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  1. NTU Theses and Dissertations Repository
  2. 公共衛生學院
  3. 公共衛生碩士學位學程
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/99836
完整後設資料紀錄
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dc.contributor.advisor林亮瑜zh_TW
dc.contributor.advisorLiang-Yu Linen
dc.contributor.author許喬青zh_TW
dc.contributor.authorChiao-Ching Hsuen
dc.date.accessioned2025-09-18T16:09:13Z-
dc.date.available2025-09-19-
dc.date.copyright2025-09-18-
dc.date.issued2025-
dc.date.submitted2025-08-05-
dc.identifier.citation1. 臺灣大學 2024 統計年報, in 臺大統計年報. 2025.
2. Top universities pursuing sustainable development goals in 2024. Impact Rankings 2024; Available from: https://www.timeshighereducation.com/impactrankings?page=2#.
3. QS World University Rankings: Sustainability 2025. QS World University Rankings 2024; Available from: https://www.topuniversities.com/sustainability-rankings?page=2.
4. Human Influence on the Climate System, in Climate Change 2021 – The Physical Science Basis: Working Group I Contribution to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, C. Intergovernmental Panel on Climate, Editor. 2023, Cambridge University Press: Cambridge. p. 423-552.
5. Climate change. 2023; Available from: https://www.who.int/news-room/fact-sheets/detail/climate-change-and-health.
6. 國立臺灣大學永續辦公室. 碳中和. 2023; Available from: https://sustainable.ntu.edu.tw/environment/carbon.
7. P.R. Shukla, J.S., E. Calvo Buendia, V. Masson-Delmotte, H.-O. Pörtner, D. C. Roberts, P. Zhai, R. Slade, S. Connors, R. van Diemen, M. Ferrat, E. Haughey, S. Luz, S. Neogi, M. Pathak, J. Petzold, J. Portugal Pereira, P. Vyas, E. Huntley, K. Kissick, M. Belkacemi, J. Malley, (eds.), 2019: Annex II: Acronyms. In: Climate Change and Land: an IPCC special report on climate change, desertification, land degradation, sustainable land management, food security, and greenhouse gas fluxes in terrestrial ecosystems. 2019, IPCC.
8. Gulev, S., et al., Climate change 2021: The physical science basis. Contribution of working group I to the sixth assessment report of the intergovernmental panel on climate change. Chap. Changing state of the climate system, 2021.
9. Framing, Context, and Methods, in Climate Change 2021 – The Physical Science Basis: Working Group I Contribution to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change, C. Intergovernmental Panel on Climate, Editor. 2023, Cambridge University Press: Cambridge. p. 147-286.
10. Lindsey, R. and L. Dahlman, Climate change: Global temperature. Climate. gov, 2020. 16.
11. McMichael, A.J., R.E. Woodruff, and S. Hales, Climate change and human health: present and future risks. The lancet, 2006. 367(9513): p. 859-869.
12. Romanello, M., et al., The 2024 report of the <em>Lancet</em> Countdown on health and climate change: facing record-breaking threats from delayed action. The Lancet, 2024. 404(10465): p. 1847-1896.
13. 童慶斌、朱容練、陳永明、陳韻如、郭士筠、劉俊志、李培芬、林幸助、李明旭、盧虎生、蘇慧貞、張靜貞、詹士樑、許泰文、李河清, 臺灣氣候變遷科學報告2017 第二冊 衝擊與調適面向 (完整版). 2017: 新北市.
14. Vicedo-Cabrera, A.M., et al., The burden of heat-related mortality attributable to recent human-induced climate change. Nat Clim Chang, 2021. 11(6): p. 492-500.
15. 蔡坤憲, 黃旌集, and 吳文哲, 氣候變遷對蟲媒及蟲媒傳染病的影響. 台灣醫學, 2012. 16(5): p. 479-488.
16. Mora, C., et al., Over half of known human pathogenic diseases can be aggravated by climate change. Nature climate change, 2022. 12(9): p. 869-875.
