Multizone aquatic ecological exposures to landfill contaminants from a groundwater plume discharging to a pond

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DOI

https://doi.org/10.1002/etc.5650

Language of the publication
English
Date
2023-05-17
Type
Article
Author(s)
  • Hua, Tammy
  • Propp, Victoria R.
  • Power, Christopher
  • Brown, Susan J.
  • Collins, Pamela
  • Smith, James E.
  • Roy, James W.
Publisher
Wiley

Abstract

While it is recognized that groundwater contaminant plumes can impact surface waters, there remains little information on the magnitude, spatial extent, and especially temporal variability of the resulting exposure to the variety of aquatic organisms, particularly for stagnant surface waters (e.g., ponds). The present study of a historic landfill plume discharging to a pond investigated contaminant exposure to multiple aquatic zones (endobenthic, epibenthic, pelagic) over approximately 1 year within a temperate climate. Landfill tracers included the artificial sweetener saccharin, ammonium, chloride, and specific conductance. Sampling of pond sediment porewater (upwelling groundwater) and continuous geophysical imaging of the subsurface showed a relatively stable plume footprint covering approximately 26% of the pond, although with spatially varying leachate composition, revealing year-round exposure to endobenthic (within sediments) organisms. Substantial and variable contaminant exposure to epibenthic organisms within the plume footprint was shown by elevated specific conductance measured directly above the sediment interface. Exposure varied daily at times and increased through winter to values representing undiluted plume groundwater. Exposure to pelagic organisms (overlying water) covered a larger area (~50%) due to in-pond circulation. The stream outlet concentrations were stable at approximately 10 times dilution for chloride and saccharin, but were substantially less in summer for ammonium due to in-pond processes. Whereas groundwater contaminants are typically assumed elevated at base flows, the outlet stream contaminant mass discharges to downstream receptors were notably higher in winter than summer, following stream flow patterns. Insights from the present study into the timings and locations of contaminant plume exposure to multiple ecological zones of a pond can provide guidance to contaminated site and aquatic ecosystem managers on improved monitoring, assessment, and remediation protocols.

Subject

  • Land,
  • Nature and environment,
  • Water

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Pagination

18 pages

Peer review

Yes

Open access level

Gold

Identifiers

ISSN
0730-7268
1552-8618

Article

Journal title
Environmental Toxicology and Chemistry
Journal volume
42
Journal issue
8
Accepted date
2023-05-14
Submitted date
2022-12-21

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