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室内多种吸附材料并存时吸附能力的等效简化

Equivalent Simplification of Sorption Capacity Calculation with Multiple Indoor Sink Materials
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摘要 当室内多种吸附材料共存时,室内挥发性有机化合物(Volatile Organic Compounds,VOCs)浓度的计算相对来讲较为复杂。本文的目的在于找出一种该情况下材料吸附能力的等效简化方法。基于无量纲吸附能力理论分析,本文提出了室内不同吸附材料共存时,以材料无量纲相对质容为简化指标的吸附能力等效面积折算方法。案例模拟与结果分析显示该方法能较好地应用于此类问题,可为室内污染物浓度的简化计算提供参考。 When muhiple indoor sink materials were coexist,the concentration calculation of indoor volatile organic compounds (VOCs) might be more complicated. In this paper, the purpose was to find out a simplification method. Taking the parameter of material dimensionless mass capacity as the simplified index, the equivalent area conversion method was proposed based on the analysis of dimensionless sorption capacity. The calculation results of the case study indicated that this method was effective for solving this kind of problem.
出处 《建筑科学》 北大核心 2011年第8期70-74,共5页 Building Science
基金 国家自然科学基金项目(50878112)
关键词 简化方法 等效面积 无量纲 吸附能力 simplification method, equivalent area, dimensionless, sorption capacity
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参考文献9

  • 1Klepeis NE, Nelson WC, Ott WR, et al. The national humanaeti,lity pattern survey (NHAPS): A resource for assessing exposure to environmental pollutants [J ]. Journal of Exposure Analysis and Environmental Epidemiology, 2001,11 ( 3 ) : 231 252.
  • 2Meininghaus R, Gunnarsen L, Knudsen HN. Diffusion and sorption of volatile organic compounds in building materials-- Impact on indoor air quality [ J ]. Environmental Science Technology,2000,34 ( 15 ) : 3101 - 3108.
  • 3邓琴琴,杨旭东.建材VOC吸附特性的研究进展[J].暖通空调,2009,39(4):108-112. 被引量:5
  • 4Yang X, Chen Q, Zhang JS, et al. A mass transfer model for simulating VOC sorption on building materials [ J ]. Atmospheric Environment,2001,35 (7) : 1291 - 1299.
  • 5邓琴琴.建材吸附VOC特性及其对室内空气品质的影响研究[D].北京:清华大学,2010.
  • 6Deng Q, Yang, X, Zhang JS. New indices to evaluate volatile organic compound sorption capacity of building materials [ J ]. HVAC & R Research,2010,16(1) :95 -105.
  • 7An Y, Zhang JS, Shaw CY. Measurements of VOC adsorption/ desorption characteristics of typical interior building materials [J]. HVAC & R Research,1999,5(4) :297 -316.
  • 8Bodalal A, Zhang JS, Plett EG, et al. Correlations between the internal diffusion and equilibrium partition coefficients of volatile organic compound (VOCs) in building materials and the VOC properties[ J ]. ASI-IRAE Transactions ,2001,107 (1) :789 ~ 800.
  • 9Haghighat F, Huang HY. Integrated 1AQ model for prediction of VOC emissions from building material [ J ]. Building and Environment ,2003,38 ( 8 ) : 1007 N 1017.

二级参考文献33

  • 1Brown S K, Sire M R, Abramson M J, et al. Concentrations of volatile organic compounds in indoor air-a review[J]. Indoor Air, 1994, 4 (2) :123-134.
  • 2Wolkoff P. Volatile organic compounds: sources, measurements, emissions, and the impact on indoor air quality[J]. Indoor Air, 1995,5(Supplement 3) : 1- 73.
  • 3Molhave L, Liu Z, Jorgensen A H, et al. Sensory and physiological effects on humans of combined exposures to air temperatures and volatile organic compounds[J]. Indoor Air, 1993, 3(3): 155-169.
  • 4De Bellie L, Haghighat F, Zhang Y. Review of the effect of environmental parameters on material emissions[C]// Proceedings of the 2nd International Conference on Indoor Air Quality, Ventilation, and Energy Conservation in Buildings, Montreal, 1995 111-119.
  • 5Tichenor B, Sparks L, White J, et al. Evaluating sources of indoor air pollution[C]/// 81st Annual Meeting of the Air Pollution Control Association. Dallas, 1988.
  • 6Nielsen P. Potential pollutants-their importance to the sick building syndrome-and their release mechanism[C]// Proceedings of Indoor Air '87, 1987:598-602.
  • 7Tichenor B A, Guo Z, Dunn J E, et al. The interaction of vapor phase organic compounds with indoor sinks[J]. Indoor Air, 1991,1(1) :23-35.
  • 8Colombo A, De Bortoli M, Knoppel H, et al. Adsorption of selected volatile organic compounds on a carpet, a wall coating, and a gypsum board in a test chamber[J]. Indoor Air, 1993, 3(4): 276-282.
  • 9INure J E, Chen T. ASTM STP 1205 "Critical evaluation of the diffusion hypothesis in the theory of porous media VOC sources and sinks," Modeling indoor air quality and exposure [S]. Philadelphia: American Society of Testing and Materials, 1993:64-80.
  • 10Wouda P. Chemical and sensory evaluation of sorption effects of chemicals on combined indoor materials in comparison to sorption effects on the individual materials [C]// Proceedings of Healthy Buildings/IAQ ' 97, 1997 : 225- 230.

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