Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 公共衛生學院
  3. 環境衛生研究所
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35692
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor林嘉明
dc.contributor.authorSiou-Wun Liouen
dc.contributor.author劉秀玟zh_TW
dc.date.accessioned2021-06-13T07:05:10Z-
dc.date.available2005-08-12
dc.date.copyright2005-08-12
dc.date.issued2005
dc.date.submitted2005-07-27
dc.identifier.citation1. Occupational Safety & Health Administration, Substance technical guidelines for formalin - 1910.1048 App A (http://0rz.net/520ux).
2. EPA Chemical Profile, (http://0rz.net/130u8).
3. 賴佳鈺、林宜長,甲醛被動式採樣器之研究,國立台灣大學公共衛生研究所碩士論文,2003
4. Jacek Koziel, Mingyu Jia, Abir Khaled, Japheth Noah, Janusz Pawliszyn, Field air analysis with SPME device. Analytica Chimica Acta, 1999. 400: p. 153–162.
5. Stenton, SC., HendricK, DJ, Immunol Allergy Clinics North Am, 1994. 14: p. 635-657.
6. IARC. Monographs on the Evaluation of the Carcinogenic Risk of Chemicals to Man. Geneva: World Health Organization, International Agency for Research on Cancer,1972.
7. Patty, F. (ed.). Industrial Hygiene and Toxicology: Volume II: Toxicology. 2nd ed. New York: Interscience Publishers, 1963.
8. Schoenotol R, Gibbard S, Cancinogens in Chinese incense smoke. Nature, 1967. 216:
p. 625.
9. Rasmussen RE, Mutagenic activity of incense smoke on salmonella typhimurium. Bull Environ Contact Toxicol, 1987. 38: p. 827-833.
10. Huynh CK, Savolainen H, Vu-Due T, Guillemin M, Iseln F, Impact of thermal proofing of a church on its indoor air quality: The combustion of candels and incense as a source of pollution. The Science of the Total Environment, 1991. 102: p. 241-251.
11. Crupm DR, Gardiner D, Source and concentrations of aldehydes and ketones in indoor environment in the UK. Environ Int, 1989. 15: p. 455-562.
12. Lucas D, Menez JF, Berthou F, Pennec Y, Floch HH, Determination of free acetaldehyde in blood as the dinitro-phenyl-hydrazone derivative by high performance liquid chromatography. J Chromatogr, 1986. 382: p. 57-66.
13. 王玲紅、林嘉明,拜香燃煙中脂族醛氣體之探討,台灣大學公共衛生研究所碩士論文,1993.
14. 吳易儒、吳義林,民俗活動對於空氣品質之影響,國立成功大學環境工程研究所碩士論文,2004.
15. 高玫鐘、龍世俊,寺廟內燃香產生PM10濃度之探討,氣膠科技研討會論文集,p. 274-279,1999.
16. Guor-Cheng Fang, Cheng-Nan Chang, Yuh-Shen Wu, Chang-Ju Yang, Shyh-Chyi Chang, I-Lin Yang, Suspended particulate variations and mass size distributions of incense burning at Tzu Yun Yen temple in Taiwan, Taichung. The Science of the Total Environment, 2002. 299: p. 79-87.
17. 李綉偉、張幼珍,拜香燃煙粒徑分布動態變化與增濕成長特性,元智大學化學工程研究所碩士論文,1998.
18. 謝永昌、林達昌,拜香氣膠中PAHs之粒徑分佈研究,國立成功大學環境工程學研究所碩士論文,2001.
19. 謝居憲、林達昌,寺廟內部空氣中多環芳香烴化合物成分及特徵之研究,國立成功大學環境工程研究所碩士論文,1995.
20. 唐進勝、林嘉明,拜香燃煙中微粒之度量、計數及脂肪醛含量,台灣大學公共衛生研究所碩士論文,1993.
21. Haykawa R, Matsunaga K, Arima Y, Airborne pigmented contact dermatitis due to must ambrette in incense. Contact Dermatitis, 1987. 16: p. 96-98.
