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Details

Autor(en) / Beteiligte
Titel
Organic amendments for risk mitigation of organochlorine pesticide residues in old orchard soils
Ist Teil von
  • Environmental pollution (1987), 2016-03, Vol.210, p.182-191
Ort / Verlag
England: Elsevier Ltd
Erscheinungsjahr
2016
Link zum Volltext
Quelle
MEDLINE
Beschreibungen/Notizen
  • Performance of compost and biochar amendments for in situ risk mitigation of aged DDT, DDE and dieldrin residues in an old orchard soil was examined. The change in bioavailability of pesticide residues to Lumbricus terrestris L. relative to the unamended control soil was assessed using 4-L soil microcosms with and without plant cover in a 48-day experiment. The use of aged dairy manure compost and biosolids compost was found to be effective, especially in the planted treatments, at lowering the bioavailability factor (BAF) by 18–39%; however, BAF results for DDT in the unplanted soil treatments were unaffected or increased. The pine chip biochar utilized in this experiment was ineffective at lower the BAF of pesticides in the soil. The US EPA Soil Screening Level approach was used with our measured values. Addition of 10% of the aged dairy manure compost reduced the average hazard quotient values to below 1.0 for DDT + DDE and dieldrin. Results indicate this sustainable approach is appropriate to minimize risks to wildlife in areas of marginal organochlorine pesticide contamination. Application of this remediation approach has potential for use internationally in areas where historical pesticide contamination of soils remains a threat to wildlife populations. [Display omitted] •Historical applications of organochlorine pesticides are a risk to local ecosystems.•Low cost and sustainable mitigation measures are needed to reduce risks.•Organic matter rich amendments were added to contaminated soil.•Earthworms microcosms were used to measure bioaccumulation factors.•Aged composts were most effective at mitigating risks to ecosystems. Incorporation of aged dairy manure and biosolids compost amendments is an effective, low cost approach to mitigate risks to terrestrial wildlife from organochlorine pesticides in soils.

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