博碩士論文 972403001 詳細資訊




以作者查詢圖書館館藏 以作者查詢臺灣博碩士 以作者查詢全國書目 勘誤回報 、線上人數:39 、訪客IP:3.133.159.224
姓名 劉文治(Wen-tzu Liu)  查詢紙本館藏   畢業系所 化學學系
論文名稱 大氣中揮發性有機物與溫室氣體監測與模式估算
(Monitoring and Modeling Simulations for Atmospheric Volatile Organic Compounds and Greenhouse Gases)
相關論文
★ 有機薄膜電晶體材料三併環及四併環噻吩衍生物之開發★ 以逆吹式氣相層析法分析氣體成份
★ 氣相層析法應用於工業排放連續監測★ 煙道氣揮發性有機化合物連續監測方法開發
★ 自製新型除水及熱脫附濃縮裝置用於GC/MS線上分析揮發性有機汙染物★ 觸媒式非甲烷總碳氫分析儀開發與驗證
★ 自製除水器及熱脫附儀用於線上GC/MS/FID揮發性有機污染物之分析★ 大氣及水樣中揮發性有機氣體自動化分析技術之建立及應用
★ VOC前濃縮與預警系統之建構★ 建立自動化甲烷連續量測系統與其在指示大氣輻射冷卻之應用
★ 臭氧前趨物連續監測與臭氧生成之光化學探討★ 以近連續方式量測空氣中甲烷與異戊二烯及其生成之季節性探討
★ 自行架設光化學測站與商業化儀器平行比對及所得資料初步分析★ 近地表臭氧前驅物分析之前濃縮技術改良
★ 自動化噴霧捕捉分析系統之建立與研究★ 大體積固相微萃取水中揮發性有機污染物
檔案 [Endnote RIS 格式]    [Bibtex 格式]    [相關文章]   [文章引用]   [完整記錄]   [館藏目錄]   [檢視]  [下載]
  1. 本電子論文使用權限為同意立即開放。
  2. 已達開放權限電子全文僅授權使用者為學術研究之目的,進行個人非營利性質之檢索、閱讀、列印。
  3. 請遵守中華民國著作權法之相關規定,切勿任意重製、散佈、改作、轉貼、播送,以免觸法。

摘要(中) 本論文包括兩大部分,第一部份旨在發展空氣中有機揮發性氣體 (VOCs)的監測與應用,其中又可分為兩單元,分別為1.交通源之成份與其對臭氧的影響,2. 台灣南部空氣汙染事件之成因分析。另一部分為建立高山測站溫室氣體監測方法,使溫室氣體成為我國高山背景空氣測站之固定監測項目。
論文的第一部份第一單元旨在探討交通車速對成份的影響與其對空氣品質的可能影響,以文獻中少見之長隧道作為取得純車輛排放之理想環境,在隧道中量測數十種非甲烷碳氫化合物 (NMHC)成份與一氧化碳 (CO),並以NMHC/CO比值方式呈現不同行車速度下NMHC的組成變化與其對臭氧生成潛勢的影響,研究結果顯示車輛多且平均車速較慢時 (45 km hr-1)比值較高,以未燃燒完全之汽油─烷烴為主;隨著車速增加 (75-85 km hr-1)比值降低,此時污染物排放由烷烴轉為以烯烴、芳香烴為主,雖然總臭氧生成量降低,但因此兩類物種最大反應增量 (MIR)較高,佔臭氧生成貢獻比例較高。本研究之創新處在於1. 以長隧道取得純粹車輛排放之理想環境,相較於以往文獻研究多以動力計與短隧道實驗作為量測方式更具有代表性且不易受其他排放源之干擾;2. 採多點等距採樣,使隧道數據更具車輛尾氣之代表性;3. 以NMHC/CO比值作為比較相對排放之基礎,排除了車輛密度之變因。
論文的第一部份第二單元旨在探討南臺灣長年受高臭氧事件影響之成因,本研究為南台灣之單一個案分析,選擇都會區典型VOC成份作為汙染傳送之示蹤劑,並以光化學模式模擬空氣中指標VOC物質之濃度變化與擴散行為。結果顯示南部都會區排放之污染物在春季盛行東北季風時會被推送至西部海域,不會影響高雄、屏東地區;若東北季風轉弱,天氣型態轉變成海陸風型態時,都會區排放污染物則會被海風帶至內陸地區,並於傳輸路程中間接產生高臭氧而影響下風處。本研究首次成功利用已被驗證的光化學模式結合實地觀測,模擬一次污染物VOCs與二次污染物臭氧之濃度分佈與傳送行為,是文獻中少見的突破。
論文的第二部份旨在高山上建立背景測站溫室氣體監測方法,本研究首次於我國第一座高山背景空氣品質測站 (鹿林山測站)以光腔衰盪光譜儀 (CRDS)建立台灣背景大氣中二氧化碳 (CO2)與甲烷 (CH4)逐時濃度量測方法,以長期觀測此兩種重要溫室氣體的大氣濃度變化。研究結果顯示二氧化碳與甲烷測值與NOAA採樣結果呈現相當一致的結果,二氧化碳背景濃度呈現逐年上升趨勢亦與全球平均觀測值接近 (每年上升1.48 ppm),兩者長期量測數據具有東亞地區之代表性。雖然兩者平均濃度與逐年趨勢與世界其他背景測站結果相似,但受本地與長程傳輸影響使得兩者濃度在背景值上出現較大的跳動,顯示其中蘊含了豐富的空氣流動特徵,將成為未來鹿林山長期觀測數據的獨特資產。
摘要(英) This thesis comprises two parts. The first part aims to developing monitoring and applications of ambient volatile organic compounds (VOCs), which contains two subjects, i.e., studying the composition of pure traffic emissions and interpreting the occurrence of air pollution events in southern Taiwan. The second part aims to develop monitoring capabilities of greenhouse gases (GHGs) at a high mountain station and to add these gases to the list of routine monitoring.
The first subject of the VOC work is to study the composition of vehicular emissions and the relationship between traffic speed and chemical composition. To obtain pure traffic emissions without interferences from other sources, a long-tunnel tunnel (12.9 km) was exploited in the study. A series of non-methane hydrocarbons (NMHCs) and carbon monoxide (CO) in multiple air samples collected from a moving vehicle inside the tunnel were analyzed. Instead of calculating emission factors as appeared in most of the related works in the literature, the compositional changes in emission at various speeds were discussed in a relative manner by normalizing individual NMHCs with CO concentrations to obtain relative emissions. Subsequently, the effects on ozone formation arisen from the compositional changes at different speeds were discussed. Results show that, at the slowest speed (45 km hr-1) due to traffic congestion in the tunnel, the group of alkanes dominates the NMHC composition. As the speed increases (75-85 km hr-1), alkenes and aromatics become the dominant constituents of the NMHC composition. Although, on the per-unit-mass basis, alkenes and aromatics have higher maximum increment reactivity (MIR) than alkanes, the much greater emissions at the slowest speed still induce the largest ozone forming potential as a whole. The novelties of this study lie in the following aspects: 1. Long tunnels are ideal for obtaining pure vehicular emissions, which is more advantageous than performing emission studies in shorter tunnels or with chassis dynamometers; 2. Multiple sampling along the long tunnel can better represent pure traffic emissions with minimal interferences from other non-vehicular sources as compared to measurements in short tunnels; 3. The use of NMHC/CO ratios can eliminate the factor of vehicle densities, enabling more straightforward comparison between different datasets.
