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Monitoring and modelling of the solid-solution partitioning of metals and As in a river floodplain redox sequence

机译:河流漫滩氧化还原序列中金属和砷固溶分配的监测和建模

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For a period of 2 a, pore water composition in a heavily contaminated river floodplain soil was monitored in situ. Pore water samples were collected 12 times over all seasons in a profile ranging from aerobic to sulphidic redox conditions, and As, Cd, Cr, Cu, Pb, Zn, Mn, Fe, Ca, Cl, SO4. DOC,IOC and pH were determined. The variability of pH, IOC, DOC and Ca was found to be rather small during the year and within the profile (rsd < 0.04, 0.16. 0.24 and 0.22, respectively). The temporal variability of the metal and As concentrations was small, too, whereas changes with depth were distinct. Under sulphidic conditions, concentrations were below 1 mu g L-1 (Cd, Cu, Pb) or 10 mu g L-1 (Zn, As). The data set was compared with results from a geochemical model that was fully parameterised from literature data and included equilibrium speciation, sorption and mineral dissolution. The general pattern of the solid-solution partitioning of Cd, Cu, Zn and As in the profile was predicted well by mechanistic geochemical modelling on the basis of solid phase composition. Metals strongly bound to organic matter Such as Cd and Cu were predicted better than metals mainly present within a mineral. Detailed information regarding the presence of colloidal Fe and Mn in pore water might improve the prediction of the solid-solution partitioning of a number of metals. The study also indicates that the chemical behaviour of Pb is still not understood sufficiently. (c) 2008 Elsevier Ltd. All rights reserved.
机译:在2 a的时间内,对重污染的河漫滩土壤中的孔隙水成分进行了现场监测。在所有季节中,从好氧到硫化物的氧化还原条件以及As,Cd,Cr,Cu,Pb,Zn,Mn,Fe,Ca,Cl,SO4的范围内,收集了12次孔隙水样品。测定DOC,IOC和pH。发现pH值,IOC,DOC和Ca的变化在一年中以及在该曲线内都很小(分别为rsd <0.04、0.16、0.24和0.22)。金属和砷的浓度随时间的变化也很小,而随深度的变化却很明显。在硫化条件下,浓度低于1微克L-1(镉,铜,铅)或10微克L-1(锌,砷)。将该数据集与地球化学模型的结果进行了比较,该地球化学模型已从文献数据中完全参数化,包括平衡形态,吸附和矿物溶解。通过固相成分的力学地球化学模拟可以很好地预测剖面中Cd,Cu,Zn和As的固溶分配规律。据预测,与镉和铜等有机物牢固结合的金属比主要存在于矿物中的金属要好。有关孔隙水中胶体Fe和Mn的存在的详细信息可能会改善对多种金属固溶分配的预测。研究还表明,对Pb的化学行为仍知之甚少。 (c)2008 Elsevier Ltd.保留所有权利。

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