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Chinese Journal of Applied Ecology ›› 2011, Vol. 22 ›› Issue (03): 816-824.

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Recent advance in solidification/stabilization technology for the remediation of heavy metals- contaminated soil.

HAO Han-zhou1,2, CHEN Tong-bin1, JIN Meng-gui3, LEI Mei1, LIU Cheng-wu2, ZU Wen-pu4, HUANG Li-min2   

  1. 1Center of Environmental Remediation, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing 100101, China|2College of Resources and Environment, Xianning University, Xianning 437100, Hubei, China;3School of Environmental Studies, China University of Geosciences, Wuhan 430074, China|4Xianning Institute of Environmental Protection, Xianning 437100, Hubei, China
  • Online:2011-03-18 Published:2011-03-18

Abstract: Remediation of heavy metals-contaminated soil is still a difficulty and a hotspot of international research projects. At present, the technologies commonly adopted for the remediation of contaminated sites mainly include excavation, solidification/stabilization (S/S), soil washing, soil vapor extraction (SVE), thermal treatment, and bioremediation. Based on the S/S technical guidelines of Unite State Environmental Protection Agency (EPA) and United Kingdom Environment Agency (EA) and the domestic and foreign patents, this paper introduced the concepts of S/S and its development status at home and abroad, and discussed its future development directions. Solidification refers to a process that binds contaminated media with a reagent, changing the media’s physical properties via increasing its compressive strength, decreasing its permeability, and encapsulating the contaminants to form a solid material. Stabilization refers to the process that involves a chemical reaction which reduces the leachability of a waste, chemically immobilizes the waste and reduces its solubility, making the waste become less harmful or less mobile. S/S technology includes cement solidification, lime pozzolanic solidification, plastic materials stabilization, vitrification, and regent-based stabilization. Stabilization (or immobilization) treatment processes convert contaminants to less mobile forms through chemical or thermal interactions. In stabilization technology, the aim of adding agents is to change the soil physical and chemical properties through pH control technology, redox potential technology, precipitation techniques, adsorption technology, and ion-exchange technology that change the existing forms of heavy metals in soil, and thus, reduce the heavy metals bioavailability and mobility. This review also discussed the S/S evaluation methods, highlighted the need to enhance S/S technology in the molecular bonding, soil polymers, and formulation of China’s S/S technical guidelines.

Key words: soil, heavy metal, pollution, solidification/stabilization