The second subject of the VOC work is to study the cause of high-ozone episodes that frequently occurred in southern Taiwan. A case study in springtime was chosen for the study. The VOC monitoring was coupled with model simulations (PAMS-AQM) to help interpret dispersion of air pollutants, and toluene was employed as the surrogate pollutant in model simulations to display pollutants movements. Results show that when strong northwesterly winds prevail, pollutants are blown westwards to the sea not affecting the northern counties. In contrast, when the local circulation dominates weather conditions, pollutants are blown towards inland areas and, thus, the southern cities are more prone to pollution episodes. This work is one of the very few studies in the literature that coupled model simulations with VOC field measurements, which successfully demonstrates the transport of primary pollutants and the formation of secondary pollutants such as ozone during a pollution episode.
The second part of the thesis is to establish the measurement capabilities of GHGs at a high-mountain background station (Lulin Atmospheric background Station, LABS) using cavity ringdown spectrometry (CRDS) to routinely monitor carbon two major GHGs, namely dioxide (CO2) and methane (CH4). Our in-situ observations of CO2 and CH4 were found to be rather consistent with the NOAA flask results in terms of seasonal variations and average concentrations. The gradual increase in atmospheric CO2 concentrations at LABS also agreed well with global observations, suggesting the GHG observations are representative of this geophysical region. Despite the general agreement with other global stations, the variability was found to be much greater than that at other global stations, implying complex influences from local or long-range transport. To decipher the mechanisms embedded in the variability could make LABS a unique asset in terms of global observations of GHGs.
關鍵字(中) ★ 揮發性有機物
★ 鹿林山背景測站
★ 溫室氣體
★ 光化學空品模式
★ 臭氧
★ 隧道實驗
關鍵字(英) ★ VOC
★ Lulin background station
★ greenhouse gases
★ PAMS-AQM
★ ozone
★ tunnel study
論文目次 中文摘要 i
Abstract iv
謝誌 vii
目錄 x
圖目錄 xii
表目錄 xvi
第一章 研究背景 1
第二章 長隧道實驗分析移動源排放 5
2-1 揮發性有機物簡介 5
2-2 文獻回顧 12
2-3 研究方法 22
2-3-1 採樣點簡介─雪山隧道 22
2-3-2 實驗方法 26
2-4 實驗結果與討論 33
2-4-1 NMHC與CO濃度 33
2-4-2 成份相關性 39
2-4-3 NMHC成份與比值 46
2-4-4 臭氧反應生成潛勢 (以CO為基準) 50
2-4-5 比較NMHC/CO 54
2-5 小結 63
第三章 污染源流佈探討─南台灣個案研究 65
3-1 前言 65
3-2 文獻回顧 66
3-3 工作方法 72
3-3-1 監測地點簡介 72
3-3-2 分析方法 75
3-4 結果與討論 85
3-5 小結 103
第四章 鹿林山背景溫室氣體監測 104
4-1 溫室氣體簡介 104
4-2 文獻回顧 118
4-3 實驗方法 141
4-4-1 CO2分析結果 141
4-4-2 CH4量測結果 150
4-4-3 溫室氣體年成長率 157
4-4-4 CH4與CO相關性探討 163
4-5 未來目標 169
4-6 小結 171
第五章 總結 173
第六章 參考文獻 175
著作目錄 195
參考文獻 Abu-Allaban M., Coulomb W., Gertler A. W., Gillies J., Pierson W. R., Rogers C. F., Sagebiel J. C., Tarnay L., 2002. Exhaust Particle Size Distribution Measurements at the Tuscarora Mountain Tunnel. Aerosol Science and Technology 36, 771-789.
Allen D. T., Torres V. M., Thomas J., Sullivan D. W., Harrison M., Hendler A., Herndon S. C., Kolb C. E., Fraser M. P., Hill A. D., Lamb B. K., Miskimins J., Sawyer R. F., Seinfeld J. H., 2013. Measurements of methane emissions at natural gas production sites in the United States. Proceedings of the National Academy of Sciences.
Andreae M. O., Merlet P., 2001. Emission of trace gases and aerosols from biomass burning. Global Biogeochem. Cycles 15, 955-966.
Arneth A., Monson R. K., Schurgers G., Niinemets Ü., Palmer P. I., 2008. Why are estimates of global terrestrial isoprene emissions so similar (and why is this not so for monoterpenes)? Atmospheric Chemistry and Physics 8, 4605-4620.
Atkinson R., Arey J., 2003. Atmospheric Degradation of Volatile Organic Compounds. Chemical Reviews 103, 4605-4638.
Aydin M., Verhulst K. R., Saltzman E. S., Battle M. O., Montzka S. A., Blake D. R., Tang Q., Prather M. J., 2011. Recent decreases in fossil-fuel emissions of ethane and methane derived from firn air. Nature 476, 198-201.
Barletta B., Meinardi S., Simpson I. J., Khwaja H. A., Blake D. R., Rowland F. S., 2002. Mixing ratios of volatile organic compounds (VOCs) in the atmosphere of Karachi, Pakistan. Atmospheric Environment 36, 3429-3443.
Blake N. J., Blake D. R., Simpson I. J., Meinardi S., Swanson A. L., Lopez J. P., Katzenstein A. S., Barletta B., Shirai T., Atlas E., Sachse G., Avery M., Vay S., Fuelberg H. E., Kiley C. M., Kita K., Rowland F. S., 2003. NMHCs and halocarbons in Asian continental outflow during the Transport and Chemical Evolution over the Pacific (TRACE-P) Field Campaign: Comparison With PEM-West B. Journal of Geophysical Research: Atmospheres 108, 8806.
Borbon A., Coddeville P., Locoge N., Galloo J.-C., 2004. Characterising sources and sinks of rural VOC in eastern France. Chemosphere 57, 931-942.
Borbon A., Fontaine H., Veillerot M., Locoge N., Galloo J. C., Guillermo R., 2001. An investigation into the traffic-related fraction of isoprene at an urban location. Atmospheric Environment 35, 3749-3760.
Bousquet P., Ciais P., Miller J. B., Dlugokencky E. J., Hauglustaine D. A., Prigent C., Van der Werf G. R., Peylin P., Brunke E. G., Carouge C., Langenfelds R. L., Lathiere J., Papa F., Ramonet M., Schmidt M., Steele L. P., Tyler S. C., White J., 2006. Contribution of anthropogenic and natural sources to atmospheric methane variability. Nature 443, 439-443.
Boutton T., 1996. Mass Spectrometry of Soils. Taylor & Francis,
Brunekreef B., Holgate S. T., 2002. Air pollution and health. The Lancet 360, 1233-1242.
Buczynska A. J., Krata A., Stranger M., Locateli Godoi A. F., Kontozova-Deutsch V., Bencs L., Naveau I., Roekens E., Van Grieken R., 2009. Atmospheric BTEX-concentrations in an area with intensive street traffic. Atmospheric Environment 43, 311-318.
Buermann W., Lintner B. R., Koven C. D., Angert A., Pinzon J. E., Tucker C. J., Fung I. Y., 2007. The changing carbon cycle at Mauna Loa Observatory. Proceedings of the National Academy of Sciences 104, 4249-4254.
Burnett R. T., Smith-Doiron M., Stieb D., Raizenne M. E., Brook J. R., Dales R. E., Leech J. A., Cakmak S., Krewski D., 2001. Association between Ozone and Hospitalization for Acute Respiratory Diseases in Children Less than 2 Years of Age. American Journal of Epidemiology 153, 444-452.