22. Chen CJ, Wang YF, Shieh T, Chen JY, Lin MY, Multi-factorial etiology of nasopharyngeal carcinoma. Head and Neck Oncology Research Conference, 1987. 10-12: p. 469-476.
23. Guyton, John E. Hall原著,林佑穗、袁宗凡編譯,Guyton & Hall新編蓋統醫用生理學,2000.
24. Standard test method for measurement for formaldehyde in indoor air (Passive sampler methodology) D5014, The American society for testing and material, 1989. p. 415-420
25. 蔡詩偉、林嘉明,空氣中甲醛之被動式採樣分析—Pararosaniline法之研究,國立台灣大學公共衛生研究所碩士論文,1990.
26. Thrasher J. D., Kilbrurn K. H., Embryo Toxicity and Teratogenicity of formaldehyde. Archives of environmental health, 2001. 56(4): p. 300-311.
27. 行政院環保署,環境檢驗所:醛酮類化合檢測方法-高效能液相層析,NIEA R502. 10C, 2000.
28. Matthews T. G., Hawthorne A. R., Evaluation of selected monitoring methods for formaldehyde in domestic environments. Environmental International, 1982. 8: p. 143-151.
29. Ellwood P. A., Groves J. A., Evaluation of a diffusive sampler for formaldehyde. Ann. Occup. Hyg., 1990. 34(3): p. 305-313.
30. Eugene Sawicki, Thomas R. Hauser, Spot test detection and colorimetric of aliphatic aldehydes with 2-hydrazinobenzothiazole application to air pollution. Analytical Chemistry, 1960. 32(11): p. 1434-1436.
31. Jaceka, Koziel, Japheth Noah, and Janusz Pawliszyn, Field sampling and determination of formaldehyde in indoor air with solid-phase microextraction and on-Fiber derivatization. Environ. Sci. Technol, 2001. 35: p. 1481-1486.
32. Perry A. Martos and Janusz Pawliszyn, Sampling and determination of formaldehyde using solid-phase microextraction with on-fiber derivatization. Anal. Chem.1998. 70: p. 2311-2320.
33. György Vas and Károly Vékey, Solid-phase microextraction: a powerful sample preparation tool prior to mass spectrometric analysis. J. Mass Spectrom. 2004. 39: p. 233-254.
34. Maria de Fátima Alpendurada, Solid-phase microextraction: a proising technique for sample preparation in environmental analysis. Journal of Chromatography A, 2000. 889: p. 3-14.
35. 行政院勞工安全委員會,勞工安全衛生研究所:甲醛採樣分析建議方法,240
36. Janusz Pawliszyn, Theory of solid-phase microextraction, Journal of Chromatographic Science, July 2000. 38: p. 270-278.
37. Abir Khaled, Janusz Pawliszyn, Time-weighted average sampling of volatile and semi-volatile airborne organic compounds by the solid-phase microextraction device. Journal of Chromatography A, 2000. 892: p. 455-467.
38. Pawliszyn, J. (ED), Applications of solid-phase microextraction. Royal Society of Chemistry, Cambridge, 1999.
39. Fuller E. N., Schettler P. D., Giddings J. C., New method for prediction of binary gas-phase diffusion coefficients, 1966. p. 58.
40. Reid R. C., Prausnitz J. M., Poling B. E. (Eds.), The properties of gases and liquids. 4th ed., New York: McGraw-Hill, 1988. p.586.
41. Roy R. K., Design of experiments using the Taguchi approach: 16 steps to product and process improvement. ISBN 0-471-36101-1, 2001. p. 16-133.
42. 陳正堯、林嘉明,以固相微萃取技術研發空氣中二氯甲烷之被動式採樣,台灣大學環境衛生研究所碩士論文,2003.
43. 楊慈定、陳志傑、林嘉明,健康拜香之研發,台灣大學環境衛生研究所博士論文,2005.
