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Micro Porous Clay Mineral Absorption / Desorption Moisture-Proof Performance of The Atmospheric Humidity and Decomposing The Polyamide Adsorption Performance Characterization of Formaldehyde

미세 다공질 광물과 아미드계 분해제의 적용을 통한 건축자재의 습도 조절과 폼알데히드 분해 성능 특성 평가

  • Received : 2014.05.03
  • Accepted : 2014.06.20
  • Published : 2014.06.30

Abstract

The recent rising living standards, environment-friendly, well-being and health aspects of life in the basic gratification, as well as the desire for a pleasant environment emotionally environmentally friendly way of external space or industrial interest in the indoor environment, the manifestation. In particular, the biggest problem of the indoor environment has been emerged as a Sick House Syndrome indoor space that is provided to the building materials, and the impact on the domestic and the indoor environment, and clean the house in a health standards are specified as laws. The performance rating and the various materials to create environmentally-friendly standards for building materials. The more detail, Porous clay material, toxic substances released by applying the high humidity and the water itself, and to absorb the moisture, if the emissions, without a separate device, to maintain a comfortable indoor environment and at the same time, one of the causes of Sick House Syndrome breaking down harmful substances to absorb a comfortable indoor environment to maintain an environmentally-friendly building interior material studies. It is aimed at the development to multi-functional high performance eco-friendly construction materials, rather than through one feature performance, identify key features for national and international eco-friendly building materials can exert Water Vapour Adsorption raw, decomposed materials for the application and selection.

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References

  1. Kim Hea-Jeong, Song Hyoo-Dong, Kim Sun-Sook, Lee Yun-Gyu, A Study on the Water Vapour Adsouption/Desorption Property of Buildings Materials, Korean Institute of Architectural Sustainable Environment and Building Systems, 2009, pp.193-197
  2. Hea-Jeong Kim, Kyoo-Dong Song, Yun-Gyu Lee, A Study on the Mock up Test for Reduction of HCHO Using the Functional Gypsum Board, Korean Journal of Air-Conditioning and Refrigeration Engineering, 2008, pp.814-819
  3. Kim Sun-Sook, Yeo Myoung-Souk, Kim Kwang-Woo, Numerical Analysis of the Indoor Air Quality and VOC Emission from Building Materials with the Temperature Variation, Journal of the architectural institute of Korea planning & design, Vol. 24, No.3, 2008, pp.233-241
  4. Yu Hyung-Ku, Park Jin-Chul, Rhee Eon-Ku, A Study on the Emission Characteristic of Formaldehyde and TVOC from Indoor Finishing Materials, Journal of the architectural institute of Korea planning & design, Vol. 21, No.7, 2005, pp.141-149
  5. Yoo Bok-Hee, Park Yong-Seung, The Effect of Indoor Air Pollution from VOCs and Formaldehyde Emitted Building Materials on Indoor Air, Journal of the architectural institute of Korea planning & design, Vol. 22, No.8, 2006, pp.233-241
  6. Kim Hoon, Tanabe Shin-ichi, Ariga Takao, Mochida Keigo, Performance Test Method for Evaluating the Reduction of Formaldehyde Concentration by Sorptive Building Materials with 20L Small Chamber System - Performance Test of Sorptive Materials For Formaldehyde, Journal of the architectural institute of Korea planning & design, Vol. 2009-10, 2009, pp.697-701
  7. Yun-Gyu Lee, A Study on the Sorptive Performance Test of VOCs and HCHO for Building Materials using Small Chamber Systems, The Journal of Odor and Indoor Environment, Vol. 5, No.3, 2008, pp.185-195
  8. Yun-Deok Kim, Yun-Gyu Lee, A Study on the Emission Characteristics of Gaseous Organic Contaminants from Building Materials and Newly Constructed Apartments, Korean Journal of Air-Conditioning and Refrigeration Engineering, Vol. 18, No.7, 2006, pp.563-570
  9. Jo Wan-Je, Sohn Jang-Yeul, Variations of Indoor Air Quality by Application of Environmentally Friendly and Absorbent Materials, Journal of the architectural institute of Korea planning & design,, Vol. 24, No.4, 2008, pp.227-234
  10. The Ministry of the environment, The Ministry of the environment indoor air quality engineering test methods 2008, pp.63-87
  11. The Ministry of the environment, Building materials pollutant emission test methods, 2007, pp.5-27