Buzcu-Guven B., Fraser M. P., 2008. Comparison of VOC emissions inventory data with source apportionment results for Houston, TX. Atmospheric Environment 42, 5032-5043.
CARB, 1996. Methodology for estimating emissions from on-road motor vehicles, Vol 2 EMFAC 7g, Technical Support Division, California Environmental Protection Agency, CA.
Carter W. P. L., 1994. Development of ozone reactivity scales for volatile organic compounds. Journal of the Air and Waste Management Assocaition 44, 881-899.
Carter W. P. L., 2003. VOC reactivity data as of February 5, 2003 (available at ftp://ftp.cert.ucr.edu/pub/carter/SAPRC99/r02tab.xls).
Carter W. P. L., 2010. Updated Maximum Incremental Reactivity Scale and Hydrocarbon Bin. Reactivities for Regulatory Applications - California Air Resources Board Contract 07-339.
Chan C.-C., Wu T.-H., 2005. Effects of ambient ozone exposure on mail carriers’ peak expiratory flow rates. Environmental Health Perspectives 113, 735-738.
Chan T. L., Ning Z., 2005. On-road remote sensing of diesel vehicle emissions measurement and emission factors estimation in Hong Kong. Atmospheric Environment 39, 6843-6856.
Chang C.-C., Chen T.-Y., Lin C.-Y., Yuan C.-S., Liu S.-C., 2005a. Effects of reactive hydrocarbons on ozone formation in southern Taiwan. Atmospheric Environment 39, 2867-2878.
Chang C.-C., Lo S.-J., Lo J.-G., Wang J.-L., 2003. Analysis of methyl tert-butyl ether in the atmosphere and implications as an exclusive indicator of automobile exhaust. Atmospheric Environment 37, 4747-4755.
Chang C.-C., OuYang C.-F., Wang C.-H., Chiang S.-W., Wang J.-L., 2010. Validation of in-situ measurements of volatile organic compounds through flask sampling and gas chromatography/mass spectrometry analysis. Atmospheric Environment 44, 1301-1307.
Chang C.-C., Wang J.-L., Liu S.-C., Candice Lung S.-C., 2006. Assessment of vehicular and non-vehicular contributions to hydrocarbons using exclusive vehicular indicators. Atmospheric Environment 40, 6349-6361.
Chang K.-H., Chen T.-F., Huang H.-C., 2005b. Estimation of biogenic volatile organic compounds emissions in subtropical island—Taiwan. Science of The Total Environment 346, 184-199.
Chang K.-H., Jeng F.-T., Tsai Y.-L., Lin P.-L., 2000. Modeling of long-range transport on Taiwan’s acid deposition under different weather conditions. Atmospheric Environment 34, 3281-3295.
Chang S.-C., Lee C.-T., 2006. Ozone variations through vehicle emissions reductions based on air quality monitoring data in Taipei City, Taiwan, from 1994 to 2003. Atmospheric Environment 40, 3513-3526.
Chang S.-C., Lin T.-H., Lee C.-T., 2009. On-road emission factors from light-duty vehicles measured in Hsuehshan Tunnel (12.9 km), the longest tunnel in Asia. Environmental Monitoring and Assessment 153, 187-200.
Chen H., Winderlich J., Gerbig C., Hoefer A., Rella C. W., Crosson E. R., Van Pelt A. D., Steinbach J., Kolle O., Beck V., Daube B. C., Gottlieb E. W., Chow V. Y., Santoni G. W., Wofsy S. C., 2010a. High-accuracy continuous airborne measurements of greenhouse gases (CO2 and CH4) using the cavity ring-down spectroscopy (CRDS) technique. Atmospheric Measurement Technique 3, 375-386.
Chen P. C., Lai Y. M., Chan C. C., Hwang J. S., Yang C. Y., Wang J. D., 1999. Short-term effect of ozone on the pulmonary function of children in primary school. Environmental Health Perspectives 107, 921-925.
Chen S.-P., Liu T.-H., Chen T.-F., Yang C.-F. O., Wang J.-L., Chang J. S., 2010b. Diagnostic Modeling of PAMS VOC Observation. Environmental Science and Technology 44, 4635-4644.
Cheng Y.-H., Liu Z.-S., Chen C.-C., 2010. On-road measurements of ultrafine particle concentration profiles and their size distributions inside the longest highway tunnel in Southeast Asia. Atmospheric Environment 44, 763-772.
Chiang H.-L., Hwu C.-S., Chen S.-Y., Wu M.-C., Ma S.-Y., Huang Y.-S., 2007a. Emission factors and characteristics of criteria pollutants and volatile organic compounds (VOCs) in a freeway tunnel study. Science of The Total Environment 381, 200-211.
Chiang H. L., Tsai J. H., Chen S. Y., Lin K. H., Ma S. Y., 2007b. VOC concentration profiles in an ozone non-attainment area: A case study in an urban and industrial complex metroplex in southern Taiwan. Atmospheric Environment 41, 1848-1860.
Chuang M.-T., Chang S.-C., Lin N.-H., Wang J.-L., Sheu G.-R., Chang Y.-J., Lee C.-T., 2013a. Aerosol chemical properties and related pollutants measured in Dongsha Island in the northern South China Sea during 7-SEAS/Dongsha Experiment. Atmospheric Environment 78, 82-92.
Chuang M.-T., Chou C. C. K., Sopajaree K., Lin N.-H., Wang J.-L., Sheu G.-R., Chang Y.-J., Lee C.-T., 2013b. Characterization of aerosol chemical properties from near-source biomass burning in the northern Indochina during 7-SEAS/Dongsha experiment. Atmospheric Environment 78, 72-81.
Chung S. H., Seinfeld J. H., 2002. Global distribution and climate forcing of carbonaceous aerosols. Journal of Geophysical Research: Atmospheres 107, 4407.
Conway T. J., Tans P. P., Waterman L. S., Thoning K. W., Kitzis D. R., Masarie K. A., Zhang N., 1994. Evidence for interannual variability of the carbon cycle from the National Oceanic and Atmospheric Administration/Climate Monitoring and Diagnostics Laboratory Global Air Sampling Network. Journal of Geophysical Research: Atmospheres 99, 22831-22855.
Corvalán R. M., Vargas D., 2003. Experimental analysis of emission deterioration factors for light duty catalytic vehicles Case study: Santiago, Chile. Transportation Research Part D: Transport and Environment 8, 315-322.
Crosson E. R., 2008. A cavity ring-down analyzer for measuring atmospheric levels of methane, carbon dioxide, and water vapor. Applied Physics B 92, 403-408.
Dlugokencky E., Miller J., Staehelin J., 2010. The Global Atmosphere Watch: a history of contributing to climate monitoring. WMO Bulletin 59, 35-39.
Dlugokencky E. J., Houweling S., Bruhwiler L., Masarie K. A., Lang P. M., Miller J. B., Tans P. P., 2003. Atmospheric methane levels off: Temporary pause or a new steady-state? Geophysical Research Letters 30, 1992.
Dlugokencky E. J., Steele L. P., Lang P. M., Masarie K. A., 1995. Atmospheric methane at Mauna Loa and Barrow observatories: Presentation and analysis of in situ measurements. Journal of Geophysical Research: Atmospheres 100, 23103-23113.
Duncan B. N., Martin R. V., Staudt A. C., Yevich R., Logan J. A., 2003. Interannual and seasonal variability of biomass burning emissions constrained by satellite observations. Journal of Geophysical Research: Atmospheres 108, 4100.