17. 許晃雄、王嘉琪、陳正達、李明旭、詹士樑, 國家氣候變遷科學報告2024:現象、衝擊與調適 [許晃雄、李明旭 主編]. 2024.
18. Liu, J., et al., Heat exposure and cardiovascular health outcomes: a systematic review and meta-analysis. Lancet Planet Health, 2022. 6(6): p. e484-e495.
19. Sun, Z., et al., Effects of ambient temperature on myocardial infarction: A systematic review and meta-analysis. Environ Pollut, 2018. 241: p. 1106-1114.
20. Liu, J., et al., Hot weather as a risk factor for kidney disease outcomes: A systematic review and meta-analysis of epidemiological evidence. Sci Total Environ, 2021. 801: p. 149806.
21. Liu, J., et al., Is there an association between hot weather and poor mental health outcomes? A systematic review and meta-analysis. Environ Int, 2021. 153: p. 106533.
22. Kim, Y., et al., Suicide and Ambient Temperature: A Multi-Country Multi-City Study. Environ Health Perspect, 2019. 127(11): p. 117007.
23. Ruszkiewicz, J.A., et al., Brain diseases in changing climate. Environmental Research, 2019. 177: p. 108637.
24. Bell, M.L., A. Gasparrini, and G.C. Benjamin, Climate Change, Extreme Heat, and Health. New England Journal of Medicine, 2024. 390(19): p. 1793-1801.
25. How Climate Change Is Causing World Hunge. 2024; Available from: https://www.wfpusa.org/articles/how-climate-change-is-causing-world-hunger/.
26. Jafino, B.A., et al., Revised estimates of the impact of climate change on extreme poverty by 2030. 2020: The World Bank.
27. 交通部中央氣象署, 全球平均溫度長期趨勢監測報告. 2023, 交通部中央氣象署.
28. 2024臺灣氣候變遷分析系列報告:暖化趨勢下的臺灣極端高溫與衝擊, 陳昭安、劉曉薇、李欣輯、紀佳法、陳永明, Editor. 2024, 國家科學及技術委員會 臺灣氣候變遷推估資訊與調適知識平台.
29. Sung, T.I., et al., Relationship between heat index and mortality of 6 major cities in Taiwan. Sci Total Environ, 2013. 442: p. 275-81.
30. 林于凱, et al., 極端氣溫對台灣都會區65歲以上族群心肺疾病死亡之風險趨勢分析. 台灣公共衛生雜誌, 2011. 30(3): p. 277-289.
31. Chung, Y., et al., Temporal Changes in Mortality Related to Extreme Temperatures for 15 Cities in Northeast Asia: Adaptation to Heat and Maladaptation to Cold. American Journal of Epidemiology, 2017. 185(10): p. 907-913.
32. Kono, M., et al., Impact of rapid temperature fluctuations on acute stroke risk: a nationwide case-crossover study from 2001 to 2020. The Lancet Regional Health - Western Pacific, 2025. 57: p. 101546.
33. Dilley, M., Natural Disaster Hotspots: A Global Risk Analysis. 2005: World Bank.
34. 氣候變遷災害風險調適平台. 臺灣歷史極端氣候災害事件. Available from: https://dra.ncdr.nat.gov.tw/Frontend/Disaster/ClimateDetail/BAL0000004.
35. WHO. Dengue and severe dengue. 2024; Available from: https://www.who.int/news-room/fact-sheets/detail/dengue-and-severe-dengue.
36. 黃旌集, 台灣登革熱病媒蚊分布現況及未來推估, in 國家衛生研究院電子報. 2024: 財團法人國家衛生研究院.
37. Wu, P.-C., et al., Higher temperature and urbanization affect the spatial patterns of dengue fever transmission in subtropical Taiwan. Science of The Total Environment, 2009. 407(7): p. 2224-2233.
