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完整後設資料紀錄
DC 欄位 | 值 | 語言 |
---|---|---|
dc.contributor.advisor | 李心予(Hsinyu Lee) | |
dc.contributor.author | Ming-Cheng Tsai | en |
dc.contributor.author | 蔡明政 | zh_TW |
dc.date.accessioned | 2021-06-08T03:38:56Z | - |
dc.date.copyright | 2019-07-24 | |
dc.date.issued | 2019 | |
dc.date.submitted | 2019-07-16 | |
dc.identifier.citation | 參考文獻
中文文獻 1. 中華民國重大環境事件彙編(2011.11) 2. 蔡岡廷&王建楠(2007)戴奧辛污染與健康危害. 中華職業醫學雜誌, 14(4), 261-268 3. 簡汝珊(2017)我國環境法規對戴奧辛管制之研究. 中興大學法律學系科技法律碩士班學位論文, 1-155 4. 徐慈鴻,李貽華&高清文(2008)戴奧辛生物快速篩檢法在農, 畜及水產品的應用. 藥毒所專題報導,(91), 1-17 5. 劉學晏(2015)戴奧辛類化合物對土番鴨生長性能、血液生化、肝臟戴奧辛濃度與肝臟基因表現之影響.屏東科技大學動物科學與畜產系碩士班學位論文 6. 竹苗地區食品中戴奧辛之含量調查分析, 2017 7. 中部地區食品中戴奧辛之背景值調查及國人飲食暴露之風險評估, 2016 8. 監察委員新聞稿(2017)戴奧辛雞蛋迄未能查明污染來源及途徑,且事件畜牧場及其飼料管理作為不當,監察院糾正農委會、環保署及彰化縣政府.取自https://www.cy.gov.tw/sp.asp?xdURL=./di/Message/message_1t2.asp&ctNode=2394&mp=1&msg_id=6183 9. 持久性有機污染物斯德哥爾摩公約國家實施計畫(2016年修訂版) 10. 食品含戴奧辛及戴奧辛類多氯聯苯處理規範, 2013 11. 行政院環境保護署巴塞爾公約網站宣導控制有害廢棄物轉移及處理(2019)https://basel.epa.gov.tw/page.aspx?key=main_01_03a 12. 黃翔麟(2010)戴奧辛類物質之生物檢測方法探討.文化大學生物科技系碩士班學位論文 13. 黃怡瑋, et al. '戴奧辛細胞檢測系統之建立.' 生物科學 47.1(2004): 1-18 14. 李以彬,陳元武,李秋范,洪文宗,翁英明(2010)環境污染物快速篩選技術-以土壤中戴奧辛為例,行政院環境保護署環境檢驗所20週年所慶研討會專刊 15. 郭彥祐. '利用新穎生物快速篩檢法檢測台灣土壤與底泥樣本中戴奧辛濃度.' 屏東科技大學環境工程與科學系所學位論文(2011): 1-87 英文文獻 1. Behnisch, P. A., Hosoe, K., Sakai, S. 2001.Bioanalyticalscreening methods for dioxinsand dioxin-like compounds — a review of bioassay/biomarker technology. Environ. Internal. 27:413-439. 2. Bovee, T. F. H., Hoogenboom, L. A. P., Hamers, A. R.M., Tragg, A. W., Zuidema, T., Arts,J.M.M.J.G.,Brouwer, A. and Kuiper H. A.1998. Validation and use of theCALUX-bioassay for the detection of dioxins and coplanar PCBs in bovine milk. Food Add. Contam. 15:863–875. 3. BioDetection System b. v. (BDS). 2004. Training-handouts BDS’ DR CALUX® bioassay. TACTRI. Wufeng Taichung, Taiwan., R. O. C. 4. Bender, S. and Sadik, O. A. 1998. Direct Electrochemical Immunosensor for Polychlorinated Biphenyls. Environ. Sci. Technol. 32: 788-797. 5. Van den Berg, M., Birnbaum, L., Bosveld, A.T., Brunstrom, B., Cook, P., Feeley, M., Giesy, J.P., Hanberg, A., Hasegawa, R., Kennedy, S.W., Kubiak, T., Larsen, J.C., van Leeuwen, R.F.X., Liem, A.K., Nolt, C., Peterson, R.E., Poellinger, L., Safe, S., Schrenk, D., Tillitt, D., Tysklind, M., Younes, M., Waern, F., Zacharewski, T. 1998. Toxic equivalency factors (TEFs) for PCBs, PCDDs, and PCDFs for humans and wildlife. Environ. Health Persp. 106, 775–792. 6. Murata, M., Gonda, H., Yano, K., Kuroki, S., Suzutani, T. and Katayama, Y. 2004. An electrochemical device for the assay of the interaction between a dioxin receptor and its various ligands. Bioorg. Med. Chem. Lett. 14(1): 137-141. 