ASHRAE+62.1-2022+(1) - Page 078
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b. Anonymous surveys with neutrally framed questions provide the best responses. c. When conducting an evaluation of adapted occupants, respondents must record their perception of zone
air quality after 30 minutes of residency in the occupied zone. d. All occupants should be surveyed, if possible. Otherwise, at least 50% of typical occupancy, or 300,
whichever is less, should be randomly selected. e. A minimum 30% response rate from those surveyed is desirable. Each zone must be surveyed per
requirements of Section 6.3. The subjective evaluation validates the acceptability of indoor air if 80% of respondents in the area do not express dissatisfaction. The Center for the Built Environment at UC Berkeley has developed a survey that includes IAQ questions and may be a useful template.
N4. BIBLIOGRAPHY
Ahn, J.H., J.E. Szulejko, K.H. Kim, Y.H. Kim, and B.W. Kim. 2014. Odor and VOC emissions from pan fry ing of mackerel at three stages: Raw, well-done, and charred. International Journal of Environmental Research and Public Health 11(11):11753–71. Apte, M.G. 2013. Final Report: Balancing energy conservation and occupant needs in ventilation rate stan dards for Big Box stores in California: Predicted indoor air quality and energy consumption using a matrix of ventilation scenarios. LBNL Paper LBNL-5551E, Lawrence Berkeley National Laboratory, University of California, Berkeley. Assadi, A.A., J. Palau, A. Bouzaza, J. Penya-Roja, V. Martinez-Soriac, and D. Wolbert. 2014. Abatement of
3-methylbutanal and trimethylamine with combined plasma and photocatalysis in a continuous planar reactor. Journal of Photochemistry and Photobiology A: Chemistry 282:1–8. Barro, R., J. Regueiro, M. Llompart, C. Garcia-Jares. 2009. Analysis of industrial contaminants in indoor
air: Part 1. Volatile organic compounds, carbonyl compounds, polycyclic aromatic hydrocarbons and polychlorinated biphenyls. Journal of Chromatography A 1216(3):540–66. Batterman, S, F.C. Su, S. Li, B. Mukherjee, and C. Jia. 2014. Personal exposure to mixtures of volatile
organic compounds: modeling and further analysis of the RIOPA data. Research report (Health Effects Institute). 181:3–63. Bi, X.H., G.Y. Sheng, Y.L. Feng, J.M. Fu, and J.X. Xie. 2005. Gas- and particulate-phase specific tracer and
toxic organic compounds in environmental tobacco smoke. Chemosphere 61(10):1512–22. Boraphech, P., and P. Thiravetyan. 2015. Removal of trimethylamine (fishy odor) by C-3 and CAM plants.
Environmental Science and Pollution Research 22(15):11543–57. Bradman, A., F. Gaspar, R. Castorina, J. Williams, T. Hoang, and P.L. Jenkins. 2017. Supporting Informa tion: Formaldehyde and acetaldehyde exposure and risk characterization in California early childhood education environments. Indoor Air 27(1):104–113. CDPH. 2006. Long-term building air measurements for volatile organic compounds including aldehydes at a
California five-building sustainable office complex, (Vol. 1/2 and 2/2). Report r-172. California Department of Public Health, Sacramento, CA. Chan, W.R., S. Cohn, M. Sidheswaran, D.P. Sullivan, and W.J. Fisk. 2015. Contaminant levels, source
strengths, and ventilation rates in California retail stores. Indoor Air 25(4):381–92. Choo, C.P., and J. Jalaludin. 2015. An overview of indoor air quality and its impact on respiratory health
among Malaysian school-aged children. Reviews on Environmental Health 30(1):9–18. Claeson, A.S., M. Sandstrom, A.L. Sunesson. 2007. Volatile organic compounds (VOCs) emitted from
materials collected from buildings affected by microorganisms. Journal of Environmental Monitoring 9(3):240–5. Cometto-Muniz, J.E., and M.H. Abraham 2015. Compilation and analysis of types and concentrations of air borne chemicals measured in various indoor and outdoor human environments. Chemosphere 127:70–86. Cometto-Muniz, J.E., and W.S. Cain. 1992. Sensory irritation. Relation to indoor air pollution. Annals of the
New York Academy of Sciences 641:137–51. Dodson, R.E., J.I. Levy, E.A. Houseman, J.D. Spengler, and D.H. Bennett. 2009. Evaluating methods for
predicting indoor residential volatile organic compound concentration distributions. Journal of Expo- sure Science and Environmental Epidemiology 19(7):682–93. Dutton, S.M. 2014. Evaluation of the indoor air quality procedure for use in retail buildings. LBNL Paper
LBNL-6079E, Lawrence Berkeley National Laboratory, University of California, Berkeley, CA. Fenske, J.D., and S.E. Paulson. 1999. Human breath emissions of VOCs. Journal of the Air and Waste Man-
agement Association 49(5):594–8. Fischer, M.L., D. Littlejohn, M.M. Lunden, N.J. Brown. 2003. Automated measurements of ammonia and
nitric acid in indoor and outdoor air. Environmental Science and Technology 37(10):2114–9. Godwin, C, and S. Batterman. 2007. Indoor air quality in Michigan schools. Indoor Air 17(2):109–21.
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