Durbin T. D., Wilson R. D., Norbeck J. M., Miller J. W., Huai T., Rhee S. H., 2002. Estimates of the emission rates of ammonia from light-duty vehicles using standard chassis dynamometer test cycles. Atmospheric Environment 36, 1475-1482.
Ehhalt D. H., Schmidt U., 1978. Sources and sinks of atmospheric methane. Pure and Applied Geophysics 116, 452-464.
El-Fadel M., Hashisho Z., 2001. Vehicular Emissions in Roadway Tunnels: A Critical Review. Critical Reviews in Environmental Science and Technology 31, 125-174.
EPA T., 2005. Emission of air pollutants in Taiwan, Taipei (in chinese edition).
PAMS introduction. http://taqm.epa.gov.tw/taqm/zh-tw/b0104-2.aspx
EPA T., NSC T., 2006. TEPA and National Science Council (NSC) Corporation Project:Investigation of Fine Particulate Emission from Mobile Sources in Kaoping area, Taipei, Taiwan (NSC 94-EPA-Z039-006) (in Chinese edition).
EPA U., 1984a. TO-1, Compendium of Method for the Determination of Volatile Organic Compounds (VOCs) in Ambient Air Using Tenax-TA Adsorption and Gas Chromatography/Mass Spectrometry (GC/MS)
EPA U., 1984b. TO-2, Compendium of Method for the Determination of Volatile Organic Compounds (VOCs) in Ambient Air by Carbon Molecular Sieve Adsorption and Gas Chromatography/Mass Spectrometry (GC/MS)
EPA U., 1999a. TO-14, Compendium of Methods for the Determination of Toxic Organic Compounds in Ambient Air.
EPA U., 1999b. TO-15, Compendium of Methods for the Determination of Volatile Organic Compounds (VOCs) in Air Collected in Specially-Prepared Canisters and Analyzed by Gas Chromatography/Mass Spectrometry (GC/MS).
EPA U., 1999c. TO-17, Compendium of Methods for the Determination of Toxic Volatile Organic Compounds (VOCs) in Ambient Air.
Faiz A., Weaver C. S., Walsh M. P., 1996. Air Pollution from Motor Vehicles: Standards and Technologies for Controlling Emissions. World Bank,
Finlayson-Pitts B. J., Pitts J. N., 1986. Atmospheric Chemistry. Wiley, New York,
Finlayson B. J., Pitts J. N., 1976. Photochemistry of the Polluted Troposphere. Science 192, 111-119.
Fiore A. M., Horowitz L. W., Dlugokencky E. J., West J. J., 2006. Impact of meteorology and emissions on methane trends, 1990–2004. Geophysical Research Letters 33, L12809.
http://maps.geog.umd.edu/firms/.
Fujita D., Ishizawa M., Maksyutov S., Thornton P. E., Saeki T., Nakazawa T., 2003. Inter-annual variability of the atmospheric carbon dioxide concentrations as simulated with global terrestrial biosphere models and an atmospheric transport model. Tellus B 55(B), 530-546.
Fung I. Y., Tucker C. J., Prentice K. C., 1987. Application of Advanced Very High Resolution Radiometer vegetation index to study atmosphere-biosphere exchange of CO2. Journal of Geophysical Research: Atmospheres 92, 2999-3015.
Geng F., Zhao C., Tang X., Lu G., Tie X., 2007. Analysis of ozone and VOCs measured in Shanghai: A case study. Atmospheric Environment 41, 989-1001.
Gertler A. W., Sagebiel J. C., Wittorff D. N., Pierson W. R., Dippel W. A., Freeman D., L. S., 1997. Vehicle emissions in five urban tunnels. Desert Research Institute. Reno, NV.
Guenther A., Karl T., Harley P., Wiedinmyer C., Palmer P. I., Geron C., 2006. Estimates of global terrestrial isoprene emissions using MEGAN (Model of Emissions of Gases and Aerosols from Nature). Atmospheric Chemistry and Physics 6, 3181-3210.
Guo H., Zou S. C., Tsai W. Y., Chan L. Y., Blake D. R., 2011. Emission characteristics of nonmethane hydrocarbons from private cars and taxis at different driving speeds in Hong Kong. Atmospheric Environment 45, 2711-2721.
Gupta P., Noone D., Galewsky J., Sweeney C., Vaughn B. H., 2009. Demonstration of high-precision continuous measurements of water vapor isotopologues in laboratory and remote field deployments using wavelength-scanned cavity ring-down spectroscopy (WS-CRDS) technology. Rapid Communications in Mass Spectrometry 23, 2534-2542.
Hao W. M., Ward D. E., 1993. Methane production from global biomass burning. Journal of Geophysical Research: Atmospheres 98, 20657-20661.
Harley R. A., Cass G. R., 1995. Modeling the atmospheric concentrations of individual volatile organic compounds. Atmospheric Environment 29, 905-922.
Harris J. M., Kahl J. D. W., 1994. Analysis of 10-day isentropic flow patterns for Barrow, Alaska: 1985–1992. Journal of Geophysical Research: Atmospheres 99, 25845-25855.
Harris J. M., Oltmans S. J., Dlugokencky E. J., Novelli P. C., Johnson B. J., Mefford T., 1998. An investigation into the source of the springtime tropospheric ozone maximum at Mauna Loa Observatory. Geophysical Research Letters 25, 1895-1898.
Hataaka J., Aalto T., Aaltonen V., Hakola H., Komppula M., LAURILA T., Lihavainen H., Paatero J., Salminen K., Viisanen Y., 2003. Overview of the atmospheric research activities and results at Pallas GAW Station. Boreal Environmental Research 8, 365-383.
Heald C. L., Jacob D. J., Fiore A. M., Emmons L. K., Gille J. C., Deeter M. N., Warner J., Edwards D. P., Crawford J. H., Hamlin A. J., Sachse G. W., Browell E. V., Avery M. A., Vay S. A., Westberg D. J., Blake D. R., Singh H. B., Sandholm S. T., Talbot R. W., Fuelberg H. E., 2003. Asian outflow and trans-Pacific transport of carbon monoxide and ozone pollution: An integrated satellite, aircraft, and model perspective. Journal of Geophysical Research: Atmospheres 108, 4804.
Helmig D., 1999. Air analysis by gas chromatography. Journal of Chromatography A 843, 129-146.
Henne S., Klausen J., Junkermann W., Kariuki J. M., Aseyo J. O., Buchmann B., 2008. Representativeness and climatology of carbon monoxide and ozone at the global GAW station Mt. Kenya in equatorial Africa. Atmospheric Chemistry and Physics 8, 3119-3139.
Ho K. F., Lee S. C., Ho W. K., Blake D. R., Cheng Y., Li Y. S., Ho S. S. H., Fung K., Louie P. K. K., Park D., 2009. Vehicular emission of volatile organic compounds (VOCs) from a tunnel study in Hong Kong. Atmospheric Chemistry and Physics 9, 7491-7504.
Holben B. N., Tanré D., Smirnov A., Eck T. F., Slutsker I., Abuhassan N., Newcomb W. W., Schafer J. S., Chatenet B., Lavenu F., Kaufman Y. J., Castle J. V., Setzer A., Markham B., Clark D., Frouin R., Halthore R., Karneli A., O’Neill N. T., Pietras C., Pinker R. T., Voss K., Zibordi G., 2001. An emerging ground-based aerosol climatology: Aerosol optical depth from AERONET. Journal of Geophysical Research: Atmospheres 106, 12067-12097.
