Preventing mold growth and maintaining acceptable indoor air quality for educational buildings operating with high mechanical ventilation rates in hot and humid climates
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[1] P. Azimi,et al. Indoor air quality impacts of residential mechanical ventilation system retrofits in existing homes in Chicago, IL. , 2022, The Science of the total environment.
[2] M. Krarti,et al. Evaluation of the performance of demand control ventilation system for school buildings located in the hot climate of Saudi Arabia , 2021, Building Simulation.
[3] L. Morawska,et al. Respiratory infection risk-based ventilation design method , 2021, Building and Environment.
[4] T. Su,et al. Recommendations for ventilation of indoor spaces to reduce COVID-19 transmission , 2021, Journal of the Formosan Medical Association.
[5] L. Morawska,et al. Ventilation procedures to minimize the airborne transmission of viruses in classrooms , 2021, Building and Environment.
[6] P. Nielsen,et al. Ventilation System Design and the Coronavirus (COVID-19) , 2021, Frontiers in Built Environment.
[7] Baizhan Li,et al. Indoor mould exposure: Characteristics, influences and corresponding associations with built environment—A review , 2020 .
[8] A. Brambilla,et al. Mould growth in energy efficient buildings: Causes, health implications and strategies to mitigate the risk , 2020 .
[9] C. Bakar,et al. A long-term multi-parametric monitoring study: Indoor air quality (IAQ) and the sources of the pollutants, prevalence of sick building syndrome (SBS) symptoms, and respiratory health indicators , 2020 .
[10] Xu Zhang,et al. Unhealthy indoor humidity levels associated with ventilation rate regulations for high-performance buildings in China , 2020 .
[11] Can Cui,et al. An energy-saving oriented air balancing method for demand controlled ventilation systems with branch and black-box model , 2020, Applied Energy.
[12] K. Kim,et al. What Is COVID-19? , 2020, Frontiers for Young Minds.
[13] S. Ginestet,et al. Mould in indoor environments: The role of heating, ventilation and fuel poverty. A French perspective , 2020 .
[14] J. Laverge,et al. Key findings of IEA EBC Annex 68 - indoor air quality design and control in low energy residential buildings , 2019, IOP Conference Series: Materials Science and Engineering.
[15] L. R. Gobakken,et al. Can existing mould growth models be used to predict mould growth on wooden claddings exposed to transient wetting? , 2019, Building and Environment.
[16] Zhen Tian,et al. Sensitivity Analysis of Infiltration Rates Impact on Office Building Energy Performance , 2019, IOP Conference Series: Earth and Environmental Science.
[17] Jochen Köhler,et al. A probabilistic-based methodology for predicting mould growth in façade constructions , 2018 .
[18] P. Wargocki,et al. Towards the definition of indicators for assessment of indoor air quality and energy performance in low-energy residential buildings , 2017 .
[19] Jochen Köhler,et al. Mould growth criteria and design avoidance approaches in wood-based materials – A systematic review , 2017 .
[20] Xiaohua Xia,et al. Energy-efficient predictive control of indoor thermal comfort and air quality in a direct expansion air conditioning system , 2017 .
[21] Seung-Yeong Song,et al. Evaluation of the Thermal Environment for Condensation and Mold Problem Diagnosis Around Built-in Furniture in Korean Apartment Buildings during Summer and Winter , 2016 .
[22] S. Palkonen,et al. What does the scientific literature tell us about the ventilation–health relationship in public and residential buildings? , 2015 .
[23] A. Persily. Challenges in Developing Ventilation and Indoor Air Quality Standards: The Story of ASHRAE Standard 62. , 2015, Building and environment.
[24] A. Hyvärinen,et al. Moisture Damage and Asthma: A Birth Cohort Study , 2015, Pediatrics.
[25] M. Jaakkola,et al. Association of indoor dampness and molds with rhinitis risk: a systematic review and meta-analysis. , 2013, The Journal of allergy and clinical immunology.
