Environmental effects and instability mechanism of cadmium, lead and nickel contaminated soil solidified by inorganic materials
Environmental Engineering|更新时间:2024-07-02
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Environmental effects and instability mechanism of cadmium, lead and nickel contaminated soil solidified by inorganic materials
“The latest research has found that inorganic materials can effectively solidify cadmium, lead, and nickel contaminated soil, increasing the solidification rate to over 90%. However, high temperatures and freeze-thaw cycles may increase environmental risks, and the impact of environmental temperature needs to be considered.”
Journal of Civil and Environmental EngineeringVol. 46, Issue 4, Pages: 202-210(2024)
作者机构:
1.河北工业大学,土木与交通学院,天津 300401
2.河北工业大学,河北省土木工程技术研究中心,天津 300401
作者简介:
LI Min (1985- ), PhD, professor, main research interest: disposal of contaminated soil, E-mail: limin0409@hebut.edu.cn.
基金信息:
National Natural Science Foundation of China(51978235);Natural Science Foundation of Hebei Province(E2018202274);Science and Technology Innovation Strategic Fundation of Hebei(20180602)
LI Min,ZHANG Ranran,TIAN Bingxue.Environmental effects and instability mechanism of cadmium, lead and nickel contaminated soil solidified by inorganic materials[J].Journal of Civil and Environmental Engineering,2024,46(04):202-210.
LI Min,ZHANG Ranran,TIAN Bingxue.Environmental effects and instability mechanism of cadmium, lead and nickel contaminated soil solidified by inorganic materials[J].Journal of Civil and Environmental Engineering,2024,46(04):202-210. DOI: 10.11835/j.issn.2096-6717.2022.022.
Environmental effects and instability mechanism of cadmium, lead and nickel contaminated soil solidified by inorganic materials