Hsieh L.-T., Yang H.-H., Chen H.-W., 2006. Ambient BTEX and MTBE in the neighborhoods of different industrial parks in Southern Taiwan. Journal of Hazardous Materials 128, 106-115.
Hsu Y.-C., Tsai J.-H., Chen H.-W., Lin W.-Y., 2001. Tunnel study of on-road vehicle emissions and the photochemical potential in Taiwan. Chemosphere 42, 227-234.
Hsu Y.-K., VanCuren T., Park S., Jakober C., Herner J., FitzGibbon M., Blake D. R., Parrish D. D., 2010. Methane emissions inventory verification in southern California. Atmospheric Environment 44, 1-7.
Hwa M.-Y., Hsieh C.-C., Wu T.-C., Chang L.-F. W., 2002. Real-world vehicle emissions and VOCs profile in the Taipei tunnel located at Taiwan Taipei area. Atmospheric Environment 36, 1993-2002.
IPCC, 2007. Technical summary-Safeguarding the Ozone Layer and the Global Climate Systems: Issues Related to Hydrofluorocarbons and Perfluorocarbons.
IPCC, 2013. Working Group I Contribution To the IPCC Fifth Assessment Report (AR5) Climate Change: The Physical Science Basis.,
Jeong S., Zhao C., Andrews A. E., Bianco L., Wilczak J. M., Fischer M. L., 2012. Seasonal variation of CH4 emissions from central California. Journal of Geophysical Research: Atmospheres 117, D11306.
Kahl J. D., 1990. Characteristics of the low-level temperature inversion along the Alaskan Arctic coast. International Journal of Climatology 10, 537-548.
Kai F. M., Tyler S. C., Randerson J. T., Blake D. R., 2011. Reduced methane growth rate explained by decreased Northern Hemisphere microbial sources. Nature 476, 194-197.
Kalberer M., Paulsen D., Sax M., Steinbacher M., Dommen J., Prevot A. S. H., Fisseha R., Weingartner E., Frankevich V., Zenobi R., Baltensperger U., 2004. Identification of Polymers as Major Components of Atmospheric Organic Aerosols. Science 303, 1659-1662.
Kanakidou M., Seinfeld J. H., Pandis S. N., Barnes I., Dentener F. J., Facchini M. C., Van Dingenen R., Ervens B., Nenes A., Nielsen C. J., Swietlicki E., Putaud J. P., Balkanski Y., Fuzzi S., Horth J., Moortgat G. K., Winterhalter R., Myhre C. E. L., Tsigaridis K., Vignati E., Stephanou E. G., Wilson J., 2005. Organic aerosol and global climate modelling: a review. Atmospheric Chemistry and Physics 5, 1053-1123.
Karbiwnyk C. M., Mills C. S., Helmig D., Birks J. W., 2003. Use of Chlorofluorocarbons as Internal Standards for the Measurement of Atmospheric Non-Methane Volatile Organic Compounds Sampled onto Solid Adsorbent Cartridges. Environmental Science and Technology 37, 1002-1007.
Karion A., Sweeney C., Wolter S., Newberger T., Chen H., Andrews A., Kofler J., Neff D., Tans P., 2013. Long-term greenhouse gas measurements from aircraft. Atmospheric Measurement Technique 6, 511-526.
Kaufman Y. J., Hobbs P. V., Kirchhoff V. W. J. H., Artaxo P., Remer L. A., Holben B. N., King M. D., Ward D. E., Prins E. M., Longo K. M., Mattos L. F., Nobre C. A., Spinhirne J. D., Ji Q., Thompson A. M., Gleason J. F., Christopher S. A., Tsay S.-C., 1998. Smoke, Clouds, and Radiation-Brazil (SCAR-B) experiment. Journal of Geophysical Research: Atmospheres 103, 31783-31808.
Kean A. J., Harley R. A., Littlejohn D., Kendall G. R., 2000. On-Road Measurement of Ammonia and Other Motor Vehicle Exhaust Emissions. Environmental Science and Technology 34, 3535-3539.
Keeling C. D., 1973. Industrial production of carbon dioxide from fossil fuels and limestone. Tellus 25, 174-198.
Keeling C. D., Bacastow R. B., Bainbridge A. E., Ekdahl C. A., Guenther P. R., Waterman L. S., Chin J. F. S., 1976. Atmospheric carbon dioxide variations at Mauna Loa Observatory, Hawaii. Tellus 28, 538-551.
http://bluemoon.ucsd.edu/data.html.
Khalil M. A. K., Rasmussen R. A., Hoyt S. D., 1983. Atmospheric chloroform (CHCl3): ocean-air exchange and global mass balance. Tellus B 35B, 266-274.
Kirchstetter T. W., Harley R. A., Kreisberg N. M., Stolzenburg M. R., Hering S. V., 1999. On-road measurement of fine particle and nitrogen oxide emissions from light- and heavy-duty motor vehicles. Atmospheric Environment 33, 2955-2968.
Kondo Y., Morino Y., Takegawa N., Koike M., Kita K., Miyazaki Y., Sachse G. W., Vay S. A., Avery M. A., Flocke F., Weinheimer A. J., Eisele F. L., Zondlo M. A., Weber R. J., Singh H. B., Chen G., Crawford J., Blake D. R., Fuelberg H. E., Clarke A. D., Talbot R. W., Sandholm S. T., Browell E. V., Streets D. G., Liley B., 2004. Impacts of biomass burning in Southeast Asia on ozone and reactive nitrogen over the western Pacific in spring. Journal of Geophysical Research: Atmospheres 109, D15S12.
Krausmann F., Gingrich S., Eisenmenger N., Erb K.-H., Haberl H., Fischer-Kowalski M., 2009. Growth in global materials use, GDP and population during the 20th century. Ecological Economics 68, 2696-2705.
Kumar S., Kwon H.-T., Choi K.-H., Hyun Cho J., Lim W., Moon I., 2011. Current status and future projections of LNG demand and supplies: A global prospective. Energy Policy 39, 4097-4104.
Lai C.-H., Peng Y.-P., 2012. Volatile hydrocarbon emissions from vehicles and vertical ventilations in the Hsuehshan traffic tunnel, Taiwan. Environmental Monitoring and Assessment 184, 4015-4028.
Lawson D. R., Groblicki P. J., Stedman D. H., Bishop G. A., Guenther P. L., 1990. Emissions from lit-use Motor Vehicles in Los Angeles: A Pilot Study of Remote Sensing and the Inspection and Maintenance Program. Journal of the Air & Waste Management Association 40, 1096-1105.
Le Quéré C., Rödenbeck C., Buitenhuis E. T., Conway T. J., Langenfelds R., Gomez A., Labuschagne C., Ramonet M., Nakazawa T., Metzl N., Gillett N., Heimann M., 2007. Saturation of the Southern Ocean CO2 Sink Due to Recent Climate Change. Science 316, 1735-1738.
Lee B.-S., Wang J.-L., 2006. Concentration variation of isoprene and its implications for peak ozone concentration. Atmospheric Environment 40, 5486-5495.
Lelieveld J., Crutzen P. J., Ramanathan V., Andreae M. O., Brenninkmeijer C. A. M., Campos T., Cass G. R., Dickerson R. R., Fischer H., de Gouw J. A., Hansel A., Jefferson A., Kley D., de Laat A. T. J., Lal S., Lawrence M. G., Lobert J. M., Mayol-Bracero O. L., Mitra A. P., Novakov T., Oltmans S. J., Prather K. A., Reiner T., Rodhe H., Scheeren H. A., Sikka D., Williams J., 2001. The Indian Ocean Experiment: Widespread Air Pollution from South and Southeast Asia. Science 291, 1031-1036.
