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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Modeling adsorption of copper(II), cadmium(II) and lead(II) on purified humic acid
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Modeling adsorption of copper(II), cadmium(II) and lead(II) on purified humic acid

机译:模拟纯腐殖酸对铜(II),镉(II)和铅(II)的吸附

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摘要

In this study, a system consisting of Pb, Cu and Cd as typical heavy metal pollutants, and purified Aldrich humic acid as a representative of natural organic materials were selected as prototypes La model the environmental system. The effect of environmental factors such as pH, salinity, and concentration on the interaction between metals and humic acid were investigated in detail. The experimental results show that pH and ionic strength are: the most important variables in controlling metal adsorption on humic acid. The results also show a high complexation capacity of humic acid for the metals, especially Cu and Ph, The strength of binding of the three metals is in the sequence of Pb > Cu > Cd. A theoretical model featured by surface complexation reactions and double layer theory combined with the Poisson-Boltzmann equation was applied to simulate the experimental data. Titration data of humic acid with NaOH and Ba(OH)(2) were used as concentrations of strong and weak acid groups on HA and the input; data for the model calculations. Intrinsic adsorption constants and capacitance are estimated based on literature values and optimized to obtain the best agreement between the experimental and the model results. The model was also used to predict surface properties such as the speciation of the metals adsorbed on humic acid. Good agreement between theoretical modeling results and experimental data suggests the applicability of the theoretical model to this system. Given these parameters, theoretical calculations obtained using the model proposed in this study can give a detailed picture of the actual environmental conditions. Also, the model calculations will help in the evaluation of the actual toxicity of heavy metal pollutants in the aquasystem. [References: 33]
机译:在这项研究中,选择了由铅,铜和镉作为典型的重金属污染物,并以纯天然有机材料为代表的纯化的奥尔德里奇腐殖酸组成的系统,作为模拟环境系统的原型。详细研究了pH,盐度和浓度等环境因素对金属与腐殖酸之间相互作用的影响。实验结果表明,pH和离子强度是:控制金属在腐殖酸上吸附的最重要变量。结果还表明,腐殖酸对金属特别是铜和磷具有很高的络合能力。三种金属的结合强度按Pb> Cu> Cd的顺序排列。利用表面络合反应和双层理论结合泊松-玻尔兹曼方程的理论模型对实验数据进行了模拟。腐殖酸用NaOH和Ba(OH)(2)的滴定数据用作HA和输入上强酸和弱酸基团的浓度。用于模型计算的数据。根据文献值估算本征吸附常数和电容,并对其进行优化以获得实验结果与模型结果之间的最佳一致性。该模型还用于预测表面性质,例如吸附在腐殖酸上的金属的形态。理论建模结果与实验数据之间的良好一致性表明了理论模型对该系统的适用性。给定这些参数,使用本研究中提出的模型获得的理论计算可以给出实际环境条件的详细信息。此外,模型计算将有助于评估水族系统中重金属污染物的实际毒性。 [参考:33]

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