缩核模型,发现通过“灰层”的扩散是铬的碳酸盐馏分提取过程中的速率控制步骤。另外已经证实,沉积物样品的常规空气干燥不会影响铬的化学分馏结果。我们的研究结果对于评估重金属污染的河流沉积物带来的环境风险也至关重要。就本研究中使用的沉积物样品而言,粉化将风险类别(RAC)从低风险变为高风险。因此,为了获得对铬迁移率和环境风险的现实评估,尽管原始样品的均一性较差,但化学分馏结果的精度较低,因此建议使用原始样品。

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