4.7 Article

EDDS enhanced PCB degradation and heavy metals stabilization in co-contaminated soils by ZVI under aerobic condition

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 358, 期 -, 页码 265-272

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2018.06.056

关键词

Co-contaminated soil; Zero-valent iron; EDDS; Degradation; Stabilization

资金

  1. National Natural Science Foundation of China [21507033]
  2. Fundament Research Funds for the Central Universites [2662016QD031]
  3. Natural Science Foundation of Hubei Province [2018CFB620]
  4. Guangzhou Scientific and Technological Project [201707010144]

向作者/读者索取更多资源

In the present study, biodegradable ligand EDDS was employed to assist ZVI on simultaneous remediation of PCB and heavy metals co-contaminated soils under aerobic condition. With addition of 4 mmol L-1 EDDS and 5 g L-1 ZVI, the total removal ratio of PCB reached 75.3%, and the stabilization ratio of Pb and Cu attained 97.1% and 91.9% respectively. EDDS played two key roles during the process. Firstly, the addition of EDDS could enhance hydroxyl radical generation by ZVI and oxygen for the oxidation of PCB including distribution in the soil phase and dissolved form in the aqueous phase. Secondly, free EDDS could accelerate the release of Cu and Pb from the soil phase to the aqueous phase. As the oxidation of EDDS and the increase of pH value during the process, the dissolved Cu and Pb could be efficiently stabilized by iron oxyhydroxide through coprecipitation. Compared with ZVI/Air, ZVI/EDDS/Air treatment could significantly enhance the stabilization of Pb and Cu. The reason was the dissolution of Cu and Pb by EDDS extraction could reduce the mass transfer limitations between heavy metals and iron oxyhydroxide. Therefore, our study suggests a promising alternative for remediation of organic compounds and heavy metals co-contaminated soil.

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