參考文獻
1.王雅慧,「提升混凝沈澱對有機物之去除:生物濾床前處理之影響」,碩士論文,國立交通大學環境工程研究所,新竹(2001)。2.王鑫華、陳建林、楊凱、李啟良,「二氧化氯催化氧化處理染料廢水的研究」,中國教育文摘,(2007)。
3.朱琨、陳慧,「純二氧化氯的穩定性及常規條件下儲存方法研究」,蘭州交通大學環境及市政工程學院、西北師範大學化學化工學院。
4.行政院環保署,「93年環境保護統計年報」,台北(2004)
5.吳俊哲,「臭氧、過氧化氫、氯胺等替代消毒劑消毒效能及消毒副產物生之研究」,台灣省自來水公司期末報告(2001)。
6.林世豪,「二氧化氯結合傳統淨水程序對有機物之控制研究-模廠試驗」,碩士論文,逢甲大學環境工程與科學研究所,台中(2004)。7.林政剛,「垃圾掩埋場滲出水量估算模式適用性之研究」,第十三屆廢棄物處理技術研討會論文集,第539-547頁(1998)。
8.徐惠伶等,「從混凝行為探討硫酸鋁與有機物反應機制之研究」,碩士論文,國立交通大學環境工程研究所,新竹(1995)。9.高思懷、周錦東,「都市垃圾與焚化灰渣共同掩埋之模場研究」,第七屆廢棄物處理技術研討會論文集(1992)。
10.高思懷、徐孟頫,「準好氧性掩埋及其滲出水返送之模廠研究」,第十三屆廢棄物處理技術研討會論文集,第500-507頁(1998)。
11.高維德,「厭氣濾床法處理垃圾滲出水之研究」,碩士論文,國立成功大學環境工程研究所,臺南(1986)。12.張志成,「垃圾滲出水之化學及活性污泥處理」,碩士論文,元智大學化學工程學系,中壢(1999)。13.張詮、張殷全、植雪芬、梁錦珠,「二氧化氯對有機污染物的消除」,廣州大學生物與化學工程學院,廣州。
14.梁孝文,「前氧化劑對混凝作用去除有機物之影響」,碩士論文,國立台灣大學環境工程研究所,臺北(1996)。
15.陳治生,「臺北市山豬窟垃圾衛生掩埋場問題探討」,碩士論文,國立台灣海洋大學河海工程研究所,基隆(1993)。16.陳俊哲,「不同混凝劑對原水濁度去除效能之評估及生物率床前處理之影響」,碩士論文,國立交通大學環境工程研究所,新竹(1999)。17.陳咸享、胡文德,「垃圾之衛生掩埋」,科學月刊,第204期(1986)。
18.陳姝樺,「以二氧化氯為前氧化劑對淨水混沉之影響探討」,碩士論文,逢甲大學環境工程與科學研究所,台中(2003)。19.傅祖營,「灰渣衛生掩埋場對環境影響之探討-以台中市衛生掩埋場為例」,碩士論文,朝陽科技大學環境工程與管理研究所,霧峰(1995)。20.傅崇德,「垃圾滲出水中難分解有機物處理程序之研究」,碩士論文,國立成功大學環境工程研究所,臺南(1989)21.賀啟環、方華、高蓉菁、王瓊,「二氧化氯催化氧化處理難降解廢水技術的研究」,環境污染治理技術與設備,第11期(2003)。
22.黃汝常等,「灣地區垃圾掩埋場滲出水各階段管制方式」,行政院環保署研究報告,臺北(1989)。
23.黃志彬,「提升傳統淨水處理程序效能之研究-鳳山場內模型廠試驗研究」,第一年計畫,台灣省自來水公司期末報告(2002)。
24.楊國卿,「印刷電路板業廢水處理系統化學混凝效能提升之研究」,碩士論文,國立中央大學環境工程研究所,中壢(1996)。25.萬騰州、楊銀杉,「台灣地區垃圾衛生掩埋場滲出水處理廠現況探討」,工業污染防治,Vol.85,pp.24-41(2003)。26.葉宣顯,「預氯-混凝程序中有機物變動之研究」,國科會專題研究報告(1995)。
27.劉訓瑜,「化學機械研磨廢水混凝沉澱效能之評估」,碩士論文,國立交通大學環境工程研究所,新竹(2000)。28.樊國恕,「循環法處理垃圾滲出水」,中國土木水利學會第二屆固體廢棄物處理技術研討會論文集,臺北(1987)。
29.歐陽嶠暉,「有效防治台灣地區水污染訂定合理放流水標準之研究-垃圾衛生掩埋場滲出水」,行政院環境保護署期中報告(1990).
