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題名:臺灣綠建材降低室內甲醛濃度之吸附性能檢測系統驗證
書刊名:建築學報
作者:黃琨智江哲銘李俊璋鄭元良林霧霆
作者(外文):Huang, Kun-chihChiang, Che-mingLee, Ching-changCheng, Yuan-liangLin, Wu-ting
出版日期:2012
卷期:80
頁次:頁63-83
主題關鍵詞:綠建材甲醛吸附性能脫附特性檢測系統DesorptionGreen building materialFormaldehydeSorptionTest system
原始連結:連回原系統網址new window
相關次數:
  • 被引用次數被引用次數:期刊(2) 博士論文(0) 專書(0) 專書論文(0)
  • 排除自我引用排除自我引用:2
  • 共同引用共同引用:0
  • 點閱點閱:81
本研究因應近年推出吸附性建材最新標準規範如 ISO、JIS 等,透過國際標準規範 ISO 16000-23為基礎,藉由國家性能實驗中心小尺寸環控箱設備系統,開發建立國內吸附性建材檢測系統(SBMTS),並依擬定標準作業程序進行檢測系統之驗證並進行三組建材吸附性能項目測試,提供作為國內 CNS 標準 ISO 化修訂之依據。結果顯示,本研究建置檢測系統經連續多次甲醛濃度採樣之驗證,符合濃度回收率 80%以上,並透過儀器監控顯示系統符合穩定性且足以提供國內建材吸附性能相關檢測及性能驗證;各組建材藉由性能評定計算結果,可明確檢視單位時間內降低甲醛濃度吸附性之影響,依此提供予國內為參考依據。
This study response the international community has been launched sorptive building materials, such as standards ISO, JIS, etc in recent years, and based on ISO 16000-23 through the small-scale chamber equipment system, National Performance Laboratory Center, to develop and establish domestic "Sorptive Building Material Test System, SBMTS", in accordance with SOP to validation of the test system and provided for sorptive test by three building materials, as domestic CNS of the revised to on ISO standard. The results was verified SBMTS to conform concentrations of HCHO recovery more than 80% by repeatedly sampling, and the system was meet the stability through the instrument monitoring display, which could to provide the relevant performance validation and testing for SBM. This study according results with sorption test of the building materials could survey reducing formaldehyde concentration as the equivalent time that may provide to reference of the national standards.
期刊論文
1.徐長厚、加藤信介、安宅勇二、千野聡子(2008)。吸着材及び吸着建材を用いた室内VOCs濃度低減性能試験に関する研究:トルエン濃度低減効果に影響を及ぼす因子の検討。日本建築学会環境系論文集,73(628),751-758。  延伸查詢new window
2.Seo, J.、Kato, S.、Ataka, Y.、Chino, S.(2008)。Study on indoor VOCs concentration reduction performance of the activated carbon and sorptive building materials: Evaluation on parameters influencing to the toluene concentration reduction performance。Journal of Environmental Engineering,73(628),751-758。  new window
3.Won, D.、Sander, D. M.、Shaw, C. Y.、Corsi, R. L.(2001)。Validation of the surface sink model for sorptive interactions between VOCs and indoor materials。Atmospheric Environment,35,4479-4488。  new window
會議論文
1.Huang, K. C.、Chiang, C. M.、Lee, C. C.、Shao, W. C.、Lin, F. M.(2011)。Validation and performance test of the reduction formaldehyde concentrations for indoor environment by sorptive building materials in Taiwan。CA, USA。No.6,a719。  new window
2.Huang, K. C.、Chiang, C. M.、Liao, H. Y.、Lee, C. C.、Shao W. C.、Lin, F. M.(2011)。Decoration design and performance validation of sorptive building materials for HCHO efficiency。Tainan。86。  new window
研究報告
1.周伯丞、江哲銘、林慶元(2011)。綠建材標章審查作業精進計畫。新北市。  延伸查詢new window
2.江哲銘、李俊璋、林芳銘、邵文政(2010)。綠建材對甲醛及TVOC吸附性能之測試方法驗證計畫。新北市。  延伸查詢new window
3.江哲銘、邵文政(2009)。擴大健康綠建材性能與效益評估計畫。新北市。  延伸查詢new window
4.Chiang, C. M.、Lee, C. C.、Lin, F. M.、Shao, W. C.(2010)。Validation Program on Testing Methods of Formaldehyde and TVOC Absorption Performance for Green Building Materials。New Taipei City。  new window
5.Chiang, C. M.、Shao, W. C.(2009)。A Plan of Expanded Evaluation for Health Green Building Materials Performance and Benefit。New Taipei City。  new window
6.Chou, P. C.、Chiang, C. M.、Lin, C. Y.(2011)。A Plan of Advancement of Green Building Material Label System and Connection。New Taipei City。  new window
圖書
1.American Society for Testing and Materials(2006)。D5116-06 Standard Guide for Small-Scale Environmental Chamber Determinations of Organic Emissions from Indoor Materials/Products。PA, USA。  new window
其他
1.CNS 16000-23中華民國國家標準(2011)。CNS 16000-23:室內空氣--第23部:評估吸附/吸收性建築材料降低甲醛濃度之性能試驗,台北市。  延伸查詢new window
2.CNS 16000-24中華民國國家標準(2011)。CNS 16000-24:室內空氣--第24部:評估吸附/吸收性建築材料降低揮發性有機化合物(甲醛除外)濃度之性能試驗,台北市。  延伸查詢new window
