研究生: |
鍾仁哲 Chung, Ren-Je |
---|---|
論文名稱: |
冷凝超音波輔助乳化微萃取法搭配極致效能液相層析儀檢測硝基酚類分析物 Determination of nitrophenols using ultrasound-assisted emulsification microextraction method based on solidification of floating organic drop ombined with UPLC |
指導教授: |
黃賢達
Huang, Shang-Da |
口試委員: |
凌永健
傅明仁 |
學位類別: |
碩士 Master |
系所名稱: |
理學院 - 化學系 Department of Chemistry |
論文出版年: | 2011 |
畢業學年度: | 99 |
語文別: | 中文 |
論文頁數: | 65 |
中文關鍵詞: | 冷凝超音波輔助乳化微萃取法 、硝基酚 、液相層析儀 |
相關次數: | 點閱:3 下載:0 |
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硝基酚類化合物是常見的環境污染物之一,硝基酚廢水主要來源為化工、染料、農業、醫藥等行業,是典型的有毒難降解性有機廢水。如本文欲檢測的分析物為對硝基酚、2,4-二硝基酚、3-甲基-4-硝基酚及2-甲基- 4,6 -二硝基酚等,這些被美國環境保護署列為優先列管之污染化合物。
本篇論文的目的是開發使用極少量且低毒性的萃取溶劑,配合簡單的前濃縮步驟快速地萃取自然環境水樣中硝基酚類化合物,以期符合環境保護及達到檢驗效率的目標。
本研究採用冷凝式超音波輔助乳化微萃取法技術(Ultrasound-assisted emulsification microextraction method based on solidification of a floating organic drop)來萃取水樣中的硝基酚化合物並搭配極致效能液相層析儀進行檢測。選用低毒性的十一烷醇萃取溶劑,採以手搖輔助超音波方式分散,不需使用任何分散劑,大大的減低使用的萃取溶劑量(本實驗萃取溶劑使用量為12 μL)。
此方法湖水的偵測極限是0.5 μg L-1 – 3.0 μg L-1,農業用水的偵測極限是0.6 μg L-1 – 3.2μg L-1。相對標準偏差在6-12 %。
