题名

室內裝修建材黴菌生長因素及防黴性能之研究

并列篇名

A Study of Evaluating Fungal Growth and Influencing Factors on Interior Decoration Materials

DOI

10.3966/101632122017030099003

作者

陳晏琦(Yen-Chi Chen);邵文政(Wen-Cheng Shao);余國賓(Kuo-Pin Yu)

关键词

室內黴菌 ; 水損建材 ; 黴菌生長速率 ; 建材防黴等級 ; Indoor Molds ; Water-damaged Building Materials ; Mold Growth Rate ; Mold-resistance Performance of Building Material

期刊名称

建築學報

卷期/出版年月

99期(2017 / 03 / 31)

页次

37 - 54

内容语文

繁體中文

中文摘要

黴菌生長在潮濕環境或水損建材的問題日益嚴重,這些黴菌孢子對居住者及建築物均會產生不良的影響。目前臺灣尚未建立黴菌生長於裝修建材的標準試驗方法,且相關研究多為高緯度國家。因此,本研究旨在建立一套建材的黴菌生長試驗系統,連結試驗菌種與建材間的關聯,並予以一防黴等級。研究選取三種室內建材上常見的潮濕性指標真菌作為試驗菌種,分別為黑麴菌、小刺青黴菌及葡萄穗黴菌。此外,為模擬水損建材與使黴菌生長情形更具有檢驗效益,本研究將所有建材(2 種石膏板、1 種矽酸鈣板、3 種水泥板及8 種木板)浸潤於無菌水1 小時後,計算其保水率。在25°C 及95% RH 的環境下培養28 天後,觀察黴菌生長的起始時間及面積,並轉換為生長速率,並分析不同建材與菌種間的關聯,以及建材保水率對於黴菌生長的影響。本研究建立一完整且具經濟效益的建材黴菌試驗方法,並系統性的評估建材的防黴性能,此結果可進一步提供相關單位作為防黴檢驗的參考指標,亦可給予裝修業更多額外評量建材之依據,以利提升居住的環境品質及健康。

英文摘要

Fungal growth in damp or water-damaged building materials is an increasing problem, which has adverse effects on both the occupants and the buildings. Unfortunately, there is still no national standard in Taiwan for evaluating fungal growth on building materials and most of the related studies and methods are not suitable for these. Therefore, this study creates a method for evaluating the degree of fungal growth on building materials. The three moisture indicator fungi(A. niger, P. spinulosum and S. chartarum)were used as test microorganisms. Futhermore, to provide for a more efficient analysis of fungal growth, all the test materials(2 for gypsum board, 1 for calcium silicate board, 3 for cement board and 8 for wood board) were wetted with sterilized water for 1h, and then had their Water Holding Capacity(C_(water))calculated. All of the test samples were incubated under controlled conditions(25 °C, 95% RH)for four weeks. The mold growth rate(M_(slop))was calculated using the initial mold growth time (M_(log))and the mold growth area (M_(area)). Finally, we used M_(slop), M_(area) and C_(water) to analyse the relationship between different building materials and test strains. This study established a semi-empirical model for evaluating the degree of fungal growth on building materials, and has shown to protect indoor environments from mold development effectively.

