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Effect of humic and fulvic acid concentrations and ionic strength on copper and lead binding

机译:腐殖酸和黄腐酸的浓度以及离子强度对铜和铅结合的影响

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We investigated the influence of humic and fulvic acid concentration (in the range of 1-1000 mg/L) on the binding of the two trace metals Cu(II) and Pb(II). The ability of the non-ideal competitive adsorption (NICA)-Donnan model to correctly predict Cu and Pb binding at low humic or fulvic acid concentration and lower ionic strength (0.01 M NaNO3), based on model parameters obtained from experiments conducted at high humic or fulvic acid concentrations (similar to 1000 mg/L) and higher ionic strength (0.1 M NaNO3), was tested. The binding of Cu and Pb to humic and fulvic acid in 0.01 M NaNO3 was determined over wide ranges in proton and metal ion activities using three different methods: ligand exchange-adsorptive differential pulse cathodic stripping voltarnmetry at low humic or fulvic acid concentrations (1-3 mg/L), differential pulse anodic stripping voltarnmetry at intermediate humic or fulvic acid concentrations (10-20 mg/L), and ion-selective electrodes at high humic or fulvic acid concentrations (similar to 1000 mg/L). The results demonstrate that binding isotherms for Cu and Pb can be measured at low humic or fulvic acid concentration using suitable voltammetric techniques. The binding isotherms for Cu and Pb to humic and fulvic acid obtained at constant pH values in the range of pH 4-8 are shown to be independent of humic and fulvic acid concentration. The NICA-Donnan model, calibrated for Cu and Pb binding using data measured at high humic and fulvic acid concentrations and an ionic strength of 0.1 M, accurately predicts Cu and Pb binding at low humic and fulvic acid concentrations and lower ionic strength (0.01 M). We conclude that NICA-Donnan parameters obtained by fitting experimental data measured with ion-selective electrodes at high humic or fulvic acid concentrations can be used for geochemical modeling of soils and aquatic environments with much lower concentrations of humic or fulvic acids.
机译:我们调查了腐殖酸和富里酸的浓度(1-1000 mg / L)对两种痕量金属Cu(II)和Pb(II)结合的影响。非理想竞争吸附(NICA)-Donnan模型基于在高腐殖质实验中获得的模型参数,能够正确预测低腐殖酸或富黄酸浓度和较低离子强度(0.01 M NaNO3)下的Cu和Pb结合能力或富里酸浓度(约1000 mg / L)和更高的离子强度(0.1 M NaNO3)进行了测试。使用三种不同的方法测定了质子和金属离子在较宽的质子和金属离子活度范围内,Cu和Pb在0.01 M NaNO3中与腐殖酸和黄腐酸的结合力:低腐殖酸或黄腐酸浓度下的配体交换吸附差分脉冲阴极溶出伏安法(1- 3 mg / L),中等腐殖酸或黄腐酸浓度(10-20 mg / L)的差分脉冲阳极溶出伏安法和腐殖酸或黄腐酸浓度高(类似于1000 mg / L)的离子选择电极。结果表明,可以使用合适的伏安法在低腐殖酸或富里酸浓度下测量Cu和Pb的结合等温线。铜和铅与在pH 4-8范围内的恒定pH值下获得的腐殖酸和富里酸的结合等温线显示与腐殖酸和富里酸的浓度无关。 NICA-Donnan模型通过使用在高腐殖酸和黄腐酸浓度和0.1 M离子强度下测得的数据对铜和铅的结合进行了校准,可准确预测低腐殖酸和黄腐酸浓度和较低的离子强度(0.01 M )。我们得出结论,通过拟合在高腐殖酸或黄腐酸浓度下用离子选择电极测得的实验数据获得的NICA-Donnan参数可用于腐殖酸或黄腐酸浓度低得多的土壤和水生环境的地球化学模拟。

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