Li C., Qiu J., Frolking S., Xiao X., Salas W., Moore B., Boles S., Huang Y., Sass R., 2002. Reduced methane emissions from large-scale changes in water management of China’s rice paddies during 1980–2000. Geophysical Research Letters 29, 1972.
Li H.-C., Chen K.-S., Lai C.-H., Wang H.-K. W., 2011a. Measurements of Gaseous Pollutant Concentrations in the Hsuehshan Traffic Tunnel of Northern Taiwan. Aerosol and Air Quality Research 11, 776-782.
Li J., Dong X., Shangguan J., Hook M., 2011b. Forecasting the growth of China’s natural gas consumption. Energy 36, 1380-1385.
Lin C. H., Wu Y. L., Lai C. H., 2010. Ozone reservoir layers in a coastal environment - a case study in southern Taiwan. Atmospheric Chemistry and Physics 10, 4439-4452.
Lin P.-L., Lai H.-C., Sheng Y.-F., 2000. Using four dimensional data assimilation in mesoscale meteorological simulation of air pollution event over southern Taiwan area. Huanjing Baohu (Taipei, Taiwan) 23(2), 139-168.
Lin W., Xu X., Zhang X., Tang J., 2008. Contributions of pollutants from North China Plain to surface ozone at the Shangdianzi GAW Station. Atmospheric Chemistry and Physics 8, 5889-5898.
Lonneman W. A., Kopczynski S. L., Darley P. E., Sutterfield F. D., 1974. Hydrocarbon composition of urban air pollution. Environmental Science and Technology 8, 229-236.
Ma C.-M., Hong G.-B., Chang T.-C., 2011. Influence of Traffic Flow Patterns on Air Quality inside the Longest Tunnel in Asia. Aerosol and Air Quality Research 11, 44-50.
McCulloch A., 2003. Chloroform in the environment: occurrence, sources, sinks and effects. Chemosphere 50, 1291-1308.
McGaughey G. R., Desai N. R., Allen D. T., Seila R. L., Lonneman W. A., Fraser M. P., Harley R. A., Pollack A. K., Ivy J. M., Price J. H., 2004. Analysis of motor vehicle emissions in a Houston tunnel during the Texas Air Quality Study 2000. Atmospheric Environment 38, 3363-3372.
McGenity T., Timmis K. N., van der Meer J. R., de Lorenzo V., 2009. Handbook of Hydrocarbon and Lipid Microbiology. Springer,
Mudliar S., Giri B., Padoley K., Satpute D., Dixit R., Bhatt P., Pandey R., Juwarkar A., Vaidya A., 2010. Bioreactors for treatment of VOCs and odours – A review. Journal of Environmental Management 91, 1039-1054.
Necki J., Schmidt M., Rozanski K., Zimnoch M., Korus A., Lasa J., Graul R., Levin I., 2011. Six-year record of atmospheric carbon dioxide and methane at a high-altitude mountain site in Poland. Tellus B 55.
Trends in Atmospheric Carbon Dioxide, ESRL/CCGG. http://www.esrl.noaa.gov/gmd/ccgg
Novelli P. C., Collins J. E., Myers R. C., Sachse G. W., Scheel H. E., 1994. Reevaluation of the NOAA/CMDL carbon monoxide reference scale and comparisons with CO reference gases at NASA-Langley and the Fraunhofer Institut. Journal of Geophysical Research: Atmospheres 99, 12833-12839.
Novelli P. C., Elkins J. W., Steele L. P., 1991. The development and evaluation of a gravimetric reference scale for measurements of atmospheric carbon monoxide. Journal of Geophysical Research: Atmospheres 96, 13109-13121.
Ntziachristos L., Samaras Z., 2000. Speed-dependent representative emission factors for catalyst passenger cars and influencing parameters. Atmospheric Environment 34, 4611-4619.
Ou-Yang C.-F., Hsieh H.-C., Wang S.-H., Lin N.-H., Lee C.-T., Sheu G.-R., Wang J.-L., 2013. Influence of Asian continental outflow on the regional background ozone level in northern South China Sea. Atmospheric Environment 78, 144-153.
Ou Yang C.-F., Lin N.-H., Sheu G.-R., Lee C.-T., Wang J.-L., 2012. Seasonal and diurnal variations of ozone at a high-altitude mountain baseline station in East Asia. Atmospheric Environment 46, 279-288.
Ou Yang C.-F., Lin Y.-C., Lin N.-H., Lee C.-T., Sheu G.-R., Kam S.-H., Wang J.-L., 2009. Inter-comparison of three instruments for measuring regional background carbon monoxide. Atmospheric Environment 43, 6449-6453.
Pacifico F., Harrison S. P., Jones C. D., Sitch S., 2009. Isoprene emissions and climate. Atmospheric Environment 43, 6121-6135.
Parra R., Gassó S., Baldasano J. M., 2004. Estimating the biogenic emissions of non-methane volatile organic compounds from the North Western Mediterranean vegetation of Catalonia, Spain. Science of The Total Environment 329, 241-259.
Peng C. M., Lin N. H., Long-range transport of Asian dust: An integrated modeling study. 6th International Aerosol Conference (IAC2002), 2002, pp. 663-664.
Permadi D. A., Kim Oanh N. T., 2013. Assessment of biomass open burning emissions in Indonesia and potential climate forcing impact. Atmospheric Environment 78, 250-258.
Petersen A. K., Warneke T., Frankenberg C., Bergamaschi P., Gerbig C., Notholt J., Buchwitz M., Schneising O., Schrems O., 2010. First ground-based FTIR observations of methane in the inner tropics over several years. Atmospheric Chemistry and Physics 10, 7231-7239.
Peterson J. T., Komhyr W. D., Harris T. B., Waterman L. S., 2011. Atmospheric carbon dioxide measurements at Barrow, Alaska, 1973–1979. Tellus A 34.
Pierson W. R., Gertler A. W., Robinson N. F., Sagebiel J. C., Zielinska B., Bishop G. A., Stedman D. H., Zweidinger R. B., Ray W. D., 1996. Real-world automotive emissions—Summary of studies in the Fort McHenry and Tuscarora mountain tunnels. Atmospheric Environment 30, 2233-2256.
Placet M., Mann C. O., Gilbert R. O., Niefer M. J., 2000. Emissions of ozone precursors from stationary sources:: a critical review. Atmospheric Environment 34, 2183-2204.
Platt S. M., El Haddad I., Zardini A. A., Clairotte M., Astorga C., Wolf R., Slowik J. G., Temime-Roussel B., Marchand N., Ježek I., Drinovec L., Močnik G., Möhler O., Richter R., Barmet P., Bianchi F., Baltensperger U., Prévôt A. S. H., 2012. Secondary organic aerosol formation from gasoline vehicle emissions in a new mobile environmental reaction chamber. Atmospheric Chemistry and Physics Discussion 12, 28343-28383.
Pochanart P., Akimoto H., Kajii Y., Sukasem P., 2003. Carbon monoxide, regional-scale transport, and biomass burning in tropical continental Southeast Asia: Observations in rural Thailand. Journal of Geophysical Research: Atmospheres 108, 4552.