44. Chunhui Deng, Wei Zhang, Jie Zhang, Xiangmin Zhang, Rapid determination of acetone in human plasma by gas chromatography–mass spectrometry and solid-phase microextraction with on-fiber derivatization. Journal of Chromatography B, 2004. 805: p. 235-240.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/35692-
dc.description.abstract甲醛為反應性高之化學物質,廣泛地應用於工業界與醫療界,過度暴露可導致眼鼻及呼吸系統不適之急性反應,長期暴露下則可能有致癌之發生,因此倍受關心。
本研究乃利用固相微萃取裝置 (Solid-phase microextraction, SPME)對甲醛進行採樣與分析。選用之纖維材質為65 μm之Poly (dimethysiloxane)-divinylbenzene (PDMS-DVB),配合SPME裝置,分別利用裸露與內縮 (擴散徑長z = 0.3 cm) 兩種不同方式採集氣相甲醛以及藉由拜香系統所產生氣粒相共存之甲醛。在採集氣相甲醛部份,設定不同的濃度、溫度、相對溼度與採樣時間,並配合GC/FID進行分析;在採集氣粒相共存之甲醛,則設定固定之系統流量與不同採樣時間,同時以XAD-2吸附管作為傳統方式之驗證。
在標準氣體所做的結果顯示,不論以裸露採樣或是內縮採樣,其甲醛的吸附質量均與濃度以及採樣時間呈線性關係。溫度(15°C-35°C)以及相對溼度(25%-80%)在內縮採樣上看不出明顯的影響,而裸露採樣則有明顯的影響。溫度對裸露採樣之採樣率的變異貢獻佔68.91%,而相對溼度則貢獻19.63%。而在內縮採樣上則以濃度(貢獻度為36.28%)與採樣時間(貢獻度為27.89%)為主要影響其採樣率之因子。
而在採集拜香燃煙方面,可發現無前置濾紙所採集到之甲醛吸附量高於有前置濾紙之結果。無前置濾紙之甲醛吸附量與時間呈現一曲線關係,而有前置濾紙之甲醛吸附量則與時間呈一線性關係。就化學物種之分析而言,無前置濾紙所採集到的物種也較為複雜,推測SPME纖維可採集到微粒上之甲醛,且同時可採集到其他由拜香所產生之物質。
zh_TW
dc.description.abstractFormaldehyde is a high reactive compound commonly used in industry and medical treatment. Exposure to formaldehyde results in acute effect on upper respiratory tract and possible carcinogeness. In this study, formaldehyde was sampled by derivation with o-(2, 3, 4, 5, 6 pentafluorobenzyl)-hydroxylamine hydrochloride (PFBHA) coated on 65 μm of poly (dimethylsiloxane)/divinylbenzene solid-phase microextraction fibers. Two types of sampling mode, fiber extruded outside the needle and fiber retracted inside the needle, were carried out. A standard gas generation system regulated the concentration of formaldehyde, temperature and humidity in an exposure chamber. A kind of Chinese incense was burned in incense combustion system where flow rate was regulated at 3Lpm. The NIOSH-2451 active sampling method with XAD-2 was used for validation of the SPME method. To sample analytes, thermal desorption incorporated with gas chromatography with flame ionization detector was used.
The amount of formaldehyde collected on fibers, either in extruded mode or retracted mode, is well correlated with the concentration of formaldehyde and sampling time. Temperature (15°C-35°C) and humidity (25%-80%) did not significantly affect the performance of the retracted fibers, but did affect that performance of the extruded fibers. The variation of sampling rate was mainly attributed to temperature by 68.91% and humidity by 19.63% while fibers were used in the extruded mode. And when the fiber was used in the retracted mode, concentration (36.28%) and sampling time (27.89%) both attributed to the variation of sampling rate.