30.歐陽嶠暉,謝燕儒,「垃圾滲出水與都市污水廠出沉污泥合併厭氧消化可行性研究」,中華民國環境工程學會第十二屆廢水處理技術研討會論文集(1987).
31.蔣立中,「污染物電解氧化破壞去除行為之研究」,博士論文,國立成功大學環境工程研究所,臺南(1996)。32.蔡清讚、李錦樟、商文麟、陳秋楊,「電化學膠凝法處理垃圾滲出水之研究」,第十七屆廢水處理技術研討會論文集,第859-870頁,中壢(1992)。
33.鄭文伯,「多元性與單核性鐵鹽混凝劑對腐植酸混凝機構比較」,第二十五屆廢水研討會(2000)。
34.鄭文伯,「多元硫酸鐵混凝劑之製備與其在水處理上之應用」,第十五屆自來水研討會(1998)。
35.謝錦松、黃正義,固體廢棄物處理,淑馨出版社,臺北(1997)。
36.羅煌木、廖元龍、陳俊霖、蔡晏、曾明祥、劉佳煒、蘇銘顥,「飛灰與爐石於垃圾掩埋場之酸中和能力行為」,朝陽科技大學環境工程與管理系,霧峰(2004)。
37.Adin, A., Soffer, Y. and Ben, A. R. “Effluent Pretreatment by Iron Coagulation Applying Various Dose-pH Combinations for Optimumparticle Separation,” Wat. Sci. Tech., Vol. 38, No. 6, pp.27-34(1998).
38.Aieta, E. M., Roberts, P. V., “Application of mass transfer theory to the kinetics of a fast gas-liquid reaction: chlorine hydrolysis, ” Envir. Sci. & Technol., 20:1:44(1986).
39.Al-Yaqout, A. F., and Hamoda, M. F., “Evaluation of Landfill Leachate in Arid Climate – a Case Study,” Environment International, Vol. 29, pp.593-600(2003).
40.Amirtharagjah, A. and O’Melia, C. R. “Coagulation and Flocculation,” Chap 6 in Water Quality and Treatment. 5th Ed., McGraw-Hill,New York(1999).
41.Amokrane, A., Comel, C., and Veron, J., “Landfill Leachate Pretreatment by Coagulation-Flocculation,” Water Research, Vol. 31, No. 11, pp.2775-2782(1997).
42.APHA, AWWA, WPCF, “Standard methods for the examination of water and wastewater,” 19th ed(1995).
43.Bae, J. H., Keun, S. K., and Chang, H. S., “Treatment of Landfill Leachates: Ammonia Removal via Nitrification and Denitrification and Further COD Reduction via Fenton’s Treatment Followed by Activated Sludge,” Water Science and Technology, Vol. 36, No. 12, pp.341-348(1997).
44.Benschoten, J. E. and Edzwald, J. K. “Chemical Aspects of Coagulation Using Aluminum Salts-I. Hydrolytic Reactions of Alum and Polyaluminum Chloride,” Wat. Res., Vol. 24, No. 12, pp.1519-1526(1990).