主题分类 工程學 > 土木與建築工程
参考文献
  1. 葉育君、蔡耀賢(2014)。以黴菌發芽預測模型評估住宅調濕建材之設計策略。建築學報,89,57-74。
    連結:
  2. Abad, M. J.,Ansuategui, M.,Bermejo, P.(2007).Active antifungal substances from natural sources.ARKIVOC,vii,116-145.
  3. Andersen, B.,Frisvad, J. C.,Sondergaard, I.,Rasmussen, I. S.,Larsen, L. S.(2011).Associations between fungal species and water-damaged building materials.Applied and Environmental Microbiology,77(12),4180-4188.
  4. Andersen, B.,Nielsen, K. F.,Thrane, U.,Szaro, T.,Taylor, J. W.,Jarvis, B. B.(2003).Molecular and phenotypic descriptions of Stachybotrys chlorohalonata sp. nov. and two chemotypes of Stachybotrys chartarum found in water-damaged buildings.Mycologia,95(6),1227-1238.
  5. Andersson, M. A.,Nikulin, M.,Koljalg, U.,Andersson, M. C.,Rainey, F.,Reijula, K.,Hintikka, E. L.,Salkinoja-Salonen, M.(1997).Bacteria, molds, and toxins in water-damaged building materials.Applied and Environmental Microbiology,63(2),387-393.
  6. ASTM(2003).Standard Guide for Developing Methodology for Evaluating the Ability of Indoor Materials to Support Microbial Growth Using Static Environmental Chambers.PA, USA:ASTM.
  7. Barnes, P. J.(2001).Potential novel therapies for chronic obstructive pulmonary disease.Novartis Foundation Symposium,234,255-72.
  8. Carpenter, P. L.(1972).Microbiology.NY, USA:WB Saunders Company.
  9. Chao, H. J.,Schwartz, J.,Milton, D. K.,Burge, H. A.(2002).Populations and determinants of airborne fungi in large office buildings.Environmental Health Perspectives,110(8),777-782.
  10. Cooley, J. D.,Wong, W. C.,Jumper, C. A.,Straus, D. C.(2004).Fungi and the indoor environment: Their impact on human health.Advances in Applied Microbiology,55,1-30.
  11. Ezeonu, I. M.,Price, D. L.,Simmons, R. B.,Crow, S. A.,Ahearn, D. G.(1994).Fungal production of volatiles during growth on fiberglass.Applied and Environmental Microbiology,60(11),4172-4173.
  12. Garrett, M. H.,Rayment, P. R.,Hooper, M. A.,Abramson, M. J.,Hooper, B. M.(1998).Indoor airborne fungal spores, house dampness and associations with environmental factors and respiratory health in children.Clinical &Experimental Allergy,28(4),459-467.
  13. Gharieb, M. M.,Sayer, J. A.,Gadd, G. M.(1998).Solubilization of natural gypsum (CaSO4.2H2O) and the formation of calcium oxalate by Aspergillus niger and Serpula himantioides.Mycol Res,102(4),825-830.
  14. Gravesen, S.,Nielsen, P. A.,Iversen, R.,Nielsen, K. F.(1999).Microfungal contamination of damp buildings--examples of risk constructions and risk materials.Environmental Health Perspectives,107(3),505-508.
  15. Greenguard Environmental Institute(2006).The GREENGUARD Certification ProgramThe GREENGUARD Certification Program,GA, USA:Air Quality Sciences, Inc..
  16. Hippelein, M.,Rugamer, M.(2004).Ergosterol as an indicator of mould growth on building materials.International Journal of Hygiene and Environmental Health,207(4),379-385.
  17. Hoang, C. P.,Kinney, K. A.,Corsi, R. L.,Szaniszlo, P. J.(2010).Resistance of green building materials to fungal growth.International Biodeterioration & Biodegradation,64,104-113.
  18. Hukka, A.,Viitanen, H. A.(1999).Amathematical model of mould growth on wooden material.Wood Science and Technology,33,475-485.
  19. Hyvarinen, A.,Meklin, T.,Vepsalainen, A.,Nevalainen, A.(2002).Fungi and actinobacteria in moisture-damaged building materials -Concentrations and diversity.International Biodeterioration & Biodegradation,49,27-37.
  20. Jussila, J.,Komulainen, H.,Huttunen, K.,Roponen, M.,Halinen, A.,Hyvarinen, A.,Kosma, V. M.,Pelkonen, J.,Hirvonen, M. R.(2001).Inflammatory responses in mice after intratracheal instillation of spores of Streptomyces californicus isolated from indoor air of a moldy building.Toxicology and Applied Pharmacology,171(1),61-69.
  21. Jussila, J.,Komulainen, H.,Kosma, V. M.,Pelkonen, J.,Hirvonen, M. R.(2002).Inflammatory potential of the spores of Penicillium spinulosum isolated from indoor air of a moisture-damaged building in mouse lungs.Environmental Toxicology and Pharmacology,12(3),137-145.
  22. Klamer, M.,Morsing, E.,Husemoen, T.(2004).Fungal growth on different insulation materials exposed to different moisture regimes.International Biodeterioration & Biodegradation,54(4),277-283.
  23. Liao, C. M.,Luo, W. C.(2005).Use of temporal/seasonal- and size-dependent bioaerosol data to characterize the contribution of outdoor fungi to residential exposures.Science of the Total Environment,347(1-3),78-97.
