Prediction of the Concentration Decay of Volatile Organic Compounds under Different Air Change Rates and Loading Factor Conditions

환기회수 및 부하율 변화에 따른 휘발성유기화합물 농도 감쇠 예측에 관한 연구

  • Pang Seung-Ki (Department of Building Services & Control System, Kyungmin College) ;
  • Sohn Jang-Yeul (School of Architecture, Hanyang University) ;
  • Ahn Byung-Wook (Department of Building Service Engineering, Chungcheong College)
  • Published : 2005.06.01

Abstract

We measured the time-dependent concentration of VOCs emitted from Ondol floor, furniture, and the wall made of various building materials. After obtaining results from the previous measurement, we developed the estimation equations of the concentration decay, and obtained the estimated graphs for the concentration decay under different air change rates and loading factor conditions by using the estimated equations. We conducted our tests by applying our measurements to real residences for 110 days in the case of furniture and for 40 days in the case of the floor. We also conducted experiments in the cases of various wall materials for 7 days which totaled 10 times. We used the GC/FID for experiments for real residences accord-ing to the specified procedures of the NIOSH 1501, and carried out experiments for wall materials according to the specified procedures of the ASTM 5116-97. When conducting experiments for wall materials, we set the temperature and relative humidity at $23^{\circ}C$ and $50\%$, respectively. We also set the air change rate and loading factor at 0.7/h and $1.617 m^2/m^3$, respectively. Our results showed that it is possible to predict proplrly the time-dependent concentration decay of VOCs by using logarithmic functions in both cases of experiments for real residences and for wall materials. Furthermore, we found that the concentration decay rate of VOCs increased rapidly as the air exchange rate increased while the concentration decay rate decreased as the loading factor increased.

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References

  1. ASTM D 5116-97, Small-Scale Environmental Chamber Determination of Organic Emissions From Indoor Materials/Products, pp.10-11
  2. ASTM D 6670-01, Standard Practice for Full-Scale Chamber Determination of Volatile Organic Emissions from Indoor Materials/Products, p. 17
  3. Pang, S. K., Sohn, J. Y., Baik, Y. K. and Cho, H., 2004, Manufactured chamber for measuring pollutant release and measuring chamber production & VOCs releasing characteristics of lightweight panel, J. Korean. Soc. Living Environ. Sys., Vol. 11, No.1, pp. 26-34