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Title: Fate and stability of nonextractable residues of [{sup 14}C]PAH in contaminated soils under environmental stress conditions

Journal Article · · Environmental Science and Technology
DOI:https://doi.org/10.1021/es9708272· OSTI ID:655400
;  [1];  [2]
  1. Hochschule Breman (Germany). Inst. fuer Technischen Umweltschutz
  2. Umwelttechnisches Buero und Labor, Hamburg (Germany)

It has been recognized during recent years that polycyclic aromatic hydrocarbons (PAH) may form nonextractable residues in soil and that this process may be stimulated by microbial activities. To use that process intentionally for soil bioremediation, one must ensure that the formed nonextractable PAH residues will not be released from the soil on the long run. The long-term stability of four different nonextractable [{sup 14}C]PAH residues ([{sup 14}C]naphthalene, [{sup 14}C]anthracene, [{sup 14}C]pyrene, and [{sup 14}C]benzo[a]pyrene) was therefore monitored under different ecological stress conditions. It was found that a considerable fraction of the total [{sup 14}C]PAH residues could be released as {sup 14}CO{sub 2} from the soil being partly due to a biogenic reduction of the nonextractable {sup 14}C residue fraction. The turnover of this fraction was comparable to the natural turnover rate for humic substances. Neither the addition of humus-degrading microorganisms nor a mechanical stress treatment of the soil structure by freezing and thawing led to a mobilization of the nonextractable [{sup 14}C]PAH residues. However, a significant mobilization of the nonextractable {sup 14}C activity occurred when EDTA was added to the soil. The metal-organic soil complexes were destabilized by this complexing agent and released {sup 14}C activity that was attached to colloidal or dissolved organic matter.

OSTI ID:
655400
Journal Information:
Environmental Science and Technology, Vol. 32, Issue 17; Other Information: PBD: 1 Sep 1998
Country of Publication:
United States
Language:
English