Systemic Physiological and Ecotoxicological Research (SPHERE), Department of Biology , University of Antwerp , Groenenborgerlaan 171 , 2020 Antwerp , Belgium.
Physical Chemistry and Soft Matter , Wageningen University & Research , Stippeneng 4 , 6708 WE Wageningen , The Netherlands.
Environ Sci Technol. 2018 Oct 16;52(20):11682-11690. doi: 10.1021/acs.est.8b02896. Epub 2018 Oct 2.
The electrostatic contributions to metal ion binding by fulvic acids (FAs) are characterized in light of recent theoretical developments on description of the net charge density of soft nanoparticles. Under practical electrolyte concentrations, the radius of the small, highly charged soft nanoparticulate FAs is comparable to the electrostatic screening length and their electric potential profile has a bell shape that extends into the surrounding aqueous medium. Consequently, accumulation of counterions in the extraparticulate zone can be significant. By comparison of experimentally derived Boltzmann partitioning coefficients with those computed on the basis of (i) the structural FA particle charge and (ii) the potential profile for a nanoparticulate FA entity equilibrated with indifferent electrolyte, we identify the thickness of the extraparticulate counter charge accumulation shell in 1-1 and 2-1 electrolytes. The results point to the involvement of counterion condensation phenomena and call into question the approaches for modeling electrostatic contributions to ion binding that are invoked by popular equilibrium speciation codes. Overall, the electrostatic contributions to Cd and Cu association with FA are weaker than those previously found for much larger humic acids (HA). The intrinsic chemical binding strength of CdFA is comparable to that of CdHA, whereas CuFA complexes are weaker than CuHA ones.
考虑到最近关于软纳米颗粒净电荷密度描述的理论进展,我们对富里酸 (FA) 与金属离子结合的静电贡献进行了特征描述。在实际电解质浓度下,小而带高电荷的软纳米颗粒 FA 的半径与静电屏蔽长度相当,其电势分布呈钟形,延伸到周围的水介质中。因此,在颗粒外区域积累抗衡离子的情况可能很显著。通过将实验得出的玻尔兹曼分配系数与基于以下内容计算得出的分配系数进行比较:(i) FA 颗粒的结构电荷,(ii) 与惰性电解质平衡的纳米颗粒 FA 实体的电势分布,我们确定了 1-1 和 2-1 电解质中外加抗衡离子积累壳的厚度。结果表明,涉及抗衡离子凝聚现象,并对流行的平衡形态分布代码所采用的离子结合静电贡献建模方法提出了质疑。总体而言,与 FA 结合的 Cd 和 Cu 的静电贡献比以前在更大的腐殖酸 (HA) 中发现的要弱。CdFA 的内在化学结合强度与 CdHA 相当,而 CuFA 配合物则弱于 CuHA 配合物。