7. Okuyama, M., Kobayashi, N., Takeda, W., Anjo, T., Matsuki, Y., Goto, J., Kambegawa, A. and Hori, S. 2004. Enzyme-linked immunosorbent assay for monitoring toxic dioxin congeners in milk based on a newly generated monoclonal anti-dioxin antibody. Anal. Chem. 76(7): 1948-1956. 8. Van den Berg, M., Birnbaum, L.S., Denison, M., De Vito, M., Farland, W., Feeley, M., Fiedler, H., Hakansson, H., Hanberg, A., Haws, L., Rose, M., Safe, S., Schrenk, D., Tohyama, C., Tritscher, A., Tuomisto, J., Tysklind, M., Walker, N., Peterson, R.E. 2006. The 2005 World Health Organization reevaluation of human and Mammalian toxic equivalency factors for dioxins and dioxin-like compounds. Toxicol. Sci. 93, 223–241. 9. Zajicek, J. L. 1996. Application of enzyme-linked immunosorbent assay(ELISA) for measurement of polychlorinated biphenyls from hydrophobic solutions:extracts of fish and dialysates of semipermeable membrane devices. In:Van Emon JM et al., editors. Environmental innunochemical methods, chapter 26. American Chemical Society. 307-325. 10. Zhou, X. C. and Cao, L. 2001. High sensitivity microgravimetric biosensor for qualitative and quantitative diagnostic detection of polychlorinated dibenzo-p-dioxins. Analyst. 126(1): 71-78. | |
dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/21589 | - |
dc.description.abstract | 中文摘要
戴奧辛被稱為世紀之毒並且有非常嚴重污染性,依斯德哥爾摩公約被列為持久性有機污染物(Pops),且會造成環境污染及造成人體的傷害,還會引發特有的皮膚病氯痤瘡,1997年國際癌症研究中心將其歸類為人類確定致癌物,使人們聞之色變,其在動物體中形成生物累積透過食物鏈進而影響人體,我國政府應明定嚴格法令來加以規範。 國際間法規有巴塞爾公約及斯德哥爾摩兩大公約對戴奧辛進行把關,前者限制戴奧辛廢棄物移動管制,後者則限制戴奧辛廢棄物排放之規範。以兩大公約中提出戴奧辛類化合物排放減量及回收處理方法之相關法令作為我國法令未來修定方向。本文以我國現行法令和兩大公約作為比對,找出最適合我國對戴奧辛類化合物管制最佳方案,同時對我國目前戴奧辛類化合物檢驗方法進行深入研討,提出更有效率檢驗方式,供環保署稽查管理人員使用,藉此降低環境及食品被污染的機會,找出對抗戴奧辛污染的新思維。 研究後發現我國環保法規對戴奧辛之規範屬於十分充足,但是在食品安全控管部分仍有不足之處,應盡可能地以消除戴奧辛為目的。故我國法規仍有相當大的進步空間,因此建議修法的方向包括增修飼料中含有戴奧辛含量之規定並詳加規範及主管機關對產牧場及食品廠加強抽驗等,未來將對戴奧辛類化合物驗測著重在畜產動物本身,作為第一線檢查,並將生物檢測法納入戴奧辛快速抽驗的查核項目,以提高檢驗之效能。 | zh_TW |
dc.description.abstract | ABSTRACT
Dioxin is considered the poison of the century and is a dangerous pollutant, listed as one of the persistent organic pollutants in the Stockholm Convention. Dioxin not only pollutes the environment but also cause bodily harm to the human body, the exposure to which would result in dermatological pathologies such as chloracne. In 1997 the International Agency for Research on Cancer classified dioxin as a known human carcinogen, striking terror in the general public. Since dioxin accumulates in the human food chain and impacts human health through the intake of animal foodstuff, our government ought to set clear regulations to control the negative impact of the substance. In international law, the Brussels Convention and the Stockholm Convention have regulations targeting dioxin, the former restricting the moving of dioxin-contaminated waste, while the latter limiting the disposal of dioxin-contaminated waste. The relevant clauses in the two conventions concerning dioxin ought to serve as guidance for the future amendment goals of our laws and regulations. This paper compares the current laws in our country with the two conventions, and identify the optimal course of regulating dioxin compounds from our country's perspective. Also, this paper conducts an in-depth discussion on the compound testing of dioxin to propose a more efficient way of testing that could be used by the inspection and management personnel from the Environmental Protection Agency, so to lower the chances of environmental and food source contamination and find new approaches against dioxin pollution. The research finds that our country's environmental regulation of dioxin is quite adequate, but the safety management of foodstuff remains inadequate, and ought to be eliminated as much as possible. Our country's laws have much to improve, and the recommended course of action includes the addition of regulating the dioxin content in livestock feed and enhanced random testing of farms and food manufacturing plants. Future improvement of dioxin as a chemical compound would focus on the livestock as the first line of inspection. Bioassay ought to be incorporated into the rapid testing inspection program to improve testing efficiency. | en |
dc.description.provenance | Made available in DSpace on 2021-06-08T03:38:56Z (GMT). No. of bitstreams: 1 ntu-108-P06e43008-1.pdf: 4677982 bytes, checksum: 95b89e22752bdffa2b8a7f4e6ccf03aa (MD5) Previous issue date: 2019 | en |
dc.description.tableofcontents | 第一章 緒論1
第一節:研究動機1 第二節:研究方法1 第三節:研究範圍2 第四節:章節架構2 第二章:戴奧辛的簡介3 第一節:戴奧辛定義3 第二節:戴奧辛之來源4 第三節:戴奧辛之特性5 第四節:戴奧辛之生物毒性5 第五節:戴奧辛之毒性當量子及毒性當量濃度5 第三章:國際事件8 第一節:賽維索事件8 第二節:巴西柑橘醬事件8 第三節:比利時污染事件8 第四節:荷蘭污染事件9 第五節:臺灣米糠油事件9 第六節:臺灣雞蛋污染事件9 第四章:國際公約對戴奧辛之相關規定10 第一節:斯德哥爾摩公約10 第二節:巴塞爾公約12 第三節:我國對戴奧辛之規範12 第四節:我國就斯斯德哥爾摩公約之因應13 第五節:我國就巴塞爾公約之因應23 第五章:戴奧辛檢定方法24 第一節:化學分析法24 第二節:CALUX分析法24 第三節:ELISA分析法24 第四節:戴奧辛檢測方法之比較25 第六章:結論27 第一節:結論27 第二節:討論27 第三節:未來展望28 參考文獻31 | |
dc.language.iso | zh-TW | |
dc.title | 我國法律及國際法對戴奧辛管制之研究 | zh_TW |
dc.title | Discussion of the control and Inspection Analysis of Dioxin in Taiwan | en |
dc.type | Thesis | |
dc.date.schoolyear | 107-2 | |
dc.description.degree | 碩士 | |
dc.contributor.oralexamcommittee | 何佳安,黃恆獎 | |
dc.subject.keyword | 戴奧辛,持久性有機污染物, | zh_TW |
dc.subject.keyword | Dioxin,Pops, | en |
dc.relation.page | 55 | |
dc.identifier.doi | 10.6342/NTU201901497 | |
dc.rights.note | 未授權 | |
dc.date.accepted | 2019-07-16 | |
dc.contributor.author-college | 進修推廣學院 | zh_TW |
dc.contributor.author-dept | 生物科技管理碩士在職學位學程 | zh_TW |
顯示於系所單位: | 生物科技管理碩士在職學位學程 |
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