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Contribution of capillary electrophoresis to an integrated vision of humic substances size and charge characterizations

机译:毛细管电泳对腐殖质大小和电荷表征的综合观察

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The physicochemical properties of three different humic substances (HS) are probed using capillary zone electrophoresis in alkaline carbonate buffers, pH 10. Special attention is drawn to the impact of the electrolyte ionic strength and counter-ion nature, chosen within the alkali-metal series, on HS electrophoretic mobility. Taylor-Aris dispersion analysis provides insights into the hydrodynamic radius (R _H) distributions of HS. The smallest characterized entities are of nanometric dimensions, showing neither ionic strength- nor alkali-metal-induced aggregation. These results are compared with the entities evidenced in dynamic light scattering measurements, the size of which is two order of magnitude higher, ca. 100nm. The extended Onsager model provides a reasonable description of measured electrophoretic mobilities in the ionic strength range 1-50mM, thus allowing the estimation of limiting mobilities and ionic charge numbers for the different HS samples. An unexpected HS electrophoretic mobility increase (in absolute value) is observed in the order Li ~+
机译:在pH为10的碱性碳酸盐缓冲液中,通过毛细管区带电泳对三种不同的腐殖质(HS)的理化性质进行了研究。特别注意在碱性金属系列中选择的电解质离子强度和抗衡离子性质的影响。 ,关于HS电泳迁移率。泰勒-阿里斯(Taylor-Aris)色散分析提供了HS流体力学半径(R _H)分布的见解。最小的特征实体具有纳米尺寸,既不显示离子强度也不显示碱金属诱导的聚集。将这些结果与动态光散射测量中证明的实体进行比较,其尺寸大约高两个数量级。 100纳米扩展的Onsager模型提供了离子强度范围为1-50mM的电泳迁移率的合理描述,因此可以估算不同HS样品的极限迁移率和离子电荷数。以Li〜+

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