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首页> 外文期刊>Journal of Colloid and Interface Science >Effect of soil fulvic and humic acid on binding of Pb to goethite-water interface: Linear additivity and volume fractions of HS in the Stern layer
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Effect of soil fulvic and humic acid on binding of Pb to goethite-water interface: Linear additivity and volume fractions of HS in the Stern layer

机译:黄腐和腐殖酸对铅与针铁矿-水界面结合的影响:斯特恩层中HS的线性加和和体积分数

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The effects of soil fulvic (JGFA) and humic acid (JGHA) on Pb binding to goethite were investigated with batch experiments and modeling. The CD-MUSIC and NICA-Donnan model could describe the Pb binding to, respectively, the binary Pb-goethite and Pb-HS systems. The adsorption of humic substances (HS) on goethite strongly depended on pH and was promoted by Pb binding. The mass amount of adsorbed JGFA (mg/g) was smaller than that of JGHA, but when expressed in number of particlesm(2) the JGFA adsorption was higher. At low pH and low initial Pb concentration the linear additivity rule always underestimated Pb adsorption to goethite-HS complex, which was caused by the strong effect of adsorbed HS on the electrostatic potentials in the Stern layer region. At other conditions except the 450 mg/L JGHA in the 0.5 mmol/L Pb system the additivity rule predicted the experimental results reasonably well, and at high pH nearly all Pb is bound to goethite. At the same mass adsorbed, the effect of JGFA on Pb adsorption to goethite is stronger than that of JGHA, due to the fact that the JGFA particles were primarily adsorbed in the Stern layer, whereas JGHA particles were present in both Stern layer and diffuse layer. Therefore, the electrostatic potential profile of the goethite-JGFA complex is considerably different from that of goethite-JGHA complex and affects Pb binding strongly. (C) 2015 Elsevier Inc. All rights reserved.
机译:通过分批实验和建模,研究了土壤黄腐素(JGFA)和腐殖酸(JGHA)对Pb与针铁矿结合的影响。 CD-MUSIC和NICA-Donnan模型可以描述Pb与二元Pb-针铁矿和Pb-HS系统的结合。腐殖质(HS)在针铁矿上的吸附强烈依赖于pH值,并通过Pb结合而促进。吸附的JGFA的质量(mg / g)小于JGHA的质量,但当以颗粒数/ nm(2)表示时,JGFA的吸附较高。在低pH和低初始Pb浓度下,线性可加性规则始终低估了Pb对针铁矿-HS络合物的吸附,这是由于HS吸附对斯特恩层区域中静电势的强烈影响所致。在除0.5 mmol / L Pb体系中的450 mg / L JGHA以外的其他条件下,加性法则可以很好地预测实验结果,在高pH下几乎所有Pb都与针铁矿结合。在相同吸附质量下,由于JGFA颗粒主要吸附在Stern层中,而JGHA颗粒同时存在于Stern层和扩散层中,因此JGFA对Pb吸附针铁矿的影响要强于JGHA。 。因此,针铁矿-JGFA配合物的静电势分布与针铁矿-JGHA配合物的静电势分布有很大不同,并强烈影响Pb的结合。 (C)2015 Elsevier Inc.保留所有权利。

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