Back to Search Start Over

Remediation of Cd- and Pb- contaminated clay soils through combined freeze-thaw and soil washing.

Authors :
Rui, Dahu
Wu, Zhipeng
Ji, Mingchng
Liu, Jianfei
Wang, Shuren
Ito, Yuzuru
Source :
Journal of Hazardous Materials. 5/5/2019, Vol. 369, p87-95. 9p.
Publication Year :
2019

Abstract

Highlights • The combined freeze-thaw and soil washing method for remediation of heavy metal contaminated clay soils is proposed. • The method can improve removal efficiency due to repeated freeze-thaw destroying soil particle structure. • The washing efficiency can be guaranteed at low liquid/soil ratios through combined freeze-thaw and soil washing. • To provide basis for remediating heavy metal contaminated soils in seasonal frozen area by using natural cold energy. Abstract To improve the washing efficiency for low-permeability clay, the method of freeze-thaw synergistic chemical washing was put forward to study the cadmium (Cd)-and lead (Pb)- real-site contaminated soils as the research object and ethylene diaminete traacetic acid (EDTA) was selected as the eluent to conduct a soil column washing test of heavy metal-contaminated clay soil. Results show that repeated freeze-thaw of soil can destroy the original structure of soil particles, help the eluent fully interact with pollutants, and thus improve washing efficiency. Cd was showed the best removal effect after supplying 0.1 mol/L EDTA twice and deionized water thrice by freeze-thaw and washing, and the removal rate reached 88.07%. Pb was also showed the better removal effect after three times of 0.1 mol/L EDTA and four times of deionized water through freeze-thaw and washing, and the removal rate reached 37.78%. Combined freeze-thaw and chemical washing can effectively remove the reducible and residual fractions of Cd and Pb in the clay soils. Moreover, freeze-thaw synergistic chemical washing can remove Cd and Pb at low liquid/soil ratios. The conclusions obtained in the study are of important theoretical value and technical support for the similar engineering. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03043894
Volume :
369
Database :
Academic Search Index
Journal :
Journal of Hazardous Materials
Publication Type :
Academic Journal
Accession number :
135660499
Full Text :
https://doi.org/10.1016/j.jhazmat.2019.02.038