Colloidal stability and correlated migration of illite in the aquatic environment: The roles of pH, temperature, multiple cations and humic acid

DLVO理论 胶体 离子强度 化学 伊利石 腐植酸 凝结 色散(光学) 膨润土 范德瓦尔斯力 化学工程 环境化学 无机离子 离子 表面电荷 水溶液 无机化学 高岭石 矿物学 粘土矿物 有机化学 心理学 精神科 工程类 物理 分子 肥料 光学
作者
Xiao-Yan Wei,Duoqiang Pan,Zhi Ping Xu,Dongfan Xian,Xiaolong Li,Zhaoyi Tan,Chunli Liu,Wangsuo Wu
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:768: 144174-144174 被引量:19
标识
DOI:10.1016/j.scitotenv.2020.144174
摘要

The mobility and environmental risk of colloids and associated pollutants are dependent on their dispersion stability under various conditions. In this work, the stability and correlated migration of illite colloids (IC) were systematically investigated over a wide range of aquatic chemistry conditions. The results showed that IC was aggregation favorable at low pH, low temperature and high ionic strength. The critical coagulation concentration (CCC) of IC increased exponentially with increasing values of r/Z 3 , following the Schulze-Hardy and Hofmeister series. Humic acid (HA) greatly mitigated colloid aggregation since the attachment of HA on IC surface increased the steric hindrance and electrostatic potential, and the enhancement of stability was linearly correlated with the HA concentration. The Derjaguin-Landau-Verwey-Overbeek (DLVO) model revealed that the interaction force deriving from van der Waals forces and electrostatic double-layer energy evolved as the aquatic chemistry varied, and the reduction in repulsion force between particles facilitated the colloid collision and then aggregation. The migration of IC in the porous sand column was highly correlated with the dispersion stability and filtration effect, the agglomerated colloids were redispersed and released when conditions favored dispersion. The illite colloids acted as efficient carriers for Eu(III) transport. These findings are essential for improving the understanding of the geological fate of environmental colloids and associated radionuclides. • The stability and migration of IC under different conditions are variable. • Critical coagulation concentration of IC increases exponentially with increasing r/Z 3 . • Migration ability of IC is highly correlated with the stability properties. • IC acts as an efficient carrier for Eu(III) transport under realistic condition.
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