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March 18, 2026Journal of Hydrology1 citationsOpen Access

Effluent dynamics from a degraded peatland catchment and the influence of an on-site pond—a warning sign

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LMLipe R.D. MendesUniversity College DublinCPCatharine PschenyckyjTeesside UniversityBMBehzad MozafariUniversity College Dublin

Key Points

  • The study investigates the seasonal water quality dynamics in a degraded peatland catchment following heavy rainfall and evaluates the effect of an onsite pond.
  • Monitored water quality over three years in a 16.4 ha cutaway peatland catchment in Ireland
  • Utilized automated storm-event sampling and grab sampling for water assessments
  • Analyzed relationships between water quality and climatic drivers such as flow and temperature
  • High nutrient exports occurred infrequently during extreme flow events.
  • Water quality demonstrated strong seasonal variability related to climatic conditions and flow.
  • Neutral, nutrient-rich effluents stemmed from warm, dry periods, while cold, wet conditions led to more acidic waters.

Abstract

• Large nutrient exports are infrequent and short-lived depending on heavy rainfalls. • Heavy rainfalls regulate nutrient and ion concentrations by a dilution effect. • Effluent water quality varies seasonally as controlled by climatic factors. • The pond assures particle retention but fails to treat soluble components. • Downstream aquatic communities are subject to harmful effects year-round. Peatlands are important stores of carbon and nutrients, but drainage for peat extraction disrupts hydrology and water quality, enhancing leaching of organic matter and nutrients. This study examined the seasonal dynamics of water quality from a 16.4 ha industrial cutaway peatland catchment in Ireland following storm events and evaluated the influence of an on-site sedimentation pond. Water quality, including carbon, nitrogen and major ions, was monitored over three years using automated storm-event sampling, grab sampling and continuous flow measurements to assess seasonal variability, pond treatment effects and relationships with climatic drivers (flow and temperature). High flows (≥25 L/s) were infrequent, whereas low flows (≤5 L/s) were common. Carbon and nitrogen concentrations varied markedly between storm events, with increasing flow generally causing dilution. Despite their rarity, short-lived high flows accounted for a large proportion (>70–85%) of annual nutrient export. Effluent water quality exhibited clear seasonal patterns and was strongly related to flow and temperature. Warm, dry periods produced more neutral, nutrient-rich effluents, whereas colder, wetter conditions generated more acidic waters with lower concentrations, regulated by pH. Oxygen availability within the catchment appeared to influence carbon production in effluents concurrently with ammonia production. The pond received subsurface inflows low in dissolved oxygen and exhibited highly variable hydraulic retention times (mean ± standard deviation 90 ± 551 days; median 15 days). While the pond retained particulate material, its influence on dissolved constituents was limited. These effluents pose risks to receiving waters, highlighting the need for improved mitigation strategies in extracted peatland catchments.

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Cite This Study

Mendes et al. (2026) studied this question.

synapsesocial.com/papers/69ba41e04e9516ffd37a1c87https://doi.org/10.1016/j.jhydrol.2026.135313
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Harmful effluents from a degraded peatland catchment following rainstorms2024
  2. 2Impact of Peat Extraction on Downstream Concentrations and Attenuation of Dissolved Organic Carbon and Nutrients2024
  3. 3Dissolved Nutrients in Natural and Rewetted Peatlands: A Comparative Analysis2024
  4. 4Assessment of Nitrate and Phosphate Concentrations in Discharge Water from Ditch Networks across Different Peatland Use Types: Implications for Sustainable Peatland Use Management2024 · 6 citations
  5. 5Sediment ponds; an effective mitigation measure for reducing nutrient export in agricultural drainage ditches? 2024