Related Experiment Video
Updated: Jun 29, 2026

Noninvasive Sampling of Mucosal Lining Fluid for the Quantification of In Vivo Upper Airway Immune-mediator Levels
Published on: August 7, 2017
Multivariate structure and time-segmented exposure characteristics of indoor air quality in childcare centers
Joon-Sig Jung1, Hyung-Jin Jeon2, Min-Jeong Ko3
1Nakdong River Basin Environment Office, Seongsan-gu, Changwon, 51439, Republic of Korea. jsjung080@korea.kr.
Insights
Indoor air quality (IAQ) in childcare centers shows distinct patterns throughout the day. Total volatile organic compounds (TVOC) consistently exceeded guidelines, highlighting the need for time-specific ventilation strategies to protect children's health.
Area of Science:
- Environmental Health Science
- Occupational Health
- Pediatric Health
Background:
- Children are uniquely vulnerable to indoor air pollutants due to higher breathing rates and developing physiology.
- Understanding indoor air quality (IAQ) in childcare settings is crucial for protecting young children's health.
- Previous studies often focus on daily averages, potentially missing critical time-dependent exposure variations.
Purpose of the Study:
- To characterize daypart-specific indoor air quality (IAQ) patterns in Korean childcare centers.
- To investigate the multivariate structure of IAQ parameters over a 24-hour cycle.
- To identify time-dependent pollutant behaviors and their relationship with daily activities.
Main Methods:
- High-resolution, continuous 1-min monitoring of PM₂.₅, PM₁₀, TVOC, CO₂, radon, temperature, and relative humidity.
- Data aggregation into 5-min averages for analysis across seven childcare centers.
- Application of Principal Component Analysis (PCA) and K-means clustering to identify IAQ patterns and profiles.
Main Results:
- PM₂.₅, PM₁₀, CO₂, and radon levels generally complied with guidelines, but total volatile organic compounds (TVOC) exceeded recommendations in all facilities.
- Pollutant concentrations exhibited clear diurnal variations: particulate matter increased during active periods, CO₂ peaked with occupancy, and TVOC showed activity-related peaks.
- PCA revealed three main components explaining 83.5% of variance, linked to activity, ventilation, and temperature.
- K-means clustering identified recurring multivariate IAQ patterns across different dayparts and centers.
Conclusions:
- IAQ in childcare settings is significantly influenced by the time of day and operational activities.
- TVOC levels consistently exceeded safe limits, indicating a need for improved control measures.
- Ventilation strategies must consider specific time segments and pollutant behaviors, not just daily averages, to effectively manage exposure for children.
Abstract:
Understanding indoor air quality (IAQ) in childcare environments is critical for safeguarding young children, who are physiologically vulnerable to airborne pollutants due to higher inhalation rates and developing respiratory systems. This study characterized daypart-specific IAQ patterns and their multivariate structures by using high-resolution monitoring at seven childcare centers in Korea. Continuous 1-min measurements of PM₂.₅, PM₁₀, total volatile organic compounds (TVOC), CO₂, radon, temperature, and relative humidity were collected and aggregated into 5-min averages for analysis. PM₂.₅ (8.9-13.9 µg·m⁻³), PM₁₀ (18.4-25.8 µg·m⁻³), CO₂ (445-1,029 ppm), and radon (16-191 Bq·m⁻³) largely complied with domestic and WHO guidelines. In contrast, TVOC concentrations exceeded recommended reference ranges at all facilities and showed substantial inter-facility variability. Pollutant levels varied clearly by time of day: particles increased during active classroom periods and declined afterward; CO₂ temporarily exceeded 1,000 ppm during peak occupancy; TVOC showed activity-related peaks with evening persistence; and radon increased in one facility before morning ventilation. Exploratory principal component analysis (PCA) showed that the three components accounted for 83.5% of the total variance, reflecting increases in activity-related particulates, ventilation-dependent gaseous accumulation, and temperature-related variations in TVOC levels. K-means clustering grouped similar daypart profiles across centers, indicating recurring multivariate IAQ patterns beyond the daily average concentrations. The pollutant peaks did not occur simultaneously. Particulate matter aligned with occupancy, whereas gaseous pollutants accumulated under limited ventilation. These findings suggest that IAQ in childcare settings is better interpreted in relation to operational time segments rather than daily averages alone, and that ventilation strategies should consider both timing and pollutant-specific behavior when managing exposure in sensitive indoor environments.
More Related Videos
09:33Visualizing Field Data Collection Procedures of Exposure and Biomarker Assessments for the Household Air Pollution Intervention Network Trial in India
Published on: December 23, 2022
08:47Symptom Assessment of Patients with Allergic Rhinitis Using an Allergen Exposure Chamber
Published on: March 3, 2023
Related Concept Videos
Assessment of Ventilation I: Respiratory Rate
A Ventilation assessment is critical for monitoring a patient's health status. Respiration, one of the most accessible vital signs, provides insights into the function of numerous body systems and can indicate serious health issues, such as brainstem injuries from head trauma.
Critical Guidelines for Assessing Ventilation:
Assessment of Ventilation II: Respiratory Depth and Rhythm
Respiratory depth measures the volume of air inhaled or exhaled during a breath. It can vary from shallow to deep and typically remains consistent when a person is at rest or asleep. Occasionally, individuals will automatically inhale deeply, known as sighing, which inflates the lungs with more air than normal breathing.
To assess respiratory depth, observe the degree of chest excursion or movement:
Asthma I: Introduction