To sample incense smoke, the amount of formaldehyde collected by the extruded fibers without prefiltration was higher than that with prefiltration. The relationship between mass and sampling time was nonlinear for the samples without prefiltration, but it was linear for the samples with prefiltration. Besides, compounds collected in the former were more complicate. It suggests that compounds in addition to particulate–bonded formaldehyde from burning Chinese incense would be sampled by the PFBHA coated PDMS/DVB fiber.
en
dc.description.provenanceMade available in DSpace on 2021-06-13T07:05:10Z (GMT). No. of bitstreams: 1
ntu-94-R92844010-1.pdf: 2445883 bytes, checksum: 27127002e34adcba1cf19bdbbb6ba28d (MD5)
Previous issue date: 2005
en
dc.description.tableofcontents摘要 i
Abstract ii
致謝 iv
目錄 v
表目錄 viii
圖目錄 ix
第一章 緒論
1-1 前言 1
1-2 研究目的 1
1-3 研究架構 2
第二章 文獻探討
2-1 甲醛的介紹及其毒性資料 3
2-2 拜香的介紹 4
2-3 空氣中甲醛的採樣分析 5
2-4 固相微萃取 8
2-5 實驗設計法 11
第三章 材料與方法
3-1 儀器設備與試藥 14
3-1-1 儀器設備與材料 14
3-1-2 試藥耗材 15
3-2 PFBHA 裹覆量與時間之關係 16
3-3 甲醛與PFBHA衍生反應 16
3-4 GC/MS儀器對合成物定性之分析及條件設定 17
3-5 甲醛之檢量線製作 17
3-6 標準氣體產生系統之架設 18
3-7 SPME採樣分析氣相甲醛之驗證 19
3-7-1 實驗設計 19
3-7-2 SPME 纖維採樣測試條件 20
3-7-3 熱脫附效率測試 20
3-7-4 樣品穩定性測試 20
3-8 拜香系統之架設與採樣 21
3-8-1 拜香系統之架設 21
3-8-2 主動式採樣分析 21
3-8-3 實驗設計與測試條件 22
第四章 結果
4-1 PFBHA裹覆量與時間之關係 24
4-2 以GC/MS證明合成物質為甲醛-PFBHA oxime 24
4-3 甲醛之檢量線 25
4-4 SPME 採樣分析氣相甲醛之驗證 25
4-4-1 注射針推進器設定之速率與實際推進率之關係 25
4-4-2 熱脫附效率測試 26
4-4-3 各控制變項對裸露採樣表現的影響 26
4-4-4 各控制變項對內縮採樣表現的影響 27
4-4-5 樣品穩定性測試 28
4-5 SPME採樣分析拜香中甲醛之驗證 29
4-5-1 主動式採樣分析之檢量線 29
4-5-2 以SPME採集拜香燃煙之甲醛吸附量 29
第五章 討論
5-1 影響SPME對標準氣體採樣的重大因子探討 31
5-2 以SPME對拜香燃煙採樣的特殊發現 32
5-3 SPME採樣的應用與限制 33
參考文獻 34
附錄一 68
dc.language.isozh-TW
dc.title以固相微萃取技術為基礎採樣分析空氣中甲醛的應用zh_TW
dc.titleApplication of Solid-Phase Microextraction on Determining Airborne Formaldehydeen
dc.typeThesis
dc.date.schoolyear93-2
dc.description.degree碩士
dc.contributor.oralexamcommittee洪益夫,蔡詩偉
dc.subject.keyword五氟芐羥胺[o-(2,3,4,5,6-pentafluorobenzyl)-hydroxylamine hydrochloride (PFBHA)],甲醛,拜香,固相微萃取,Poly (dimethysiloxane)-divinylbenzene (PDMS-DVB),zh_TW
dc.subject.keywordo-(2,3,4,5,6-pentafluorobenzyl)-hydroxylamine hydrochloride (PFBHA)],formaldehyde,incense,solid-phase microextraction (SPME),Poly (dimethylsiloxane)-divinylbenzene (PDMS-DVB),en
dc.relation.page68
dc.rights.note有償授權
dc.date.accepted2005-07-27
dc.contributor.author-college公共衛生學院zh_TW
dc.contributor.author-dept環境衛生研究所zh_TW
顯示於系所單位:環境衛生研究所

文件中的檔案:
檔案 大小格式 
ntu-94-1.pdf
  目前未授權公開取用
2.39 MBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved