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博碩士論文 etd-0210106-110057 詳細資訊
Title page for etd-0210106-110057
論文名稱
Title
台灣高屏地區港口底質中有機錫化合物分布之研究
THE DISTRIBUTION OF ORGANOTIN COMPOUNDS IN SEDIMENTS FROM THE PORTS IN KAOHSIUNG AND PINGTUNG,TAIWAN.
系所名稱
Department
畢業學年期
Year, semester
語文別
Language
學位類別
Degree
頁數
Number of pages
140
研究生
Author
指導教授
Advisor
召集委員
Convenor
口試委員
Advisory Committee
口試日期
Date of Exam
2005-01-12
繳交日期
Date of Submission
2006-02-10
關鍵字
Keywords
有機錫、有機質
TOC, TBT, DBT, MBT, TPT, DPT, MPT
統計
Statistics
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中文摘要
本研究係採集高屏地區共八個大小不同港口(高雄港、東港、大鵬灣、枋寮、海口港、楓港、山海港及後璧湖),共計22個採樣點之表層底質,進行有機錫、有機碳及有機氮的分析。
實驗結果發現,各採樣點的有機錫含量與粒徑大小呈現相關性。三丁基錫濃度介於0.041~4.843 ppm(as Sn),二丁基錫濃度在0.001~4.626 ppm(as Sn)之間,而單丁基錫的濃度在0.001~4.908 ppm(as Sn)間。在苯基錫化合物部分,三苯基錫濃度介於0~0.298 ppm(as Sn),二苯基錫濃度在0~0.216 ppm(as Sn)之間,單苯基錫介於0~0.143(as Sn) ppm。總合的有機錫含量在高雄港中的前鎮漁港偵測到最高的丁基錫含量。最高的苯基錫濃度,出現在高雄港中的愛河河口採樣點。有機質的部分,最大比例的有機碳、氮均表現在高雄港的愛河河口採樣點,分別為3.75%及0.80%。而各採樣地區的有機碳、氮值,呈現0.757的正相關性。而表層底質的有機錫化合物與有機質一樣表現了正相關性。
雖然本研究之各港口沉積物中平均TBT含量和國外文獻相比並非最高的,但高雄港與東港漁港的TBT含量已超過對二枚貝及端角類之10-dLC50(分別為2.6 mg/kg及2.1 mg/kg),因此其沉積物中有機錫之污染算是相當嚴重。其餘的港口也有高達0.24 ppm以上的含量,確實有必要加以監測。TPT含量在ND-0.35 ppm 間,最高值出現在高雄港(0.35 ppm),在1 ppm內。與國內外文獻比較結果,並無特殊的高含量顯示。
在本研究中,有機錫化合物的分佈是高雄港地區為最高,丁基錫化合物與船隻數量呈現高度相關性。船隻數量及人為活動量是高雄港與其他港口最大的差異,高雄港幅地廣闊、船隻數量多且人為活動量龐大,南邊的港口面積及港口船隻數量相對減小,這與有機錫化合物的分佈呈現了一致性。
Abstract
The upper layer sediments were collected from eight ports (22 sampling points) of Kaohsiung and Pingtung in southwest Taiwan. The organotin contents in sediment are all related to the grain size. The concentration of tributyltin (TBT) is between 0.041~4.843 ppm (as Sn) , the concentration of dibutyltin (DBT) is between 0.001~4.626 ppm (as Sn), and the concentration of monobutyltin (MBT) is between 0.001~4.908 ppm (as Sn). The Chien-chen harbor presents the hightest butyltins concentrations, and the TBT contents is much over 10-d LC50 to bivalve (2.6 ppm) and amphipoda (2.1 ppm).
The concentrations of triphenyltin (TPT), diphenyltin (DPT) and monophenyltin (MPT) are between ND~0.298 ppm (as Sn), ND~0.216 ppm (as Sn) and ND~0.143 ppm (as Sn) individually. The highest phenyltin concentrations are shown in the outfall of Love River (the inflow of Love River in Kaohsiung Port). The organic carbon and nitrogen contents show significant the positive correlation (R2=0.757), and the organotin concentrations also show a positive correlation with the contents organic carbon.All the butyltins show a positive correlation with the quantities of boats.
According to this study, the port of Kaohsiung presents the most serious content of butyltins and phenyltins in sediment. All the other ports also present a TBT content higher than 0.24 ppm. Therefore, it is recommended to monitor the organotin contents in the ports of this studying area.
目次 Table of Contents
謝誌..........................................................I
中文摘要......................................................II
英文摘要......................................................IV
目錄..........................................................VI
表目錄.......................................................VIII
圖目錄........................................................IX
壹 前言 ................................................. 1
一、有機錫化合物之理化特性................................ 1
二、有機錫化合物之用途.................................... 1
1. 有機錫化合物之主要用途................................1
2. 台灣地區之使用與運作情形..............................2
三、有機錫化合物進入環境之途徑............................ 3
四、有機錫化合物於環境中之流布(降解、生物累積及沉降).....5
1. 降解..................................................5
2. 生物累積..............................................7
3. 沉降..................................................8
五、有機錫化合物之毒性.....................................9
1. 有機錫的生物毒性......................................9
2. 有機錫對人類的毒性...................................11
3. 台灣地區有機錫毒性之研究.............................11
4. 世界各國對有機錫化合物的管制.........................12
六、研究目的..............................................13

