Incentive effect of bentonite and concrete admixtures on stabilization/solidification for heavy metal-polluted sediments of Xiangjiang River View Full Text


Ontology type: schema:ScholarlyArticle     


Article Info

DATE

2016-10-19

AUTHORS

Ming Yan, Guangming Zeng, Xiaoming Li, Jianmin He, Guiqiu Chen, Danlian Huang, Lin Tang, Cui Lai, Chang Zhang, Xiaodong Li, Lichao Wang, Zhi Guo, Wei Tao

ABSTRACT

Solidification is a very effective way to alleviate heavy metal impacts to the environment. In this paper, an improved method was adopted herein for the solidification/stabilization (S/S) of sediments with cement-based additives and low content of cement in S/S materials. Sediments in Xiangjiang River, containing high concentrations of Cu, Cd, and Pb, were solidified/stabilized by binders of cement, fly ash, and bentonite. Admixtures such as sodium lignosulfonate, sodium lauryl sulfate, and triethanolamine were used to improve the bonding properties of S/S, which had never been investigated before. Results demonstrated that the addition of concrete admixtures had significant effects on the S/S of sediments. Sequential extraction method indicates that the concentrations of heavy metals changed significantly after solidification and were more stable over time, with the exception of Pb. In addition, SEM images indicated that the main hydrated product was ettringite. Large quantities of calcium silicate hydrates (CSH) formed and filled the solidified sediment in 60 days. The results provide further insights into the transformation of heavy metals during S/S. More... »

PAGES

892-901

References to SciGraph publications

  • 2013-07-10. Shale gas: Surface water also at risk in NATURE
  • 2006-03. The development of cement and concrete additive in APPLIED BIOCHEMISTRY AND BIOTECHNOLOGY
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    http://scigraph.springernature.com/pub.10.1007/s11356-016-7527-y

    DOI

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    DIMENSIONS

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    PUBMED

    https://www.ncbi.nlm.nih.gov/pubmed/27761859


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    83 sodium lignosulfonate
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