38. WHO. Food safety. Available from: https://www.who.int/health-topics/food-safety#tab=tab_1.
39. 食品安全辦公室. 食物發霉的隱藏危機-黃麴毒素!. 113; Available from: https://www.ey.gov.tw/ofs/15881103EFD02C4/519580de-82aa-4fbe-b88e-03e84c2544e7.
40. Kos, J., et al., Climate Change—A Global Threat Resulting in Increasing Mycotoxin Occurrence. Foods, 2023. 12(14): p. 2704.
41. Chen, M.-T., et al., Mycotoxin monitoring for commercial foodstuffs in Taiwan. Journal of Food and Drug Analysis, 2016. 24(1): p. 147-156.
42. Climate change impacts on mental health in Europe. 2022, European Climate and Health Observatory.
43. Fernandez, A., et al., Flooding and Mental Health: A Systematic Mapping Review. PLOS ONE, 2015. 10(4): p. e0119929.
44. Thompson, R., et al., Associations between high ambient temperatures and heat waves with mental health outcomes: a systematic review. Public Health, 2018. 161: p. 171-191.
45. Burke, M., et al., Higher temperatures increase suicide rates in the United States and Mexico. Nature climate change, 2018. 8(8): p. 723-729.
46. Hickman, C., We need to (find a way to) talk about … Eco-anxiety. Journal of Social Work Practice, 2020. 34(4): p. 411-424.
47. Ruuhela, R., et al., Climate impact on suicide rates in Finland from 1971 to 2003. Int J Biometeorol, 2009. 53(2): p. 167-75.
48. Hayes, K. and B. Poland Addressing Mental Health in a Changing Climate: Incorporating Mental Health Indicators into Climate Change and Health Vulnerability and Adaptation Assessments. International Journal of Environmental Research and Public Health, 2018. 15, DOI: 10.3390/ijerph15091806.
49. Yang, P., et al., Posttraumatic stress disorder in adolescents after Typhoon Morakot-associated mudslides. Journal of Anxiety Disorders, 2011. 25(3): p. 362-368.
50. Chen, N.-T., P.-H. Lin, and Y.-L.L. Guo, Long-term exposure to high temperature associated with the incidence of major depressive disorder. Science of The Total Environment, 2019. 659: p. 1016-1020.
51. Sung, T.I., et al., Relationship between mean daily ambient temperature range and hospital admissions for schizophrenia: Results from a national cohort of psychiatric inpatients. Sci Total Environ, 2011. 410-411: p. 41-6.
52. 環境部氣候變遷署, 溫室氣體排放趨勢, in 2024年中華民國國家溫室氣體排放清冊報告. 2024, 環境部氣候變遷署. p. 2-1.
53. 經濟部產業發展署, 溫室氣體盤查方法與解析. 2024: 經濟部產業發展署. p. 12.
54. Crippa, M., et al., Insights into the spatial distribution of global, national, and subnational greenhouse gas emissions in the Emissions Database for Global Atmospheric Research (EDGAR v8.0). Earth Syst. Sci. Data, 2024. 16(6): p. 2811-2830.
55. Crippa, M., et al., GHG emissions of all world countries - 2024 report. 2024.
56. Lan, X., P. Tans, and K.W. Thoning, Trends in globally-averaged CO2 determined from NOAA Global Monitoring Laboratory measurements. Version 2024-11.
57. WMO, Greenhouse gas concentrations surge again to new record in 2023. 2024, World Meteorological Organization.
58. WMO, State of the Global Climate 2024 Update for COP29. 2024, World Meteorological Organization (WMO): Geneva. p. 1.
59. Understanding Global Warming Potentials. 2025; Available from: https://www.epa.gov/ghgemissions/understanding-global-warming-potentials.
60. Anthropogenic and Natural Radiative Forcing, in Climate Change 2013 – The Physical Science Basis: Working Group I Contribution to the Fifth Assessment Report of the Intergovernmental Panel on Climate Change, C. Intergovernmental Panel on Climate, Editor. 2014, Cambridge University Press: Cambridge. p. 659-740.
