Literature DB >> 35700766

Adsorption characteristics of strontium by bentonite colloids acting on claystone of candidate high-level radioactive waste geological disposal sites.

Rui Zuo1, Zuorong Xu1, Xin Wang2, Jie Yang3, Xiaofeng Du4, Can Du5, Weihai Cai1, Yunxiang Xu1, Ziyi Wu1.   

Abstract

The bentonite colloid produced in the deep geological repository of high-level radioactive waste can directly affect the migration of radionuclide strontium when it acts on claystone. The adsorption characteristics of strontium were investigated on claystone with the presence or absence of bentonite colloids from the Suhongtu area of China. The effects of different influencing factors, such as pH and solid content, on the adsorption process were investigated by batch adsorption experiments, and spectroscopic techniques were used to characterize the samples before and after adsorption of strontium. The results show that the presence of bentonite colloids can promote the adsorption of strontium on claystone under alkaline conditions. and the general order kinetic model provided the best fit to the experimental data. Strontium is adsorbed on the surface of claystone and bentonite colloid by ion exchange and surface complexation. Most of the Sr2+ formed SrCO3 with CO32- after ion exchange with Ca2+ and Mg2+ in plagioclase and dolomite, and a small amount of Sr2+ was adsorbed by complexation with -OH, Al-O and Si-O. These results provide a scientific basis for predicting the migration of strontium in subsurface porous media and the siting of high-level radioactive waste repositories.
Copyright © 2022 Elsevier Inc. All rights reserved.

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Keywords:  Adsorption; Bentonite colloid; Claystone; Deep geological repository; Strontium

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Year:  2022        PMID: 35700766     DOI: 10.1016/j.envres.2022.113633

Source DB:  PubMed          Journal:  Environ Res        ISSN: 0013-9351            Impact factor:   8.431


  1 in total

1.  A Study of Sr Sorption Behavior in Claystone from a Candidate High-Level Radioactive Waste Geological Disposal Site under the Action of FeOOH Colloids.

Authors:  Jinsheng Wang; Weihai Cai; Rui Zuo; Can Du
Journal:  Int J Environ Res Public Health       Date:  2022-08-12       Impact factor: 4.614

  1 in total

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