4.7 Article

Enhancing remediation of PAH-contaminated soil through coupling electrical resistance heating using Na2S2O8

期刊

ENVIRONMENTAL RESEARCH
卷 198, 期 -, 页码 -

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2020.110457

关键词

PAHs; Electrical resistance heating; Thermal remediation; Chemical oxidation

资金

  1. National Natural Science Foundation for Young Scientist of China [41907108]
  2. Special Instruments Project of the Chinese Academy of Science [2020000022]
  3. Major Project of the Beijing Science and Technology Ministry [Z191100002019007]
  4. National Key Research and Development Plan [2018YFC1802106]

向作者/读者索取更多资源

This study investigated the coupling of ERH and chemical oxidation technologies for remediation of PAH-contaminated soil, finding a significant negative correlation between PAH removal efficiency and boiling point of the pollutants. The addition of oxidant Na2S2O8 could enhance removal ratio, particularly for PAHs with higher boiling points.
Soil polycyclic aromatic hydrocarbons (PAHs) contamination caused by factory relocations is a serious environmental issue across the world. Electrical resistance heating (ERH) and chemical oxidation are two promising in-situ methods for treating volatile and semi-volatile organic pollutants in contaminated soil. Coupling of ERH and chemical oxidation technologies to improve the remediation efficiency for PAH-contaminated soil was estimated in this study. PAH removal ratio in contaminated soils using ERH treatment were significantly negatively correlated with the boiling point of the pollutants (P = 0.002), and 21.63% (DBA high boiling point) to 71.53% (Nap low boiling point) of PAHs in the contaminated soil were removed in 120 min. With oxidant Na2S2O8 coupling, the removal ratio were increased as more oxidant was added. For one Phe, 35.90% was removed by ERH treatment and increased to 52.90% and 79.42% when 0.05 or 2.5 mmol/g oxidant was added, respectively. PAHs with higher boiling points had more obvious removal ratio, such as Bap, which increased from 23.50% to 85.47% when coupling ERH with Na2S2O8, and Phe which increased from 35.90% to 79.42%. Relationships between boiling points and PAH removal ratio changed with coupled oxidants, indicating a change of mechanism from volatilization to coupling effects of volatilization and oxidation with the introduction of Na2S2O8. A dynamic experiment showed that Na2S2O8 can accelerate 45.50% of the treatment process. The results of this research demonstrated a novel, cost-effective coupling approach for remediating soil contaminated by organic pollutants.

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