45.Bilstad, T. and Madl, M. V., “Leachate Minimization by Reverse Osmosis,” Water Science and Technology, Vol25, No. 3, pp.117-120(1992).
46.Boyle and Ham, “Chemical Treatment of Leachate from Senitary Landfills,” Journal of Water Pollution Control Federation, 46, pp. 1776-1791(1976).
47.Calace, N. and Petronio B. M., “Characterization of High Molecular Weight Organic Compounds in Landfill Leachate: Humic Substances,” Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances & Environmental Engineering, Vol. 32, No. 8, pp.2229-2244(1997).
48.Cheremisinoff P.N and Gigliello, K.A., “Leachate from hazardous wastes sites,” chapter 2, pp. 5-25(1983).
49.Chian, E. S. and DeWalle, F. B., “Evaluation of Leachate Treatment Volume Ⅱ : Biological and Physical-Chemical Process,” EPA-600/2-77-186b, Cincinnati. Ohio(1977).
50.Chian, E. S. K. and DeWalle, F. B., “Sanitary Landfill Leachates and Their Treatment,” Journal of Environmental Engineering Division, Vol. 102, pp.411-434(1976).
51.Chiang, L. C., Chang J. E. and Wen T. C., “Indirect Oxidation Effect in Electrochemical Oxidation Treatment of Landfill Leachate,” Water Research, Vol. 29, No.2, pp.671-678(1995).
52.Cook, E.N., and Foree, E.G., “Aerobic Biostabilization of Sanitary Landfill Leachate,” Journal of Water Pollution Control Federation, 46, p. 380(1974).
53.Dentel, S. K. and Gossett, J. M. “Mechanisms of Coagulation with Aluminum Salts,” J. AWWA., Vol. 80, No. 4, pp.187-197(1988).
54.Diamadopoulos, E., “Characterization and Treatment of Recirculation-Stabilized Leachate,” Water Research, Vol. 28, No. 12, pp.2439-2445(1994).
55.Edwards, M., Benjamin, M. M. and Tobiason, J. E. “Effects of Ozonation on Coagulation of NOM Using Polymer Alone and Polymer/Metal Salt Mixtures,” J. AWWA., Vol. 86, No. 1, pp.105-116(1994).
56.Edzwald, J. K., Bottero, J. Y., Ives, K. J. and Klute R. “Particle Alteration and Particle Production Processes,” Treatment Process Selection for Partivle Removal(1998).
57.Edzwalk, J. K. “Coagulation in Drinking Water Treatment:Particles, Organics and Coagulants,” Wat. Sci. Tech., Vol. 27, No. 11, pp.21-35(1993).
58.Eleazer, W. E., Odle, W. S., Wang, Y. S. and Barlaz, M. A. ”Biodegard ability of municipal solid waste components in laboratory-scale landfills,” Environmental Science and Technology 31(3), pp. 911-917(1997).
59.Fatta, D., Voscos C., Papadopoulos A. and Loizidou M., “Leachate Quality of a MSW Landfill,” Journal of Environmental Science and Health, Part A: Toxic/Hazardous Substances & Environmental Engineering, Vol. 33, No. 5, pp.749-763(1998).
60.Forgie, D. J. L., “Selection of the Most Appropriate Leachate Treatment Methods Part1 :A Review of Potential Biological Leachate Treatment Methods, ” Water Pollution Research Journal of Canada, 23, pp. 308-328(1988a).
61.Forgie, D. J. L., “Selection of the Most Appropriate Leachate Treatment Methods Part3 :A decision Model for the Treatment Train Selection,” Water Pollution Research Journal of Canada, 23, pp. 335-341(1988b).
62.Haag, W. R. and Hoigne, J. “Ozonation of Bromide-Containing Waters: Kinetics of Formation of Hyoromous Acids and Bromate,” Env. Sci. Tech. Vol. 23, NO. 7, pp.838(1983).
