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Generalised mathematical model to estimate Zn, Pb, Cd, Ni, Cu, Cr and As release from contaminated estuarine sediment using pH-static leaching tests

机译:利用pH静态浸出试验估算污染河口沉积物中Zn,Pb,Cd,Ni,Cu,Cr和As释放的通用数学模型

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Variations in the environmental conditions in marine and estuarine environments can lead to the release of elements from the sediment to the seawater phase. The pH dependence leaching test with continuous pH-control evaluates the release of constituents as a function of the pH. In this work, analysis of the Zn, Pb, Cd, Ni, Cu, Cr and As release from marine sediment of the Suances estuary (northern Spain) is performed using a leaching test with continuous pH control at pH values of 4, 5, 5.5, 6, 6.5 and 7 with seawater as the leaching liquid. These pollutants present different experimental leaching patterns over time but not all of them are well fitted by the previous models. Hence, a generalised model of the different time-dependent releases under these conditions is proposed. The model considers three reactions in series: (i) the oxidation reaction of the reduced fraction to consider the speciation change over time, (ii) the metal release of the oxidised fraction to the bulk dissolution and (iii) the adsorption or precipitation after the element release. The maximum concentration of each pollutant that could be released from the reduced fraction and from the oxidised fraction and the rate coefficients are the parameters of the proposed model. The rate coefficients of the reactions for each pollutant fit well to a second order equation as a function of pH. Using the Aspen Custom Modeler software, the model parameters have been estimated. A good agreement between the experimental and modelled concentration values is obtained. In addition to improving upon the previous results from models with reactions in parallel, the proposed model predicts the metal mobility delay at short times for Zn, Pb, Cd and Cu and the adsorption or precipitation process after an initial rapid release (As and Cr) reasonably well. The model provides good results when applied to two sediments with different levels of oxidation. The obtained model parameters would be useful when predicting the release of the studied elements for cases in which polluted sediment is totally mixed with inorganic acid-acidified seawater under continuous pH control semibatch leaching tests. (C) 2015 Elsevier Ltd. All rights reserved.
机译:海洋和河口环境中环境条件的变化会导致元素从沉积物中释放到海水中。具有连续pH控制的pH依赖性浸出试验评估了组分随pH的释放。在这项工作中,使用溶出试验对Suances河口(西班牙北部)海洋沉积物中的Zn,Pb,Cd,Ni,Cu,Cr和As释放进行了分析,并采用了连续pH控制在pH值为4,5, 5.5、6、6.5和7以海水为浸出液。随着时间的推移,这些污染物呈现出不同的实验浸出模式,但并非所有模型都能很好地适应先前的模型。因此,提出了在这些条件下不同时间依赖性释放的通用模型。该模型考虑了三个串联反应:(i)还原级分的氧化反应,以考虑物种随时间的变化;(ii)氧化级分的金属释放到整体溶解;(iii)还原后的吸附或沉淀。元素释放。还原部分和氧化部分可能释放的每种污染物的最大浓度以及速率系数是所提出模型的参数。每种污染物的反应速率系数非常适合作为pH值函数的二阶方程。使用Aspen Custom Modeler软件,可以估算模型参数。在实验浓度值和模型浓度值之间获得了很好的一致性。除了改进先前具有并行反应的模型的结果以外,拟议的模型还预测了Zn,Pb,Cd和Cu在短时间内的金属迁移率延迟以及初始快速释放(As和Cr)后的吸附或沉淀过程还算不错当该模型应用于两种具有不同氧化水平的沉积物时,该模型可提供良好的结果。在连续pH控制半间歇浸出试验中,当污染的沉积物与无机酸-酸化的海水完全混合时,获得的模型参数在预测所研究元素的释放时将很有用。 (C)2015 Elsevier Ltd.保留所有权利。

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