[26] M. Jaakkola,et al. Residential Dampness and Molds and the Risk of Developing Asthma: A Systematic Review and Meta-Analysis , 2012, PloS one.
[27] Staf Roels,et al. Review of mould prediction models and their influence on mould risk evaluation , 2012 .
[28] D. Norback,et al. The prevalence and incidence of sick building syndrome in Chinese pupils in relation to the school environment: a two-year follow-up study. , 2011, Indoor air.
[29] Jennifer M. Logue,et al. A Method to Estimate the Chronic Health Impact of Air Pollutants in U.S. Residences , 2011, Environmental health perspectives.
[30] Jan Sundell,et al. In China, Students in Crowded Dormitories with a Low Ventilation Rate Have More Common Colds: Evidence for Airborne Transmission , 2011, PloS one.
[31] Mariana Nor Shamsudin,et al. Characterization of Bacteria and Fungi Bioaerosol in the Indoor Air of selected Primary Schools in Malaysia , 2011 .
[32] J. Samet,et al. Ventilation rates and health: multidisciplinary review of the scientific literature. , 2011, Indoor air.
[33] B. Crook,et al. Indoor moulds, Sick Building Syndrome and building related illness , 2010 .
[34] I. Annesi-Maesano,et al. School air quality related to dry cough, rhinitis and nasal patency in children , 2010, European Respiratory Journal.
[35] G. Clausen,et al. Sensory pollution from bag-type fiberglass ventilation filters: Conventional filter compared with filters containing various amounts of activated carbon , 2009 .
[36] Krishnan Gowri,et al. Infiltration Modeling Guidelines for Commercial Building Energy Analysis , 2009 .
[37] E. Levetin,et al. Guide for interpreting reports from inspections/investigations of indoor mold. , 2008, The Journal of allergy and clinical immunology.
[38] D Norbäck,et al. Current asthma and respiratory symptoms among pupils in Shanghai, China: influence of building ventilation, nitrogen dioxide, ozone, and formaldehyde in classrooms. , 2006, Indoor air.
[39] Christine A Erdmann,et al. Mucous membrane and lower respiratory building related symptoms in relation to indoor carbon dioxide concentrations in the 100-building BASE dataset. , 2004, Indoor air.
[40] Tadj Oreszczyn,et al. A Review of Evidence Linking Ventilation Rates in Dwellings and Respiratory Health – A Focus on House Dust Mites and Mould , 2004 .
[41] D Faulkner,et al. Worker performance and ventilation in a call center: analyses of work performance data for registered nurses. , 2004, Indoor air.
[42] John Staudenmayer,et al. A study of indoor carbon dioxide levels and sick leave among office workers , 2002, Environmental health : a global access science source.
[43] O Seppänen,et al. Association of ventilation system type with SBS symptoms in office workers. , 2002, Indoor air.
[44] D K Milton,et al. Risk of sick leave associated with outdoor air supply rate, humidification, and occupant complaints. , 2000, Indoor air.
[45] H. Viitanen,et al. A mathematical model of mould growth on wooden material , 1999, Wood Science and Technology.
[46] W. Fisk,et al. Association of ventilation rates and CO2 concentrations with health and other responses in commercial and institutional buildings. , 1999, Indoor air.
[47] Leif Øie,et al. Is diabetes mellitus associated with prostate cancer incidence and survival , 1999 .
[48] Eric Martin,et al. Impact of Residential Mechanical Ventilation on Energy Cost and Humidity Control , 2014 .
[49] Philip Fairey,et al. Vent Right and Then? Mechanical Ventilation, Dehumidification and Energy Use in Humid Climates , 2014 .
[50] L. Morawska,et al. WHO guidelines for indoor air quality: dampness and mould , 2009 .
[51] P. Nafstad,et al. Ventilation in homes and bronchial obstruction in young children. , 1998, Epidemiology.