63.Hagerty, D. J., Pavoni, J. L., Heer, J. E. Soild waste management, New York, NY, John Wiley & Sons(1973).
64.Henry, J. G., Prasad, O., Sidhwa, R. and Hilgerdenaar, M., “Treatment of Landfill Leachates by Anaerobic Fillter Part1 Laboratory Studies,” Water Pollution Research Journal of Canada, 17, pp. 37-46(1982).
65.Hjelmar, O., “Disposal Strategies for Municipal Solid Waste Incineration Residues,” Journal of Hazardous Materials, Vol. 47, No. 1-3, pp.345-368(1996).
66.Huble, R. E., and Edzwald, J. K., “Removing Trihalomethane Precursors by Coagulation,” J. AWWA., Vol. 79, No. 7, pp.98-106(1987).
67.Imai, A., Onuma, K., Inamor, Y., and Sudo, R., “Biodegradation and Adsorption in Refractory Leachate Treatment by The Biological Activated Carbon Fluidized Bed Process,” Water Research, 29, pp. 687-694(1995).
68.Iwami, N., Imai, A., Inamori, Y., and Sudo, R., “Treatment of A Landfill Leachate Containing Refractory Organics and Ammonium Nitrogen by The Microorganism-attached Activated Carbon Fluidized Bed Process,” Water Science and Technology, pp. 1999-2002(1992).
69.Jiang, J. Q., and Graham, N. J. D., “Observations of the Comparative Hydrolysis/Precipitation Behavior of Polyferric Sulfate and Ferric Sulfate,” Wat. Sci. Tech., Vol. 32, No. 3, pp.930-935(1998).
70.Kenneth, L. C., Jeffery M., and Lauria P.E., “Ashfills and Leachate,” Waste Age, Vol. 17, No. 11, pp.82-88(1986).
71.Kettunen, R. H., Hoilijoki, T. H., and Rintala, J. A., “Anaerobic and Sequential Anaerobic-aerobic Treatments of Municipal Landfill Leachate at Low Temperatures,” Bioresource Technology, 58, pp. 31-40(1996).
72.Kjeldsen, P. A., Grundtvig P., Winther, J., and Andersen, S., “Characterization of an Old Municipal Landfill(Grindsted,Denmark)as a Groundwater Pollution Source: Landfill History and Leachate Composition,” Waste Management Research, Vol. 16, No. 1, pp.3-13(1998).
73.Knocke, W. R., Shornet, H. L., and Bellamy, J. D., “Examining the Reactions Between Soluble Iorn, DOC and Alternative Oxidants During Conventional Treatment,” J. AWWA., Vol. 86, NO. 1, pp.11-127(1994).
74.Lo, M. C., “Characteristics and Treatment of Leachate from Domestic Landfills,” Environment International, Vol. 22, No. 4, pp.433-442(1996).
75.Lytwynyshyn, G. R., Zimmerman, R. E., and Flynn, N. W., Wingender, R., and Olivieri, “V., Landfill methane recovery part II:gas characterization,” Technical Report, Argonne nationall laboratory, Argonne Illinois, ANL-CNSV-TM-118(1982).
76.Maris, P. J., Harrington D. W., and Mosey, F. E., “Treatment of Landfill Leachates: Management Options,” Water Pollution Research Journal of Canada, 20, pp. 25-42(1985).
77.Masschelein, W. J., “Experience with chlorine dioxide in brussels: generation of chlorine dioxide,” Jourmal AWWA Research & Technology, pp. 70-76(1984).
78.Monje-Ramirez. I., M. T., and Velasquez, O. d., “Removal and transformation of recalcitrant organic matter from stabilized saline landfill leachates by coagulation-ozonation coupling processes,” Water Research, Vol. 38, pp.2359-2367(2004).
79.Mouchet, P., and Bonnelye, V., “Solving Algae Problems : French Expertise and Word-wide Application,” J. Water SRT Aqua., Vol. 47, NO. 3, pp.125-141(1998).