貳 材料與方法............................................16
一、藥品及試劑水..........................................16
二、試劑配製..............................................17
三、儀器與器材............................................18
四、採樣方法..............................................19
五、分析方法..............................................20
1. 沉積物粒徑分析.......................................20
2. 沉積物中有機錫之分析方法.............................20
3. 沉積物中總有機碳之分析...............................21
4. 沉積物中總有機氮之分析...............................22
六、分析之品管部分........................................23
1. 格林鈉試劑中有機錫化合物之含量.......................23
2. 沉積物有機錫化合物分析方法之檢量線...................23
3. 沉積物有機錫化合物分析方法之偵測極...................24
4. 沉積物有機錫化合物分析方法之回收率...................24
5. 沉積物中總有機碳、氮分析.............................24

參 結果..................................................25
一、有機錫分析............................................25
1. 實驗方法部分.........................................25
2. 品管部份.............................................26
二、沉積物之粒徑分佈與有機錫之含量分析....................28
1. 各測站之粒徑分佈與其組成百分比.......................28
2. 不同粒徑之有機錫含量.................................29
3. 各粒徑所含之有機錫化合物比例.........................30
三、沉積物之有機質含量....................................32
1. 不同粒徑之有機碳、氮含量.............................32
2. 各測站之有機碳、氮含量總量...........................32
四、各測站底質各有機錫分佈................................33
五、各採樣點之有機錫化合物百分比例........................34

肆 討論..................................................36
一、樣品粒徑實驗部份......................................36
1. 粒徑分析...............................................36
2. 各粒徑之有機錫及有機質含量.............................37
二、有機質含量............................................37
三、有機錫含量............................................38
四、有機錫化合物及有機質之關係............................39
五、單位有機碳的有機錫化合物含量..........................41
六、船隻數量與有機錫化合物之關係..........................42
七、國外相關文獻之比較....................................43

伍 結論..................................................46
陸 參考文獻..............................................47
柒 附錄..................................................116
參考文獻 References
1 World Health Organization,1990.Tributyltin Compounds,United Nations Environment Programe-World Health Organization,Environmental Health Cretaria 116, World Health Organization,Geneva,Switzerland.

2 行政院環保署,毒性化學物質毒理資料庫。http://flora2.epa.gov.tw/prog/database.asp

3 C. J. Evans and S. Karpel, 1985, Organotin Compounds in Modern Technology, Elsevier Science Publisher, Amsterdam.

4 行政院環保署,毒性化學物質資料。www.epa.gov.tw。

5 M. Hoch, 2001. Organotin Compounds in The Environment-An Overview, App. Geochem., 16, 719-743.

6 A. Sadiki, D.T. Williams, R. Carrier and B. Thomas., 1996, Pilot Study on Contamination of Drinking Water by Organotin Compounds from PVC Material, Chemosphere, 32, 2389-2398.

7 C. J. Evans and S. Karpel, 1985, Organotin Compounds in Modern Technology, Elsevier Science Publisher, Amsterdam.


8 R. D. Barnes and A.T. Bull, 1963, Studies on The Persistence of The Organotin Fungicide Fentin Acetate(Triphenyltin Acetate)in The Soil and on Surfaces Exposed to Light, Pestic. Sci., 4, 305-317.

9 S. Reader and E. Pelletier, 1992, Biosorption and Degradation of Butyltin Compounds by The Marine Diatom Skeletinema Costatum and The Associated Bacterial Community at Low Temperature., Bull. Environ. Contam. Toxic., 48,599-607.

10 R. J. Maguire, J. H. Carey and E. J. Hale, 1983, Degradation of The Tri-normal-butyltin Species in Water, J. Agric. Food Chem., 31, 1060-1065

11 R. B. Laughlin, 1986, Bioaccumulation of Tributyltin: The Link between Environment and Organism, Oceans, 1206-1209.

12 R. B. Laughlin, 1996, Bioaccumulation of TBT by aquatic organisms.In:M. A. Champ, P.F.(Eds.)Seligman, Organotin-Environmental fate and effects, Capman & Hall, London, 331-357.