61. Lesley Ott , M.S., Laurence Schuler, Ian Jones, NOAA Annual Greenhouse Gas Index. 2023: Scientific Visualization Studio.
62. NOAA. THE NOAA ANNUAL GREENHOUSE GAS INDEX (AGGI). Annual Greenhouse Gas Index (AGGI) 2024; Available from: https://gml.noaa.gov/aggi/aggi.html.
63. Jackson, R.B., et al., Human activities now fuel two-thirds of global methane emissions. Environmental Research Letters, 2024. 19(10): p. 101002.
64. Tian, H., et al., A comprehensive quantification of global nitrous oxide sources and sinks. Nature, 2020. 586(7828): p. 248-256.
65. UNITED NATIONS FRAMEWORK CONVENTION ON CLIMATE CHANGE in United Nations Conference on Environment and Development. 1992, UNITED NATIONS Rio de Janeiro, Brazil.
66. KYOTO PROTOCOL TO THE UNITED NATIONS FRAMEWORK CONVENTION ON CLIMATE CHANGE, in 1997 United Nations Climate Change Conference. 1998, UNITED NATIONS: Kyoto, Japan.
67. PARIS AGREEMENT, in 2015 United Nations Climate Change Conference. 2015, UNITED NATIONS: Paris, France. p. 3.
68. Glasgow Climate Pact, in 2021 United Nations Climate Change Conference. 2021, UNITED NATIONS: Glasgow, Scotland, United Kingdom.
69. Report of the Conference of the Parties on its twenty-eighth session, held in the United Arab Emirates from 30 November to 13 December 2023, in 2023 United Nations Climate Change Conference. 2023, United Nations: Dubai, United Arab Emirates.
70. New collective quantified goal on climate finance, in 2024 United Nations Climate Change Conference. 2024, UNITED NATIONS: Baku, Azerbaijan.
71. POPLI, N., What Happened the Last Time Trump Withdrew From the Paris Agreement, in TIME. 2025.
72. IEA, et al., GHG emissions of all world countries. 2024: Publications Office of the European Union.
73. 行政院國家發展委員會, 淨零轉型之階段目標及關鍵戰略. 2022, 行政院國家發展委員會. p. 7-8.
74. 立法院, 氣候變遷因應法, 立法院, Editor. 2023.
75. 環境部, 溫室氣體排放量盤查作業指引113年版, 環境部, Editor. 2024. p. IV.
76. 環境部氣候變遷署, 環境部發布4類盤查作業指引,協助擴大盤查對象掌握溫室氣體排放量. 2025, 環境部.
77. Health Care’s Climate Footprint: How the Health Sector Contributes to the Global Climate Crisis and Opportunities for Action. 2019, Health Care Without Harm. p. 24.
78. Karliner, J., et al., Health care’s climate footprint: the health sector contribution and opportunities for action. European Journal of Public Health, 2020. 30(Supplement_5).
79. 環境部資源循環署, 衛環兩部推動「綠色醫療」,醫院高階主管與會領航. 2024, 環境部資源循環署: 環境部.
80. 周麗芳 and 邱泰源, 醫療體系淨零排放的趨勢與策略. 臺灣醫界, 2023. 66(5): p. 12-19.
81. 財團法人台灣綠色生產力基金會, 2024年非生產性質行業能源查核年報, 經濟部能源署, Editor. 2024: 服務業節能網. p. 16-17.
82. 曾以寧, 助醫療院所邁向淨零碳排 衛福部:114年將增預算, in 中央通訊社. 2024: 台北.
83. 國立臺灣大學永續辦公室. 歷年溫室氣體盤查. Available from: https://sustainable.ntu.edu.tw/environment/carbon.
84. 財團法人台灣碳環境永續基金會. GHG Protocol與ISO 14064-1:2018的差異. 碳盤查專區 2024; Available from: https://www.tcsif.org/news_detail/TCSIF-NEW07.
