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February 2, 20260 citationsOpen Access

Characterization and Impact of Meteorological Environmental Parameters on Gas Concentrations (NH3 and CH4) in a Maternity Pig Farm in Southeastern Spain

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MGMelisa Gómez GarridoMTMartire Angélica Terrero TurbíIBIsabel María Fernández Bastida

Key Points

  • The aim is to understand how meteorological factors influence gas emissions from a pig farm.
  • Monitored a maternity pig farm for 360 days
  • Used sensors near slurry lagoons and surrounding areas
  • Recorded environmental variables such as temperature, humidity, wind, and precipitation
  • Concentrations of NH3 and CH4 were significantly higher at the lagoon compared to surrounding areas
  • Temperature and humidity were key factors for increased emissions
  • Precipitation and wind affected gas levels through resuspension and dispersion

Abstract

Intensive pig production generates significant emissions of ammonia (NH3) and methane (CH4), gases with both environmental and health impacts, primarily originating from slurry storage lagoons and their management. This study monitored a maternity pig farm over a 360 day period, using sensors located next to the slurry storage lagoon (Sensor 4) and in the immediate external surroundings of the facility, while simultaneously recording environmental variables (temperature, relative humidity, wind, and precipitation). The results showed that concentrations at the lagoon were thousands to tens of thousands of times higher than those measured in the surrounding area, with temperature and relative humidity emerging as key factors that increase volatilization and microbial generation, especially in summer under medium humidity conditions. Precipitation and wind modulate concentrations through resuspension and dispersion processes. Overall, the slurry storage lagoon constitutes the primary hotspot of emissions, and proper sensor placement is essential to accurately estimate its real impact, while integrating climatic and spatial conditions is crucial for designing and implementing effective mitigation strategies in intensive pig production systems.

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Cite This Study

Garrido et al. (2026) studied this question.

synapsesocial.com/papers/6980ffb4c1c9540dea812658https://doi.org/10.3390/agriculture16030349
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Also Consider

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

  1. 1An approach to predict methane emissions from pig housing by developing surrogated models of mass transfer coefficient and methane concentration at slurry surface2026
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  3. 3Effect of Slurry Acidification In-House by a Dynamic Spraying System on Ammonia and Greenhouse Gas Emissions from Pig-Fattening Farms in Hot Summer Climates2025
  4. 4Implications of seasonal and daily variation on methane and ammonia emissions from naturally ventilated dairy cattle barns in a Mediterranean climate: A two-year study2024 · 16 citations
  5. 5Ammonia (NH3) Mitigation in Intensive Pig Housing via a Novel Feed-Based Intervention: Real-Scale Evidence from High-Frequency Indoor Concentration Monitoring2026