13 K. Kannan, S. Tanabe, H. Iwata and R. Tatsukawa, 1995, Butyltins in Muscle and Liver of Fish collected from certain Asian and Oceanian countries, Environ. Pollut., 90, 279-290.
14 K. Kannan and J. Falandysz, 1997, Butyltin Residues in Sediment, Fish, Fish-eating birds, Harbour Porpoise and Human Tissues from The Polish Coast of the Baltic Sea, Mar. Pollut. Bull., 34, 203-207.

15 K. Kannan and J. Falandysz, 1999, Response to The Comment on: Butyltin Residues in Sediment, Fish, Fish-eating Birds, Harbour Porpoise and Human Tissues from The Polish Coast of The Baltic Sea, Mar. Pollut. Bull., 38, 61-63.

16 A. O. Valkirs, P. F. Seligman, P. M. Stang and V. Homer, 1986, Measurement of Butyltin Compounds in San Diego Bay, Mar. Pollut. Bull., 17, 319-324.

17 劉莉蓮,1997。在有機錫污染下淡水田螺和椎時螺基因型及外表型反應之比較。行政院國家科學委員會專題研究計畫成果報告。

18 G. E. Walsh, L. L. McLaughlan, M. K. Louie and C. H. Deans, 1985, Effect of Organotins on Growth and Survival of Two Marine Diatoms, Skeletonema costatum and Thalassira pseudonana, Chemosphere, 14, 383-392.

19 A.W. Jarvinen, D.K. Tanner, E.R. Kline and M.L. Knuth, 1988, Acute and Chronic Toxicity of Triphenyltin Hydroxide to Fathead Minnow (Pimephales promelas) Following Brief or Continuous Exposure, Environ. Pollut., 52, 289-301.

20 R. J. Huggett, P. F. Seligman and A. O. Valkirs, 1992, The Marine Biocide Tributyltin-Assessing and Managing the Environmental Risks, Environ. Sci. Tech., 26, 232-237.

21 G. W. Byran and P.E. Gibbs, 1988, A Comparison of The Effectiveness of Tri-n-butyltin Chlorides Compounds in Promoting the Development of Imposex in The Dogwhelk, Nucella lapillus, J. Mar. Biol. Ass., 68, 733-733.

22 M. M. Whalen, L. Walker and B. G. Loganathan, 2002, Interleukis 2 and 12 Produce Significant Recovery of Cyotoxic Function in Dibutyltin-exposure Human Natural Killer Cells, Environ. Res. Sec. A, 88, 103-115.

23 M. M. Whalen, B. G. Loganathan and K. Kannan, 1999, Immunotoxivity of Environmentally Relevant Concentration of Butyltin on Human Nayural Killer Cells in Vitro, Environ. Res., 81, 108-116.

24 Y. Yamabe and A. Hoshino, 2000, Enhancement of Angrogen-Dependent Transcription and Cell proliferation by tributyltin and triphenyltin in human prostate cancer cell. Toxic. App. Pharm., 169, 177-184.

25 J. J. Chen, Y. C. Lou and C. W. Wang, 1992, Determination of Tributyltin in Sea Water by Hydride Generation-Atomic Absorption Spectrometry, J. Chin. Chem. Soc., 39, 461-464.

26 L. L. Liu, S. J. Chen, W. Y. Peng and J. J. Hung, 1997, Organotin Concentrations in 3 Intertidal Neogastropods from the Coastal Waters of Taiwan, Environ. Pollut., 98, 113-118.

27 彭威陽,1994,有機錫對軟體動物的影響,國立中山大學碩士論文。

28 李東益,1996,台灣西部沿岸生物體有機錫分析,國立台灣大學碩士論文。

29 T. C. Hung, T. Y. Lee and T. F. Liao, 1998, Determination of Butyltins and Phenyltins in Oysters and Fishes from Taiwan Coastal Waters, Environ. Pollut., 102, 197-203.

30 T. C. Hung, W. K. Hsu, P. J. Mang and A. Chuang, 2001, Organotins and Imposer in the Rock Shell, Thais-Clavigera, from Oyster Mariculture Areas in Taiwan, Environ. Pollut., 112, 145-152

31 陳淑貞,1997,熱帶斑海豚與小虎鯨體內有機錫之累積之初步研究,國立中山大學碩士論文。

32 張貴能,2004,高雄港區有機錫分佈及其污染史之研究,國立中山大學碩士論文。

33 C. Montigny, 1998, Matrix Effects and Sensitivity of The Detector in The Determination of Butyltin and Phenyltins by Gas Chromatography-flame Photometric Detection, J. Chromato. A, 819, 221-224.

34 M. Ceulemans and F. C. Adams, 1995, Evaluation of Sample Preparation Methods for Organotin Speciation Analysis in Sediments – Focus on Monobutyltin Extraction, Analy. Chim. Acta, 317, 161-170.