1. U.S. EPA , “Current National Recommended Water Quality Criteria”, 2005.
2. L.H. Keith, “EPA’s”, Ch. Symp. Series, Water, 1980, 77, 249.
3. 中華民國行政院環境保護署環境檢驗所,「土壤及事業廢棄物中酚類檢測方法-毛細管柱氣相層析法(NIEA M614.01C) 」,91年。
4. 中華民國行政院環境保護署環境檢驗所,「環境用藥禁止含有之有效成分檢測方法-氣相層析質譜法(NIEA D910.01B) 」,100年。
5. U.S. EPA, “Phenols by Gas Chromatography(METHOD 8041A)”, November 2000.
6. F.W. Kutz, B.T. Cook, O.D. Carter-Pokras, et al., J. Toxicol. Environ. Health, 1992, 37, 277.
7. C.L. Arthur, J. Pawliszy, Anal. Chem., 1990, 62, 2145-2148.
8. M.A. Jeannot and F.F. Cantwell, Anal. Chem., 1996, 68, 2236-2240.
9. Y. He and H.K. Lee, Anal. Chem., 1997, 69, 4634-4640.
10. P.-B. Stig and K.E. Rasmussen, Anal. Chem., 1999, 71, 2650-2656.
11. G. Shen and H.K. Lee, Anal. Chem., 2002, 74, 648-654.
12. X. Jiang and H.K. Lee, Anal. Chem., 2004, 76, 5591-5596.
13. M.B. Melwanki; S.-D. Huang; M.-R. Fuh, TALANTA, 2007, 72, 2, 373-377.
14. M. Rezaee, Y. Assadi, M.R.M. Hosseini, et al., J. Chromatogr. A, 2006, 1116, 1-9.
15. M.R.K. Zanjani, Y. Yamini, S. Shariati, et al., Anal. Chim. Acta, 2007, 585, 286-293.
16. K.-Z. MR, Y. Yamini, N. Yazdanfar, S. Shariati, Anal. Chim. Acta, 2005, 606, 2, 202-2088.
17. M.-I. Leong and S.-D. Huang, J. Chromatogr. A, 2008, 1211, 1-2, 8-12.
18. C.-C. Chang and S.-D. Huang, Anal. Chim. Acta, 2010, 662, 1, 39-43.
19. J. Regueiro, M. Llompart, G.-J. Carmen, et al., J. Chromatogr. A, 2008, 1190, 1-2, 27-38.
20. A.R. Fontana, J.C. Altamirano, TALANTA, 2010, 81, 1536-1541.
21. A.R. Fontana, S.H. Patil, K. Banerjee, et al., J. Agric. Food Chem., 2010, 58, 4576-4581.
22. B.-B. Elias, J.P. Lamas, S.-P. Lucia, et al., Chemosphere, 2010, 81, 1378-1385.
23. C. Cortada, L. Vidal, A. Canals, J. Chromatogr. A, 2011, 1218, 17-22.
24. S. Ozcan, A. Tor, M.E. Aydin, WATER RESEARCH, 2009, 43, 4269-4277.
25. Y.-S. Su, J.-F. Jen, J. Chromatogr. A, 2010, 1217, 5043-5049.
26. J. Regueiro, M. Llompart, E. Psillakis, et al., TALANTA, 2009, 79, 1387-1397.
27. A.R. Fontana, R.G. Wuilloud, L.D. Martinez, J. Chromatogr. A, 2009, 1216, 147-153.
28. S. Ozcan, A. Tor, M.E. Aydin, Anal. Chim. Acta, 2009, 647, 182-188.
29. A. Saleh, Y. Yamini, M. Faraji, et al., J. Chromatogr. A, 2009, 1216, 6673-6679.
30. S. Ozcan, A. Tor, M.E. Aydin, Anal. Chim. Acta, 2010, 665, 193-199.
31. Q.Z. Zhou, X.Z. Zhang, J.P. Xiao, J. Chromatogr. A, 2009, 1216, 4361-4365.
32. K.-J. Huang, C.-X. Jin, S.-L. Song, et al., J. Chromatogr. B, 2011, 879, 579-584.
33. S.-L. Lin, M.-R. Fuh, J. Chromatogr. A, 2010, 1217, 3467-3472.
34. J.F. Wu, B.G. Xiang, J. Xia, Microchim Acta, 2009, 166, 157-162.
35. Q.H. Wu, Z. Li, C.X. Wu, et al., Microchim Acta, 2010, 170, 59-65.
36. Y. Wang, J.Y. You, C.L. Bao, et al., Chin. J. Chem., 2010, 28, 785-790.
37. Q.H. Wu, Q.Y. Chang, C.X. Wu, J. Chromatogr. A, 2010, 1217, 1773-1778.
38. C.X. Wu, N. Liu, Q.H. Wu, Anal. Chim. Acta, 2010, 679, 56-62.
39. J. Cheng, G. Matsadiq, L. Liu, et al., J. Chromatogr. A, 2011, 1218, 2476-2482.
40. S.Q. Li, S. Cai, W. Hu, et al., Spectrochim. Acta Part B, 2009, 64, 666-671.
41. J.J. Ma, X. Du, J.W. Zhang, et al., TALANTA, 2009, 80, 980-984.
42. H. Chen, P. Du, J. Chen, et al., TALANTA, 2010, 81, 176-179.
43. S.Z. Mohammadi, D. Afzali, Y.M. Baghelani, et al., J. Braz. Chem. Soc., 2011, 22, 1, 104-111.
44. S.Z. Mohammadi, D. Afzall, Y.M. Baghelani, Anal. Sci., 2010, 26, 973-977.
45. M. Mohamadi, A. Mostafavi, TALANTA, 2010, 81, 1-2, 309-313.
46. Q.Y. Chang, J.W. Zhang, X. Du, et al., Front. Environ. Sci. Engin. China, 2010, 4, 2, 187-195.
47. M. Zanjani, Y. Yamini, S. Shariati, Anal. Chim. Acta, 2007, 585, 2, 286-293.
48. B. Sana, A. Yaghoub, A. Mansoor, et al., J. Chromatogr. A, 2007, 1172, 105-112.
49. W.-C. Tsai, S.-D. Huang, J. Chromatogr. A, 2009, 1216, 45, 7846-7850.
50. E. Yizntzi, E. Psillakis, K. Tyrovola, et al., TALANTA, 2010, 80, 5, 2057-2062.
51. EPA Method 604 - Phenols
52. EPA Method 625 – Base/Neutrals and Acids
53. 中華民國行政院環境保護署環境檢驗所,「水中酚類化合物檢測方法-氣相層析儀/火焰離子化偵測器、電子捕捉偵測器法(NIEA W522.50T)」,84年。
54. K.D. Buchholz and J. Pawliszyn, Environ. Sci. Technol. 1993, 27, 2844-2848.
55. K.D. Buchholz and J. Pawliszyn, Anal. Chem., 1994, 66, 160-167.
56. A. Pen~alver, E. Pocurull, F. Borrull, et al., J. Chromatogr. A, 2002, 953, 79-87.
57. M. Saraji and M. Bakhshi, J. Chromatogr. A, 2005, 1098, 30-36.
58. C.-Y. Lin and S.-D. Huang, Journal of the Chinese Chemical Society, 2008, 55, 740-749.
59. H.-Y. Huang and S.-D. Huang, “Determination of nitrophenol、chlorophenol and nathphol in urine samples by three phase solvent bar microextraction coupled with ion pair chromatography”, 2008.
60. M. Saraji and M. Marzban, Anal. Bioanal. Chem., 2010, 396, 2685-2693.