3.BCJ-CS-5新建築技術認定(2003)。BCJ-CS-5:室内空気中の揮発性有機化合物汚染低減建材認定基準,東京。  延伸查詢new window
4.JIS A 1905-2 日本工業規格(2007)。JIS A 1905-2:小形チャンバー法による室内空気汚染濃度低減材の低減性能試験法-第2部:ホルムアルデヒド放散建材を用いた吸着速度測定,東京。  延伸查詢new window
5.JIS A 1906 日本工業規格(2008)。JIS A 1906:小形チャンバー法による室内空気汚染濃度低減材の低減性能試験法-一定揮発性有機化合物(VOC),及びホルムアルデヒドを除く他のカルボニル化合物濃度供給法による吸着速度測定,東京。  延伸查詢new window
6.JIS A 1901日本工業規格(2009)。JIS A 1901:建築材料の揮発性有機化合物(VOC),ホルムアルデヒド及び他のカルボニル化合物放散測定方法-小形チャンバー法,東京。  延伸查詢new window
7.JSTM H 5001日本建材試驗協會規格(2005)。JSTM H 5001:小形チャンバー法による室内空気汚染濃度低減建材の低減性能試験方法,東京。  延伸查詢new window
8.JIS A 1905-1日本工業規格(2007)。JIS A 1905-1:小形チャンバー法による室内空気汚染濃度低減材の低減性能試験法-第1 部:一定ホルムアルデヒド濃度供給法による吸着速度測定,東京。  延伸查詢new window
9.CNS 16000-23, National Standards of the Republic of China(2011)。CNS 16000-23: Indoor Air - Part 23: Performance Test for Evaluating the Reduction of Formaldehyde Concentrations by Sorptive Building Materials,Taipei。  new window
10.CNS 16000-24, National Standards of the Republic of China(2011)。CNS 16000-24: Indoor Air – Part 24: Performance Test for Evaluating the Reduction of Volatile Organic Compound (Except Formaldehyde) Concentrations by Sorptive Building Materials,Taipei。  new window
11.BCJ-CS-5, New Building Technologies Certification(2003)。BCJ-CS-5: Building Materials Reducing Contamination by Volatile Organic Compounds in the Indoor Air,Tokyo。  new window
12.JIS A 1905-2, Japanese Industrial Standards(2007)。JIS A 1905-2: Performance Test of Sorptive Building Materials Reducing Indoor Air Pollution with Small Chamber -- Part 2: Measurement of Capability for Suppressing Formaldehyde Emission,Tokyo。  new window
13.JIS A 1906, Japanese Industrial Standards(2008)。JIS A 1906: Performance Test of Sorptive Building Materials of Reducing Indoor Air Pollution with Small Chamber -- Measurement of Adsorption Flux with Supplying Constant Concentration of Contaminant Air of VOC and Aldehydes without Formaldehyde,Tokyo。  new window
14.JIS A 1901, Japanese Industrial Standards(2009)。JIS A 1901: Determination of The Emission of Volatile Organic Compounds and Aldehydes for Building Products: Small Chamber Method,Tokyo。  new window
15.JIS A 1905-1, Japanese Industrial Standards(2007)。JIS A 1905-1: Performance Test of Sorptive Building Materials of Reducing Indoor Air Pollution with Small Chamber -- Part 1: Measurement of Adsorption Flux with Supplying Constant Concentration of Formaldehyde,Tokyo。  new window
16.JSTM H 5001, Japan Society for Testing and Materials(2005)。JSTM H 5001: Test Method for Reductance of Concentration of Indoor Air Pollution Chemicals by Building Materials-Small Chamber Method,Tokyo。  new window
17.Bucakova, M.,Senitkova, I.(2007)。Building material interactions and perceived air quality,Helsinki, Finland。,http://www.inive.org/members_area/medias/pdf/Inive%5Cclima2007%5CA12%5CA12L1483.pdf, 20120211。  new window
18.ISO 16000-23(2009)。Indoor Air Part 23: Performance Test for Evaluating the Reduction of Formaldehyde Concentrations by Sorptive Building Materials,Geneva, Switzerland。  new window
19.ISO 16000-24(2009)。Indoor Air Part 24: Performance Test for Evaluating the Reduction of Volatile Organic Compound (Except Formaldehyde) Concentrations by Sorptive Building Materials,Geneva, Switzerland。  new window
20.ISO 16000-3(2011)。Indoor Air Part 3: Determination of Formaldehyde and Other Carbonyl Compounds In Indoor Air and Test Chamber Air: Active Sampling Method,Geneva, Switzerland。  new window
21.ISO 16000-6(2011)。Indoor Air Part 6: Determination of Volatile Organic Compounds in Indoor and Test Chamber Air by Active Sampling on Tenax TA Sorbent, Thermal Desorption and Gas Chromatography Using MS or MS-FID,Geneva, Switzerland。  new window
22.ISO 16000-9(2006)。Indoor Air - Part 9: Determination of the Emission of Volatile Organic Compounds from Building Products and Furnishing - Emission Test Chamber Method,Geneva, Switzerland。  new window
 
 
 
 
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