References
Abbas, O. T., & Ahmed Jasim Mohammed. (2026). Indoor Air Quality Detection inside Several Healthcare Units of Medical City in Baghdad. Ibn AL-Haitham Journal For Pure and Applied Sciences, 39(1), 70-78. https://doi.org/10.30526/39.1.4225
Ahmad, I., & Balkhyour, M. A. (2020). Occupational exposure and respiratory health of workers at small scale industries. Saudi journal of biological sciences, 27(3), 985–990. https://doi.org/10.1016/j.sjbs.2020.01.019
Alahmari, F., Almalki, S. H., & Khan, A. Q. (2020). Occupational exposure and respiratory health of workers at small scale industries. Saudi Journal of Biological Sciences, 27(5), 1330–1335. https://doi.org/10.1016/j.sjbs.2020.03.006
Ayano, B., Mekonen, S., & Dadi, D. (2026). Assessment of particulate matter exposure levels and associated respiratory symptoms among oil seed processing factories workers. Scientific Reports, 16, 21700. https://doi.org/10.1038/s41598-026-50211-z
Badima, H., Kumie, A., Meskele, B., & Abaya, S. W. (2024). Welding fume exposure and prevalence of chronic respiratory symptoms among welders in micro- and small-scale enterprise in Akaki Kality sub-city, Addis Ababa, Ethiopia: a comparative cross-sectional study. BMC pulmonary medicine, 24(1), 147. https://doi.org/10.1186/s12890-024-02958-2
Bi, J., Zuidema, C., Clausen, D., Kirwa, K., Young, M. T., Gassett, A. J., Seto, E. Y. W., Sampson, P. D., Larson, T. V., Szpiro, A. A., Sheppard, L., & Kaufman, J. D. (2022). Within-City Variation in Ambient Carbon Monoxide Concentrations: Leveraging Low-Cost Monitors in a Spatiotemporal Modeling Framework. Environmental health perspectives, 130(9), 97008. https://doi.org/10.1289/EHP10889
Bruce, N., Perez-Padilla, R., & Albalak, R. (2000). Indoor air pollution in developing countries: A major environmental and public health challenge. Bulletin of the World Health Organization, 78(9), 1078–1092. https://doi.org/10.1590/S0042-96862000000900005
Farah, W., Abusalih, M. F., Hasan, B., Lees, E. H., Fleti, F., Elkhatib, W. Y., Johnson, B. D., Toups, G., Wolf, M., & Murad, M. H. (2025). Safety implications of mask use: a systematic review and evidence map. BMJ evidence-based medicine, 30(2), 91–103. https://doi.org/10.1136/bmjebm-2024-113028
Irankunda, E., Menendez, M., Khan, B., Paparella, F., & Pauluis, O. (2025). Systematic Review and Meta-Analysis of Urban Air Quality in the Arabian Peninsula. Atmosphere, 16(8), 990. https://doi.org/10.3390/atmos16080990
Issa, M. J., Hussain, H. M., & Shaker, I. H. (2019). Assessment of the Toxic Elements Resulting from the Manufacture of Bricks on Air and Soil at Abu Smeache Area - Southwest Babylon governorate - Iraq. Iraqi Journal of Science, 60(11), 2443-2456. https://doi.org/10.24996/ijs.2019.60.11.15
Jo Y. S. (2022). Long-Term Outcome of Chronic Obstructive Pulmonary Disease: A Review. Tuberculosis and respiratory diseases, 85(4), 289–301. https://doi.org/10.4046/trd.2022.0074
Jones, E. R., Laurent, J. G. C., Young, A. S., MacNaughton, P., Coull, B. A., Spengler, J. D., & Allen, J. G. (2021). The Effects of Ventilation and Filtration on Indoor PM2.5 in Office Buildings in Four Countries. Building and environment, 200, 107975. https://doi.org/10.1016/j.buildenv.2021.107975
Laurent, M. R., & Frans, J. (2022). Monitors to improve indoor air carbon dioxide concentrations in the hospital: A randomized crossover trial. The Science of the total environment, 806(Pt 3), 151349. https://doi.org/10.1016/j.scitotenv.2021.151349
Li, C., Han, D., Wei, X., Yang, J., & Wu, C. (2023). Health Risk Assessment of Inhalable Dust Exposure during the Welding and Grinding Process of Subway Aluminum Alloy Components. Buildings, 13(10), 2469. https://doi.org/10.3390/buildings13102469
Li, T., Hu, R., Chen, Z., Li, Q., Huang, S., Zhu, Z., & Zhou, L. F. (2018). Fine particulate matter (PM2.5): The culprit for chronic lung diseases in China. Chronic diseases and translational medicine, 4(3), 176–186. https://doi.org/10.1016/j.cdtm.2018.07.002
Mack, S. M., Madl, A. K., & Pinkerton, K. E. (2019). Respiratory Health Effects of Exposure to Ambient Particulate Matter and Bioaerosols. Comprehensive Physiology, 10(1), 1–20. https://doi.org/10.1002/cphy.c180040
Tanir, F., & Mete, B. (2022). Impacts of the indoor air quality on the health of the employee and protection against these impacts. In Indoor Environmental Quality (pp. 1–18). IntechOpen. https://doi.org/10.5772/intechopen.102708
Tepeneu, A., Chambre, D., Surdea-Blaga, T., Lupitu, A., Moisa, C., Copolovici, D. M., & Copolovici, L. (2024). The variability of indoor air pollutants in the office and their impact on the workers' health. Polish Journal of Environmental Studies, 33(3), 2861–2874. https://doi.org/10.15244/pjoes/186445
Tillett T. (2012). Don't hold your breath: indoor CO2 exposure and impaired decision making. Environmental health perspectives, 120(12), A475. https://doi.org/10.1289/ehp.120-a475a
World Health Organization. (2021). WHO global air quality guidelines: Particulate matter (PM₂.₅ and PM₁₀), ozone, nitrogen dioxide, sulfur dioxide and carbon monoxide. WHO. https://www.who.int/publications/i/item/9789240034228