Prinn R. G., Weiss R. F., Fraser P. J., Simmonds P. G., Cunnold D. M., Alyea F. N., O’Doherty S., Salameh P., Miller B. R., Huang J., Wang R. H. J., Hartley D. E., Harth C., Steele L. P., Sturrock G., Midgley P. M., McCulloch A., 2000. A history of chemically and radiatively important gases in air deduced from ALE/GAGE/AGAGE. Journal of Geophysical Research: Atmospheres 105, 17751-17792.
Rella C. W., Chen H., Andrews A. E., Filges A., Gerbig C., Hatakka J., Karion A., Miles N. L., Richardson S. J., Steinbacher M., Sweeney C., Wastine B., Zellweger C., 2013. High accuracy measurements of dry mole fractions of carbon dioxide and methane in humid air. Atmospheric Measurement Technique 6, 837-860.
Richardson S. J., Miles N. L., Davis K. J., Crosson E. R., Rella C. W., Andrews A. E., 2011. Field Testing of Cavity Ring-Down Spectroscopy Analyzers Measuring Carbon Dioxide and Water Vapor. Journal of Atmospheric and Oceanic Technology 29, 397-406.
Ryerson T. B., Trainer M., Holloway J. S., Parrish D. D., Huey L. G., Sueper D. T., Frost G. J., Donnelly S. G., Schauffler S., Atlas E. L., Kuster W. C., Goldan P. D., Hübler G., Meagher J. F., Fehsenfeld F. C., 2001. Observations of Ozone Formation in Power Plant Plumes and Implications for Ozone Control Strategies. Science 292, 719-723.
Sagebiel J. C., Zielinska B., Pierson W. R., Gertler A. W., 1996. Real-world emissions and calculated reactivities of organic species from motor vehicles. Atmospheric Environment 30, 2287-2296.
Sawyer R. F., Harley R. A., Cadle S. H., Norbeck J. M., Slott R., Bravo H. A., 2000. Mobile sources critical review: 1998 NARSTO assessment. Atmospheric Environment 34, 2161-2181.
Schafer J. S., Eck T. F., Holben B. N., Artaxo P., Duarte A. F., 2008. Characterization of the optical properties of atmospheric aerosols in Amazônia from long-term AERONET monitoring (1993–1995 and 1999–2006). Journal of Geophysical Research: Atmospheres 113, D04204.
Seinfeld J. H., 1989. Urban Air Pollution: State of the Science. Science 243, 745-752.
Sheu G.-R., Lin N.-H., Lee C.-T., Wang J.-L., Chuang M.-T., Wang S.-H., Chi K. H., Ou-Yang C.-F., 2013. Distribution of atmospheric mercury in northern Southeast Asia and South China Sea during Dongsha Experiment. Atmospheric Environment 78, 174-183.
Sheu G.-R., Lin N.-H., Wang J.-L., Lee C.-T., Ou Yang C.-F., Wang S.-H., 2010. Temporal distribution and potential sources of atmospheric mercury measured at a high-elevation background station in Taiwan. Atmospheric Environment 44, 2393-2400.
Shindell D., Kuylenstierna J. C. I., Vignati E., van Dingenen R., Amann M., Klimont Z., Anenberg S. C., Muller N., Janssens-Maenhout G., Raes F., Schwartz J., Faluvegi G., Pozzoli L., Kupiainen K., Höglund-Isaksson L., Emberson L., Streets D., Ramanathan V., Hicks K., Oanh N. T. K., Milly G., Williams M., Demkine V., Fowler D., 2012. Simultaneously Mitigating Near-Term Climate Change and Improving Human Health and Food Security. Science 335, 183-189.
Siegenthaler U., Oeschger H., 1987. Biospheric CO2 emissions during the past 200 years reconstructed by deconvolution of ice core data. Tellus B 39B, 140-154.
Soong W.-K., Hung C.-H., Yuan C.-S., Yang H.-Y., 2005. Effects of local atmospheric circulation on the formation of high ozone concentration in confined area-a case study in southern Taiwan. Zhongguo Huanjing Gongcheng Xuekan 15, 163-172.
Staehelin J., Keller C., Stahel W., Schläpfer K., Wunderli S., 1998. Emission factors from road traffic from a tunnel study (Gubrist tunnel, Switzerland). Part III: Results of organic compounds, SO2 and speciation of organic exhaust emission. Atmospheric Environment 32, 999-1009.
Staehelin J., Schläpfer K., Bürgin T., Steinemann U., Schneider S., Brunner D., Bäumle M., Meier M., Zahner C., Keiser S., Stahel W., Keller C., 1995. Emission factors from road traffic from a tunnel study (Gubrist tunnel, Switzerland). Part I: concept and first results. Science of The Total Environment 169, 141-147.
Stemmler K., Bugmann S., Buchmann B., Reimann S., Staehelin J., 2005. Large decrease of VOC emissions of Switzerland’s car fleet during the past decade: results from a highway tunnel study. Atmospheric Environment 39, 1009-1018.
Stockwell W. R., Middleton P., Chang J. S., Tang X., 1990. The second generation regional acid deposition model chemical mechanism for regional air quality modeling. Journal of Geophysical Research: Atmospheres 95, 16343-16367.
Stoeckenius T. E., Ligocki M. P., Shepard S. B., Iwamiya R. K., 1993. Anaysis of PAMS data: application to summer Houston and Baston Rouge data, Draft report prepared by Systems Applications International, San Rafael, CA, SYSAPP 94-95/115d, November.
Thoning K. W., Tans P. P., Komhyr W. D., 1989. Atmospheric carbon dioxide at Mauna Loa Observatory: 2. Analysis of the NOAA GMCC data, 1974–1985. Journal of Geophysical Research: Atmospheres 94, 8549-8565.
Tohjima Y., Kubo M., Minejima C., Mukai H., Tanimoto H., Ganshin A., Maksyutov S., Katsumata K., Machida T., Kita K., 2013. Temporal changes in the emissions of CH4 and CO from China estimated from CH4 / CO2 and CO / CO2 correlations observed at Hateruma Island. Atmospheric Chemistry and Physics Discussion 13, 22893-22930.
Trolier M., White J. W. C., Tans P. P., Masarie K. A., Gemery P. A., 1996. Monitoring the isotopic composition of atmospheric CO2: Measurements from the NOAA Global Air Sampling Network. Journal of Geophysical Research: Atmospheres 101, 25897-25916.
Tsai J.-H., Hsu Y.-C., Yang J.-Y., 2004. The relationship between volatile organic profiles and emission sources in ozone episode region—a case study in Southern Taiwan. Science of The Total Environment 328, 131-142.
Tsai W. Y., Chan L. Y., Blake D. R., Chu K. W., 2006. Vehicular fuel composition and atmospheric emissions in South China: Hong Kong, Macau, Guangzhou, and Zhuhai. Atmospheric Chemistry and Physics 6, 3281-3288.
Tseng K.-H., Wang J.-L., Cheng M.-T., Tsuang B.-J., 2009. Assessing the Relationship between Air Mass Age and Summer Ozone Episodes Based on Photochemical Indices Aerosol and Air Quality Research 9, 149-171.
Tsutsumi Y., Mori K., Ikegami M., Tashiro T., Tsuboi K., 2006. Long-term trends of greenhouse gases in regional and background events observed during 1998–2004 at Yonagunijima located to the east of the Asian continent. Atmospheric Environment 40, 5868-5879.
U.S.EPA, 2001. Health and Environmental Impacts of Ground-Level Ozone. Office of Air and Radiation: , Washington. DC.
USEIA, 2012. Annual Energy Outlook, 2013 "Early Release ”.
