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October 2, 2025Agriculture0 citationsOpen Access

Effects of Indoor Temperature, Relative Humidity, and Carbon Dioxide Conditions on Wean-to-Finish Swine Survivability

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OKOlivia J KittleMKMark KnauerGAGlen W. Almond

Key Points

  • Pigs in environments warmer than desired had lower mortality, indicating cold stress is more detrimental than heat stress.
  • Higher humidity and carbon dioxide levels in the barn rear increased mortality, emphasizing the need for effective air exchange.
  • Mortality was highest in Spring and lower in Summer, with a significant decline as pigs aged, highlighting seasonal impacts.
  • Surprisingly, greater barn occupancy correlated with lower mortality, possibly linked to improved piglet quality at placement.

Abstract

In swine production, it is broadly recognized that ventilation rates and indoor environmental conditions influence pig productivity. However, sparse scientific data are available on the combined effects and potential interactions of these factors in commercial production systems. This study investigated indoor environmental and management factors influencing wean-to-finish pig mortality in a commercial system. Temperature, relative humidity (RH), and carbon dioxide (CO2) were recorded every 10 min in the front and back of 16 barns across five grow-finish sites in eastern North Carolina for two turns (four barns) or three turns (12 barns) for a total of 44 pig groups. Proportional weekly mortality was modeled using a generalized linear mixed model. Results showed that pigs in environments warmer than the desired room temperature had lower mortality (p < 0.001), suggesting cold stress was more detrimental than heat stress. Elevated RH and CO2 at the back of the barn were linked to increased mortality (p < 0.001), highlighting air exchange rates as a key indicator. Mortality was greatest in pig groups placed during Spring and lowest in Summer (p < 0.05), and mortality declined as pigs aged (p = 0.0134). Surprisingly, greater barn occupancy correlated with lower mortality (p = 0.0012), potentially related to piglet quality at placement. The predictive power of the model varied with the turn of pigs, with R2 averaging 0.24 (ranging from 0.001 to 0.61) and an average RMSE of 0.36% (ranging from 0.17% to 0.77%). Ammonia (NH3) was recorded at the back of six barns, and concentrations were modeled. Greater NH3 concentrations were associated with increased pig age, RH, and CO2, as well as lower deviation from desired room temperature and lower barn occupancy. Collectively, these findings highlight the importance of proper ventilation and management on swine productivity.

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Cite This Study

Kittle et al. (2025) studied this question.

synapsesocial.com/papers/68de796d5b556a9128e1aceehttps://doi.org/10.3390/agriculture15192050
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