85. Greenhouse gas protocol, in Sector Toolsets for Iron and Steel-Guidance Document. 2011. p. 1-12.
86. ISO 14064-1: 2018 Greenhouse gases—part 1: specification with guidance at the organization level for quantification and reporting of greenhouse gas emissions and removals. 2018; Available from: https://www.iso.org/standard/43279.html.
87. ISO 14068-1: 2023 Climate change management — Transition to net zero Part 1: Carbon neutrality. 2023; Available from: https://www.iso.org/standard/43279.html.
88. 環境部, 溫室氣體排放量盤查登錄及查驗管理辦法, 行政院環境部, Editor. 2023.
89. 環境部, 溫室氣體排放量盤查作業指引(大專校院)114.07版. 2025, 環境部. p. 2-25.
90. 環境部, 溫室氣體排放量盤查作業指引(醫院)114.07版. 2025, 環境部. p. 2-25.
91. Council, N.R., Exposure guidance levels for hydrofluorocarbon-134a, in Toxicity of alternatives to chlorofluorocarbons: HFC-134a and HCFC-123. 1996, National Academies Press (US).
92. 國立臺灣大學永續辦公室, 2024 年溫室氣體盤查結果, in NTU 2024 USR Report. 2025: 國立臺灣大學永續辦公室.
93. Goh, H.Y., W.W.C. Wong, and Y.Y. Ong, A Study To Reduce Chemical Waste Generated in Chemistry Teaching Laboratories. Journal of Chemical Education, 2020. 97(1): p. 87-96.
94. 2023 Carbon Impact of Biotech & Pharma Report. 2023.
95. 部醫綠色醫療啟航,抵達永續首站! 2025; Available from: https://www.mohw.gov.tw/cp-16-82159-1.html.
96. Health Care’s Climate Footprint: How the Health Sector Contributes to the Global Climate Crisis and Opportunities for Action. 2019, Health Care Without Harm. p. 21-22.
97. 經濟部能源署、工業技術研究院. 家庭電器用電家計簿. 節約能源園區 2025; Available from: https://saving.energypark.org.tw/.
98. 黃達海、傅孟臺、蘇娟儀、廖文華、高淑芳、陳永棟, 老舊冷氣機能源效率衰退試驗研究. 2010, 工業技術研究院.
99. 黃達海、傅孟臺、蘇娟儀、高淑芳、林文信, 老舊電冰箱能源效率衰退試驗研究. 2010, 台電節約能源論文發表會.
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dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/99836-
dc.description.abstract研究背景
溫室氣體造成氣候變遷,引發傳染病及非傳染病等健康衝擊;為減緩其影響並達成淨零排放,氣候變遷因應法規定各行業需進行溫室氣體排放盤查,並研擬減量對策。本研究以一教學實驗室為評估邊界,進行溫室氣體盤查作業,鑑別溫室氣體排放來源以及排放量。
研究方法
本研究以國立臺灣大學生理學學生實驗室為評估邊界,依據〈溫室氣體盤查標準ISO 14064-1〉於114年1月至3月間進行盤查。我們根據各排放源之消耗功率與使用時間,搭配環境部公告之排放係數及聯合國政府間氣候變化專門委員會(IPCC)第五次評估報告之全球暖化潛勢(GWP),以「排放係數法」推算溫室氣體排放量,建立溫室氣體排放清冊。我們亦進一步比較實驗室在有無人員使用狀態下,溫室氣體排放源及排放量差異,探討人為活動造成的差異。
研究結果
結果顯示生理學學生實驗室主要溫室氣體排放源為冷媒逸散及電力消耗。在無人使用實驗室下,計有7種溫室氣體排放源,其排放量為355.806公斤CO2e;在有人使用實驗室下,計有12種溫室氣體排放源,其排放量為592.869公斤CO2e,不論在有無使用狀態下,電力間接排放均占整體溫室氣體排放九成以上,其中以大型恆溫防潮櫃排放量最高(221.9443公斤CO2e)。
研究結論
本研究發現電力消耗為實驗室最主要溫室氣體排放來源,且恆溫防潮櫃最為耗電。建議實驗室可更換成具有節能標章的電器設備、控制實驗操作時間,並適時調節設備使用頻率;未來規劃實驗室地點時選擇環境溼度較低的位置,以避免額外的耗電需求與溫室氣體排放。
zh_TW
dc.description.abstractBackground
Greenhouse gas (GHG) emission causes climate change, which induces significant health impacts. Under Taiwan’s Climate Change Response Act, all sectors must produce GHG emissions inventories and develop reduction strategies. This study evaluated the GHG emissions in a laboratory and the impact of human activities.
