參考文獻 |
[1]陳信安、鄭大偉,「低二氧化碳排放的綠色混凝土開發研究」,2012 清潔生產暨環保技術研討會,經濟部工業局,台灣台北,101 年 10 月 26 日。
[2]杜宗嶽,「永續性再生資源骨材混凝土之研究」,博士論文,國立臺灣科技大學營建工程系,2006年。
[3]行政院環保署,https://www.epa.gov.tw/Page/8514DFCAB3529136。
[4]行政院環保署,一般廢棄物回收清除處理辦法,2021年2月。
[5]經濟部,經濟部事業廢棄物再利用管理辦法,2020年7月。
[6]王怡翔「添加循環式流體化床飛灰及水淬高爐石粉對於混凝土性質影響之研究」,碩士論文,國立台灣海洋大學河海工程研究所,2013年。
[7]蔡孟原,「循環式流體化床焚化爐」,科學發展,450期,p26~32,2010年6月。
[8]台塑石化公司,協助推廣台塑石化石油焦循環硫化床灰(Circulate Fluidzed Bed Combustion Ash,CFBC Ash)(簡稱「混合石膏及副產石灰」)再利用策略及擬定相關施工網要規範或標準可行性座談,2007年。
[9]Kuo, H.-P., H.-Y. Tseng, A.-N. Huang, and R.-C. Hsu, “A study of the ash production behavior of spent limestone powders in CFB”, Advanced Powder Technology, Vol.25, pp.69-77, 2013.
[10]台塑石化公司,副產品「混合石膏及副產飛灰」再利用技術及應用推廣規範評估報告,2005年。
[11]黃偉慶,「副產石灰摻配爐石粉水泥混凝土研究」,台塑石化股份有限公司煉油事業部委託計畫研究期中報告,2008年。
[12]覺輝、王洪升,「循環式流體床脫硫灰渣的特性及應用初探」,國際電力,2004年。
[13]Anthony, E.J., and D.L. Granatstein, “Sulfation phenomena in fluidized bedcombustion systems”, Progress in Energy and Combustion Science, pp.215-236, 2001.
[14]Laursen, K., W. Duo, J.R. Grace, and J. Lim, “Sulfation and reactivation characteristics of nine limestones”, Fuel, Vol.79, pp.153-163, 2000.
[15]T.Sievert, A.Wolter, and N.B.Singh, “Hydration of anhydrite of gypsum (CaSO4.II) in a ball mill”, Cement and Concrete Research, Vol. 35, Issue 4, pp.623-630, 2005.
[16]GuanghongSheng, JianpingZhai, Qin Li, and Feihu Li, “Utilization of fly ash coming from a CFBC boiler co-firing coal and petroleum coke in Portland cement”, Fuel, Vol. 86, Issue 16, pp.2625-2631, 2007.
[17]錢覺時、鄭洪偉、王智、宋遠明、楊娟,「流化床燃煤固硫灰渣活性評定方法」,煤炭學報(Journal of China Coal Society),第31卷,第四期,pp.506-510,2006年。
[18]錢建嵩,「流體化床焚化爐與戴奧辛控制」,科學發展,450期,p26~32,2010年6月。
[19]Chandler, A.J. , Eighmy, T.T. , Hartlén, J. , Hjelmar, O. , Kosson, D.S. , Sawell, S.E. , van der Sloot, H.A., and Vehlow, J. “Municipal solid waste incinerator residues”, Studies in Environmental Science 67, Amsterdam, NL: Elsevier Science B.V., 1997.
[20]Lam, H.K., Ip, W.M., Barford, P., and McKay, G., “Use of incineration MSW ash: a review”, Sustainability, Vol. 2, No. 7, pp.1943-1968, 2010.
[21]Quina, M.J., Bordado, J.C., and Quinta-Ferreira, R.M., “Treatment and use of air pollution control residues from MSW incineration: an overview”, Waste Management, Vol. 28, No. 11, pp.2097-2121, 2008.