Volkamer R., Jimenez J. L., San Martini F., Dzepina K., Zhang Q., Salcedo D., Molina L. T., Worsnop D. R., Molina M. J., 2006. Secondary organic aerosol formation from anthropogenic air pollution: Rapid and higher than expected. Geophysical Research Letters 33, L17811.
Wahl E. H., Fidric B., Rella C. W., Koulikov S., Kharlamov B., Tan S., Kachanov A. A., Richman B. A., Crosson E. R., Paldus B. A., Kalaskar S., Bowling D. R., 2006. Applications of cavity ring-down spectroscopy to high precision isotope ratio measurement of 13C/12C in carbon dioxide. Isotopes in Environmental and Health Studies 42, 21-35.
Wang C., Srivastava N., Jones B. A., Reese R. B., 2008. A novel multiple species ringdown spectrometer for in situ measurements of methane, carbon dioxide, and carbon isotope. Applied Physics B 92, 259-270.
Wang J.-L., Chew C., Chang C.-Y., Liao W.-C., Lung S.-C. C., Chen W.-N., Lee P.-J., Lin P.-H., Chang C.-C., 2013a. Biogenic isoprene in subtropical urban settings and implications for air quality. Atmospheric Environment 79, 369-379.
Wang J.-L., Chew C., Chen S.-W., Kuo S.-R., 2000. Concentration Variability of Anthropogenic Halocarbons and Applications as Internal Reference in Volatile Organic Compound Measurements. Environmental Science and Technology 34, 2243-2248.
Wang J.-L., Wu C.-H., 2002. Construction and validation of a cryogen free gas chromatography-electron-capture detection system for the measurement of ambient halocarbons. Analytica Chimica Acta 461, 85-95.
Wang J. L., Jacobson G., Rella C. W., Chang C. Y., Liu I., Liu W. T., Chew C., Ou-Yang C. F., Liao W. C., Chang C. C., 2013b. Flask sample measurements for CO2, CH4 and CO using cavity ring-down spectrometry. Atmospheric Measurement Technique Discussion 6, 7633-7657.
Wang J. S., Logan J. A., McElroy M. B., Duncan B. N., Megretskaia I. A., Yantosca R. M., 2004. A 3-D model analysis of the slowdown and interannual variability in the methane growth rate from 1988 to 1997. Global Biogeochemical Cycles 18, GB3011.
Wark K., Warner C. F., Davis W. T., 1998. Air pollution: its origin and control., Addison-Wesley.
Winderlich J., Chen H., Gerbig C., Seifert T., Kolle O., Lavrič J. V., Kaiser C., Höfer A., Heimann M., 2010. Continuous low-maintenance CO2/CH4/H2O measurements at the Zotino Tall Tower Observatory (ZOTTO) in Central Siberia. Atmospheric Measurement Technique 3, 1113-1128.
WMO, 2011. Report of the 15th WMO/IAEA Meeting of Experts on Carbon Dioxide, Other Greenhouse Gases and Related Tracers Measurement Techniques, 7-10 September 2009, available at: http://www.wmo.int/pages/prog/arep/gaw/documents/GAW194WMOTDNo1553. 194,
WMO, 2013. WMO Greenhouse Gas Bulletin - The State of Greenhouse Gases in the Atmosphere Based on Global Observations through 2012.
Worthy D. E. J., Chan E., Ishizawa M., Chan D., Poss C., Dlugokencky E. J., Maksyutov S., Levin I., 2009. Decreasing anthropogenic methane emissions in Europe and Siberia inferred from continuous carbon dioxide and methane observations at Alert, Canada. Journal of Geophysical Research: Atmospheres 114, D10301.
Xiao Y., Jacob D. J., Wang J. S., Logan J. A., Palmer P. I., Suntharalingam P., Yantosca R. M., Sachse G. W., Blake D. R., Streets D. G., 2004. Constraints on Asian and European sources of methane from CH4-C2H6-CO correlations in Asian outflow. Journal of Geophysical Research: Atmospheres 109, D15S16.
Xu G., Wang W., 2010. Forecasting China’s natural gas consumption based on a combination model. Journal of Natural Gas Chemistry 19, 493-496.
Yang K.-L., Ting C.-C., Wang J.-L., Wingenter O. W., Chan C.-C., 2005. Diurnal and seasonal cycles of ozone precursors observed from continuous measurement at an urban site in Taiwan. Atmospheric Environment 39, 3221-3230.
Yanowitz J., McCormick R. L., Graboski M. S., 2000. In-Use Emissions from Heavy-Duty Diesel Vehicles. Environmental Science and Technology 34, 729-740.
Yassaa N., Brancaleoni E., Frattoni M., Ciccioli P., 2006. Isomeric analysis of BTEXs in the atmosphere using β-cyclodextrin capillary chromatography coupled with thermal desorption and mass spectrometry. Chemosphere 63, 502-508.
Ying Q., Li J., 2011. Implementation and initial application of the near-explicit Master Chemical Mechanism in the 3D Community Multiscale Air Quality (CMAQ) model. Atmospheric Environment 45, 3244-3256.
Zhu C.-S., Chen C.-C., Cao J.-J., Tsai C.-J., Chou C. C. K., Liu S.-C., Roam G.-D., 2010. Characterization of carbon fractions for atmospheric fine particles and nanoparticles in a highway tunnel. Atmospheric Environment 44, 2668-2673.
Ziemann P. J., Atkinson R., 2012. Kinetics, products, and mechanisms of secondary organic aerosol formation. Chemical Society Reviews 41, 6582-6605.
行政院環保署環境檢驗所, 1994. 空氣中揮發性鹵素碳氫化合物檢驗方法─以Tenax-TA 吸附劑採樣之氣相層析法 NIEA A714.10T.
行政院環保署環境檢驗所, 1997. 排放管道中揮發性有機化合物檢測方法─揮發性有機化合物採樣組裝/氣相層析質譜儀法 NIEA A721.70B. .
行政院環保署環境檢驗所, 2007. 排放管道中 C5-C10 非極性氣態有機物檢測方法─採樣袋採樣/氣相層析質譜分析法 NIEA A734.70B.
行政院環保署環境檢驗所, 2008a. 空氣中揮發性有機化合物檢測方法─不鏽鋼採樣筒/氣相層析質譜儀法. NIEA A715.13B.
行政院環保署環境檢驗所, 2008b. 排放管道中氣態有機化合物檢測方法─採樣袋採樣/氣相火焰離子化偵測法 NIEA A722.74B.
陳怡全, 雪山隧道空氣汙染物實場調查分析. 環境工程研究所. 國立中山大學, 2009.
彭宗仁, 劉滄棽, 林幸助, 2006. 穩定同位素在農業及生態環境上之應用. 台灣農業研究.行政院農業委員會農業試驗所,
劉文治, 以二維氣相層析監測空氣中氟氯碳化物及氫氟氯碳化物. 化學研究所. 國立中央大學, 2008.
歐陽長風, 台灣氣態污染物背景值變化特徵與大氣傳輸機制之關係. 化學研究所. 國立中央大學, 2009.
指導教授 王家麟(Jia-lin Wang) 審核日期 2013-12-20
推文 facebook   plurk   twitter   funp   google   live   udn   HD   myshare   reddit   netvibes   friend   youpush   delicious   baidu   
網路書籤 Google bookmarks   del.icio.us   hemidemi   myshare   

若有論文相關問題,請聯絡國立中央大學圖書館推廣服務組 TEL:(03)422-7151轉57407,或E-mail聯絡  - 隱私權政策聲明