Literature DB >> 15330777

The effects of indoor air quality on performance and productivity.

D P Wyon1.   

Abstract

UNLABELLED: The main justification for ventilation has historically been to create a healthy indoor environment. Ventilation removes air pollutants originating inside the building, including bio-effluents. The outdoor air supply rate that has been found by experience to provide subjectively acceptable indoor air quality and to prevent the accumulation of moisture in the building is generally sufficient to maintain the concentration of pollutants at healthily low levels. Until 5 years ago this would have been the justification for current ventilation practices, but in 1999 the first of a series of experiments was published, revealing new mechanisms by which raised levels of indoor air pollution may reduce productivity, either in addition to or instead of having negative effects on comfort and health. It was shown in realistic experimental exposures lasting up to 5 h that the performance of simulated office work could be significantly increased by removing common indoor sources of air pollution, such as floor-coverings, used supply air filters and personal computers, or by keeping them in place and increasing the rate at which clean outdoor air was supplied from 3 to 10 to 30 l s(-1) per person. These short-term effects were demonstrated repeatedly even at pollutant levels that had no measurable effects on the perception of air quality by the occupants themselves, although there were effects on subclinical SBS symptoms such as headache. Temperature and noise distraction have since been studied in directly comparable exposures. The prediction arising from these experiments, that the performance of real office work over time would be significantly and substantially affected by the changes in indoor environmental quality that take place in the course of normal building operation, have recently been validated in 8-week field intervention experiments carried out in call-centers in northern Europe and the Tropics. These findings have far-reaching implications for the efficient use of energy in buildings. PRACTICAL IMPLICATIONS: It has now been shown beyond reasonable doubt that poor indoor air quality in buildings can decrease productivity in addition to causing visitors to express dissatisfaction. The size of the effect on most aspects of office work performance appears to be as high as 6-9%, the higher value being obtained in field validation studies. It is usually more energy-efficient to eliminate sources of pollution than to increase outdoor air supply rates. The experiments summarized in this article have documented and quantified relationships that can be used in making cost-benefit analyses of either solution for a given building. The high cost of labor per unit floor area ensures that payback times will usually be as low as 2 years.

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Year:  2004        PMID: 15330777     DOI: 10.1111/j.1600-0668.2004.00278.x

Source DB:  PubMed          Journal:  Indoor Air        ISSN: 0905-6947            Impact factor:   5.770


  14 in total

1.  Evaluation of microbiological air quality and of microclimate in university classrooms.

Authors:  Pietro Grisoli; Marinella Rodolfi; Tiziana Chiara; Laura Attinia Zonta; Cesare Dacarro
Journal:  Environ Monit Assess       Date:  2011-07-28       Impact factor: 2.513

2.  Human symptom responses to bioeffluents, short-chain carbonyls/acids, and long-chain carbonyls in a simulated aircraft cabin environment.

Authors:  C P Weisel; N Fiedler; C J Weschler; P A Ohman-Strickland; K R Mohan; K McNeil; D R Space
Journal:  Indoor Air       Date:  2017-06-26       Impact factor: 5.770

3.  Headache symptoms and indoor environmental parameters: Results from the EPA BASE study.

Authors:  Gretchen E Tietjen; Jagdish Khubchandani; Somik Ghosh; Suchismita Bhattacharjee; Joann Kleinfelder
Journal:  Ann Indian Acad Neurol       Date:  2012-08       Impact factor: 1.383

4.  Asthma, Airway Symptoms and Rhinitis in Office Workers in Malaysia: Associations with House Dust Mite (HDM) Allergy, Cat Allergy and Levels of House Dust Mite Allergens in Office Dust.

Authors:  Fang Lee Lim; Zailina Hashim; Leslie Thian Lung Than; Salmiah Md Said; Jamal Hisham Hashim; Dan Norbäck
Journal:  PLoS One       Date:  2015-04-29       Impact factor: 3.240

5.  Occupational Heat Stress Profiles in Selected Workplaces in India.

Authors:  Vidhya Venugopal; Jeremiah S Chinnadurai; Rebekah A I Lucas; Tord Kjellstrom
Journal:  Int J Environ Res Public Health       Date:  2015-12-29       Impact factor: 3.390

6.  Workplace heat stress, health and productivity - an increasing challenge for low and middle-income countries during climate change.

Authors:  Tord Kjellstrom; Ingvar Holmer; Bruno Lemke
Journal:  Glob Health Action       Date:  2009-11-11       Impact factor: 2.640

7.  Gender, airborne chemical monitoring, and physical work environment are related to indoor air symptoms among nonindustrial workers in the Klang Valley, Malaysia.

Authors:  Aizat Ismail Syazwan; Juahir Hafizan; Mohd Rafee Baharudin; Ahmad Zaid Fattah Azman; Zulkapri Izwyn; Ismail Zulfadhli; Katis Syahidatussyakirah
Journal:  Ther Clin Risk Manag       Date:  2013-03-08       Impact factor: 2.423

8.  Students' Perceived Heat-Health Symptoms Increased with Warmer Classroom Temperatures.

Authors:  Shalin Bidassey-Manilal; Caradee Y Wright; Jacobus C Engelbrecht; Patricia N Albers; Rebecca M Garland; Mamopeli Matooane
Journal:  Int J Environ Res Public Health       Date:  2016-06-07       Impact factor: 3.390

Review 9.  Assessment of Indoor Air Quality Problems in Office-Like Environments: Role of Occupational Health Services.

Authors:  Paolo Carrer; Peder Wolkoff
Journal:  Int J Environ Res Public Health       Date:  2018-04-12       Impact factor: 3.390

10.  Indoor Thermal Environment Long-Term Data Analytics Using IoT Devices in Korean Apartments: A Case Study.

Authors:  Hyunjun Yun; Jinho Yang; Byong Hyoek Lee; Jongcheol Kim; Jong-Ryeul Sohn
Journal:  Int J Environ Res Public Health       Date:  2020-10-08       Impact factor: 3.390

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