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Leaching characterisation and geochemical modelling of minor and trace elements released from recycled concrete aggregates

机译:再生混凝土骨料中微量元素和微量元素的浸出特性和地球化学模型

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摘要

The pH dependent release of Cd, Cr, Cu, Mn, Mo, Ni, Pb, V and Zn from different recycled concrete aggregate samples was determined. Geochemical speciation modelling was applied on the concentrations of Cu, Cr, Mo and Ni in the leachates in order to predict the measured concentrations and the specific release mechanisms. The model was able to reproduce the characteristic pH dependent release patterns for these elements and reasonable to sometimes excellent matches between the predicted and measured concentrations were achieved. Binding of Mo and Cr as oxyanions (MoO_4~(2-) and CrO_4~(2-)) to ettringite was modelled with fair agreement for Cr only. For Cu and Ni, the predicted and measured concentrations agreed well for the partly carbonated sample at high alkaline pH (11–13). The importance of complexation to humic substances was also shown in samples derived from construction debris.
机译:测定了不同再生混凝土骨料样品中Cd,Cr,Cu,Mn,Mo,Ni,Pb,V和Zn的pH依赖性释放。对渗滤液中Cu,Cr,Mo和Ni的浓度进行了地球化学形态模拟,以预测测得的浓度和具体的释放机理。该模型能够重现这些元素的特征性pH依赖性释放模式,并且在预测浓度和测量浓度之间实现了合理的匹配,有时甚至达到了极好的匹配。 Mo和Cr作为氧阴离子(MoO_4〜(2-)和CrO_4〜(2-))与钙矾石的键合仅以合理的同意为准。对于铜和镍,在高碱性pH(11-13)下,部分碳酸化样品的预测和实测浓度非常吻合。复合物对腐殖质的重要性也显示在来自建筑垃圾的样品中。

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