Methods
We followed ISO 14064-1:2018 standard to conduct the GHG inventory from January to March of 2025. The assessment boundary was the Physiology Student Laboratory at National Taiwan University. GHG emission was estimated using the Emission Factor Method, calculating emissions from each source based on power consumption, duration of use, emission factors, and the Global Warming Potential. We also compared emissions during periods with different laboratory personnel activities to explore the impact of human activity on GHG emissions.
Results
Indirect emissions due to electricity consumption accounted for more than 90% of total GHG emissions. Among all equipment, the large temperature-controlled dehumidification cabinet contributed the highest emission (221.9443 kg CO₂e). During the inactive periods without student activities, seven emission sources produced 355.806 kg CO₂e; in contrast, the total emissions increased to 592.869 kg CO₂e from 12 sources during active periods with personnel usage.
Conclusion
Our study showed that electricity consumption was the primary source of GHG emissions in the laboratory, and the temperature-controlled dehumidification cabinet was the most energy-intensive equipment. Laboratories may consider replacing equipment with more energy-efficient models to reduce carbon emissions. Future laboratories should be located in areas with lower ambient humidity to further minimize electricity consumption.
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dc.description.tableofcontents摘要 i
英文摘要 ii
目次 iv
圖次 v
表次 vi
第一章 導論 1
第一節 實習單位特色與簡介 1
第二節 研究動機與目的 1
第三節 文獻回顧 2
第二章 方法 21
第一節 研究流程 21
第二節 定性盤查 22
第三節 定量盤查 27
第三章 結果 30
第一節 定性盤查 30
第二節 定量盤查 35
第四章 討論 42
第一節 研究成果 42
第二節 研究結果討論 42
第三節 研究限制 46
第五章 研究建議 49
參考文獻 50
附錄 56
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dc.language.isozh_TW-
dc.subject氣候變遷zh_TW
dc.subject溫室氣體zh_TW
dc.subject碳盤查zh_TW
dc.subject實驗室zh_TW
dc.subjectClimate changeen
dc.subjectGreenhouse gasesen
dc.subjectCarbon accountingen
dc.subjectLaboratoryen
dc.title實驗室溫室氣體盤查計畫zh_TW
dc.titleLaboratory Greenhouse Gas Accounting Planen
dc.typeThesis-
dc.date.schoolyear113-2-
dc.description.degree碩士-
dc.contributor.oralexamcommittee林水龍;吳衍諭zh_TW
dc.contributor.oralexamcommitteeShuei-Liong Lin;Yen-Yu Wuen
dc.subject.keyword氣候變遷,溫室氣體,碳盤查,實驗室,zh_TW
dc.subject.keywordClimate change,Greenhouse gases,Carbon accounting,Laboratory,en
dc.relation.page66-
dc.identifier.doi10.6342/NTU202502432-
dc.rights.note未授權-
dc.date.accepted2025-08-06-
dc.contributor.author-college公共衛生學院-
dc.contributor.author-dept公共衛生碩士學位學程-
dc.date.embargo-liftN/A-
顯示於系所單位:公共衛生碩士學位學程

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