  24. Mahooti-Brooks, N.,Storey, E.,Yang, C.,Simcox, N. J.,Turner, W.,Hodgson, M.(2004).Characterization of mold and moisture indicators in the home.Journal of Occupational and Environmental Hygiene,1(12),826-839.
  25. Murtoniemi, T.,Hirvonen, M. R.,Nevalainen, A.,Suutari, M.(2003).The relation between growth of four microbes on six different plasterboards and biological activity of spores.Indoor Air,13(1),65-73.
  26. Nevalainen, A.,Seuri, M.(2005).Of microbes and men.Indoor Air,15(9),58-64.
  27. Nielsen, P. A.,Nielsen, K. F.,Holm, G.,Uttrup, L. P.(2004).Mould growth on building materials under low water activities. Influence of humidity and temperature on fungal growth and secondary metabolism.International Biodeterioration & Biodegradation,54,325-36.
  28. Nikulin, B. A.(1994).The procedures for using immunological study methods in different diseases.Voenno-meditsinskii Zhurnal,1(80),26-31.
  29. Olalekan, F. O.,Simonson, C. J.(2006).Moisture buffering capacity of hygroscopic building materials: Experimental facilities and energy impact.Energy and Buildings,38(10),1270-1282.
  30. Pasanen, A. L.,Rautiala, S.,Kasanen, J. P.,Raunio, P.,Rantamaki, J.,Kalliokoski, P.(2000).The relationship between measured moisture conditions and fungal concentrations in water-damaged building materials.Indoor Air,10(2),111-120.
  31. Polizzi, V.,Delmulle, B.,Adams, A.,Moretti, A.,Susca, A.,Picco, A. M.,Rosseel, Y.,Kindt, R.,Van Bocxlaer, J.,De Kimpe, N.,Van Peteghem, C.,De Saeger, S.(2009).Fungi, mycotoxins and microbial volatile organic compounds in mouldy interiors from water-damaged buildings.Journal of Environmental Monitoring,11(10),1849-1858.
  32. Schroeder, H. W.,Hein, H., Jr.(1976).Aflatoxins: production of the toxins in vitro in relation to temperature.Journal of Applied Microbiology,15(2),441-445.
  33. Schuster, E.,Dunn-Coleman, N.,Frisvad, J. C.,Van Dijck, P. W.(2002).On the safety of Aspergillus niger-A review.Applied Microbiology and Biotechnology,59(4-5),426-435.
  34. Seo, S. C.,Reponen, T.,Levin, L.,Borchelt, T.,Grinshpun, S. A.(2008).Aerosolization of particulate (1->3)-beta-D-glucan from moldy materials.Applied and Environmental Microbiology,74(3),585-593.
  35. Shoemaker, R. C.,House, D. E.(2005).A time-series study of sick building syndrome: Chronic, biotoxin-associated illness from exposure to water-damaged buildings.Neurotoxicology and Teratology,27(1),29-46.
  36. Singh, S.,Evans, T. W.(1997).Nitric oxide, the biological mediator of the decade: fact or fiction?.European Respiratory Journal,10(3),699-707.
  37. Strachan, D. P.,Flannigan, B.,McCabe, E. M.,McGarry, F.(1990).Quantification of airborne moulds in the homes of children with and without wheeze.Thorax,45(5),382-387.
  38. Su, H. J.,Wu, P. C.,Chen, H. L.,Lee, F. C.,Lin, L. L.(2001).Exposure assessment of indoor allergens, endotoxin, and airborne fungi for homes in southern Taiwan.Environmental Research,85(2),135-144.
  39. Taubel, M.,Sulyok, M.,Vishwanath, V.,Bloom, E.,Turunen, M.,Jarvi, K.,Kauhanen, E.,Krska, R.,Hyvarinen, A.,Larsson, L.,Nevalainen, A.(2011).Co-occurrence of toxic bacterial and fungal secondary metabolites in moisture-damaged indoor environments.Indoor Air,21(5),368-375.
  40. Van Den Bulcke, J.,Van Acker, J.,Stevens, M.(2007).Laboratory testing and computer simulation of blue stain growth on and in wood coatings.International Biodeterioration & Biodegradation,59(2),137-147.
  41. Viitanen, H.,Ojanen, T.,Peuhkuri, R.,Paajanen, L.(2010).Moisture and biodeterioration risk of building materials and structures.Construction & Building Technology,30,201-224.
  42. Viitanen, H.,Ritschkoff, A. C.(1991).Mould growth in pine and spruce sapwood in relation to air humidity and temperature.Uppsala, Sweden:The Swedish University of Agricultural Scienses, Department of Forest Products.
  43. Wedzicha, J. A.(2001).Mechanisms of exacerbations.Novartis Foundation Symposium,234,84-103.
  44. Yoon, J. H.,Hong, S. B.,Ko, S. J.,Kim, S. H.(2007).Detection of extracellular enzyme activity in penicillium using chromogenic media.Mycobiology,35(3),166-169.
  45. 紀碧芳(2003)。台南市=Tainan,國立成功大學環境醫學研究所=Department of Environmental and Occupational Health Medical College, National Cheng Kung University。
  46. 陳晏琦(2012)。台北市=Taipei,國立台北科技大學建築與都市設計研究所=Department of Architecture, National Taipei University of Technology。
被引用次数
  1. 樊冠偉,陳上仁,邵文政(2020)。室內牆體建材調濕性能之研究。建築學報,111_S(技術專刊),37-61。