35 C. K. Wentworth, 1922. A scale of grade and class terms for clastic sediments. J. Geology, 30, 377-392..

36 P. Meador, A. Krone, D. Wayne and U. Varanasi, 1997, Toxicity of Sediment-associated Tributyltin to Infaunal Invertebrates: Species Comparison and The Role of Organo Carbon, Mar. Environ. Res., 43, 219-241.

37 J. I. Hedges, R. G. Keil and R. Benner, 1997. What happens to terrestrial organic matter in the ocean? , Org. Geochem., 27, 195-212.

38 紀則賢,2004,高雄愛河水域有機錫分佈之研究,國立中山大學碩士論文。

39 C. G. Arnold, A. Ciani, S. R. Muller, A. Amirbahman and R. P. Schwarzenbach, 1998, Association of triorganotin compound with dissolved humic acids, Environ. Sci. Tech., 32, 2976-2983.

40 C. G. Arnold, A. Ciani, S. R. Muller, A. Amirbahman and R. P. Schwarzenbach, 1998, Association of Triorganotin
Compounds with Dissolved Humic Acids, Environ. Sci. Tech., 32, 2976-2983.

41 A. Weidenhaupt, C. Arnold , S. R. Muller, S. B. Haderlein and R. P. Schwarzenbach, 1997, Sorption of Organotin Biocides to Mineral Surfaces, Environ. Sci. Tech., 31, 2603-2609.

42 J. Strand, J. A. Jacobsen, B. Pedersen, A. Granmo, 2003, Butyltin Compounds in Sediment and Molluscs from The Shipping Strait Between Denmark and Sweden, Environ. Pollut., 124, 7–15.

43 I.Arambarri, R. Garcia and E. Millan, 2003, Assessment of Tin and Butyltin Species in Estuarine Superficial Sediments from Gipuzkoa Spain, Chemosphere, 51, 643–649.

44 C. Cato, T. H.-Tjabbes, J.-W. Wegener, B. V. Hattum, J. F. Kemp, E. T. Hallers, T. J. Reitsema and J. P. Boon, 2003, Imposex and Organotin Concentrations in Buccinum Undatum and Neptunea Antiqua from The North Sea: Relationship to Shipping Density and Hydrographical Conditions, Mar. Environ. Res., 55, 203–233.

45 S. Chiavarini, P. Massanisso, P. Nicolai, C. Nobili and R. Morabito, 2003, Butyltins Concentration Levels and Imposex Occurrence in Snails from The Sicilian Coasts (Italy), Chemosphere, 50, 311–319.

46 S. Biselli , K. Bester , H. Houhnerfuss and K. Fent, 2000. Concentrations of The Antifouling Compound Irgarol 1051 and of Organotins in Water and Sediments of German North and Baltic Sea Marinas, Mar. Pollut. Bull., 40, 3, 233-243.

47 S. Díez, M. Ábalos and J. M. Bayona, 2002. Organotin Contamination in Sediment from The Western Mediterranean Enclosures Following 10 years of TBT regulation, Wat. Res., 36, 905-918.

48 S.J. de Mora, C. Stewart and D. Philips, 1995, Sources and Rate of Degradation of Tri(n-butyl)tin in Marine Sediments Near Auckland New Zealand, Mar. Pollut. Bull., 30, 50-57.

49 H. Harino, M. Fukushima and S. Kawai, 1999, Temporal Trends of Organotin Compounds in The Aquatic Environment of The Port of Osaka Japan, Environ. Pollut., 105, 1-7.

50 M.M.C. Ko, G.C. Bradley, A.H. Neller and M.J. Broom, 1995, Tributyltin Contamination of Marinas Sediment of Hong Kong, Mar. Pollut. Bull., 31, 249-253.
51 L. Regoli , H. M. Chan, Y. de Lafontaine and I. Mikaelian, 2001, Organotins in Zebra Mussels (Dreissena polymorpha) and Sediments of The Quebec City Harbour Area of The St. Lawrence River, Aqua. Toxic., 53, 115–126.

52 D.S. Page, C.C. Ozbal and M.E. Lanphear, 1996, Concentration of Butyltin Species in Sediments Associated with Shipyard Activity, Environ. Pollut., 91, 237-243

53 D. Amourux, E. Tessier and D. Ofx, 2000, Volatilization of Organotin Compounds from Estuarine and Coastal Environments, Environ. Sci. Tech., 34, 988-995.

54 行政院環保署,毒性化學物質環境流布調查分析-期末報告 EPA-90-U1J1-02-104.

55 行政院環保署,毒性化學物質環境流布調查分析-期末報告EPA-91-U1J1-02-111.

56 王甜,2003,近海、野生及養殖魚種有機錫污染調查及一般民眾食入暴露風險評估,國立成功大學碩士論文。
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