80.Peterson, H. G., “Physiological Toxicity, Cell Membrane Damage and the Release of Dissolved Organic Carbon and Geosmin by Aphanizomenon Flocs-aquae after Explore to Water Treatment Chemicals,” Wat. Res., Vol. 29, NO. 6, pp.1515-1523(1995).
81.Pirbazari, M., Ravindran, V., Badriyha, B. N., and Kim, S. H., “Hybrid Membrane Filtration Process for Leachate Treatment,” Water Research, Vol. 30, No. 11, pp.2691-2706(1996).
82.Rebhun, M., and Lurie, M., “Coagulation of Organic Color with Hydrolyzing Coagulant,” Wat. Sci. Tech., Vol. 27, No. 11, pp.1-20(1993).
83.Salvato, J. A., “Sanitary Landfill-Leaching Prevention and Control,” Jouranl of WPCF, Vol. 43, pp.2084-2100(1971).
84.Stegmann, R., “Landfill Water Balance: Third Internation Symposim on Anaerobic Digestion,” Vol. 99, pp.171-183(1983).
85.Tatsi, A. A., Zouboulis, A. I., Matis, K. A., and Samaras, P., “Coagulation-Flocculation pretreatment of sanitary landfill leachate,” Chemosphere, Vol. 53, Issue: 7, pp.737-744(2003).
86.Tatsi, A. A., and Zouboulis, A. I., “AField Investigation of the Quantity and Quality of Leachate from a Municipal Solid Waste Landfill in a Mediterranean Climate,” Advances in Environmental Research, Vol. 6, pp.207-219(2002).
87.Timur, H., and Ozturk, I., “Anaerobic Treatment of Leachate Using Sequencing Batch Reactor and Hybrid Bed Filter,” Water Science and Tchnology, Vol. 36, No. 6-7, pp.501-508(1997).
88.Trebouet, D., Schlumpf, J. P., Jaouen, P., and Quemeneur, F., “Stabilized landfill leachate treatment by combined physicochemical nanofiltration processes,” Water Resource, pp. 2935-2942(2001).
89.Urase. T, M. Salequzzaman, S. Kobayashi, T. Matsuo, K. Yamamoto and N. Suzuki, “Effect of high concentration of organic and inorganic matters in landfill leachate on the treatment of heavy metals in very low concentration level,” Wat. Sci. Tec. Vol. 36, No. 12, pp.349-356(1997).
90.Van Benschoten, J. E., and Edzwald, J. K., “Effects of Temperature and pH on Residual Aluminum for Alum and Polyaluminum Coagulants,” Wat. Supply., No. 4, pp.10(1990).
91.Visvanathan, C., Muttamara, S., and Babel, S., “Treatment of Landfill Leachate by Crossflow Microfiltration and Ozonation,” Separation Science and Technology, Vol. 29, No. 3, pp.315-332(1994).
92.Vrijenhoek, E. M., Childress, A. E., Elimelech, M., Tanaka, T. S. and Beuhler, M. D. “Removing Particles and THM Precursors by Enhanced Coagulation,” J. AWWA., Vol. 90, No. 4, pp.139-150(1998).
93.Wang, Z, Zhang, Z., Lin, Y., Deng, N., Tao, T., and Zhuo, K., “Landfill leachate treatment by a coagulation-photooxidation process,” Journal of Hazardous Materials Vol. 95, Issue: 1-2, pp.153-159(2002).
94.Welander, U., Henrysson, T., and Welander, T., “Biological Nitrogen Removal from Municipal Landfill Leachate in a Pilot Scale Suspended Carrier Biofilm Process,” Water Research, Vol. 32, No. 5, pp.1564-1570(1998).
95.Wu, Y. E., “Treatment of Leachate from a Solid Waste Landfill Site Using a Two-Stage Anaerobic Filter,” Biotechnology and Bioengineering, 31, pp. 257-266(1988).