[22]Samaras, P., Karagiannidis, A., Kalogirou, E., Themelis, N., Kontrogianni, St., and Perkoulidis, G., “A Systemic approach on characteristics and treatment processes for hazardous wastes: the case of fly-ash from waste-to-energy facilities for municipal solid wastes”, The 18th International Seminar on Interaction of Neutrons with Nuclei, Dubna, Russia, May 26-29, 2010.
[23]J. Pera, L. ,Coutaz , J. Ambroise , and M.Chababbet, “Use of Incineration Bottom Ash in Concrete”, Cement and Concrete Research, Vol. 27, No.1, pp.1-5. 1997.
[24]行政院環境保護署,有害事業廢棄物認定標準,2020年。
[25]林宸毅,「鍋爐衍生灰渣特性分析及再利用於混凝土製品之實驗評估」,碩士論文,國立中央大學土木工程學系,2020年。
[26]台灣電力公司,https://www.taipower.com.tw/TC/page.aspx?mid=216&cid=169&cchk=0e5c6c12-2e67-4350-980d-5cc312ce43da。
[27]Rejini Rajamma, Richard J.Ball, Luís A.C. Tarelho, Geoff C.Allen, João A.Labrincha, and Victor M.Ferreira, “Characterisation and use of biomass fly ash in cement-based materials”, Journal of Hazardous Materials, Vol. 172, Issues 2-3, pp.1049-1060, 2009.
[28]Tarun R. Naik, Rudolph N. Kraus, and Rafat Siddique, “Controlled Low-Strength Materials Containing Mixtures of Coal Ash and New Pozzolanic Material”, Materials Journal, Vol.100, Issue 3, pp.208-215, 2003.
[29]How-Ji Chen, Ying-Chih Hsueh, Ching-Fang Peng, and Chao-Wei Tang, “Paper Sludge Reuse in Lightweight Aggregates Manufacturing”, Materials, vol. 9, no.876, pp.1-9, 2016.
[30]Frías, M., Rodríguez, O.; Sánchez de Rojas, and M.I., “Paper Sludge, an Environmentally Sound Alternative Source of MK-based Cementitious Materials. A review”, Construction and Building Materials, Vol. 74, pp.37–48, 2015.
[31]Gluth, J.G.G., Lehmann, C.; Rübner K., and Kühne H. “Reaction Products and Strength Development of Wastepaper Sludge Ash and the Influence of Alkalis”, Cement & Concrete Composites, Vol. 45, pp.82-88, 2014.
[32]García, R.; Vigil de la Villa, R., Vegas, I.; Frías, M.; Sánchez de Rojas, and M.I. “The Pozzolanic Properties of Paper Sludge Waste”, Construction and Building Materials, Vol. 22, pp.1484-1490, 2008.
[33]M.Cyr, R.Idir, and G.Escadeillas, “Use of metakaolin to stabilize sewage sludge ash and municipal solid waste incineration fly ash in cement-based materials”, Journal of Hazardous Materials, Vol. 243, pp.193-203, 2012.
[34]Ngoc KienBui, Tomoaki Satomi, and Hiroshi Takahashi, “Influence of industrial by-products and waste paper sludge ash on properties of recycled aggregate concrete”, Journal of Cleaner Production, Vol. 214, pp.403-418, 2019.
[35]Jubal D. Hamernik, and Gregory C. Frantz, “Strength of Concrete Containing Municipal Solid Waste Fly Ash (SP-105)”, American Concrete Institute, Vol. 88, Issue 5, pp.508-517, 1991.
[36]Hamernik, J.D., and Frantz, G. C., “Physical and Chemical Properties of Municipal Solid Waste Fly Ash”, ACI Materials Journal, 88(3), 294, 1991.
[37]M. Abdullahi, “Characteristics of wood ash/OPC concrete”, Leonardo Electronic Journal of Practices and Technologies 8, pp.9-16, 2006.
[38]Naik, T.R., Kraus, R.N., and Siddique, R., “Controlled Low Strength Materials Containing Mixtures of Coal Ash and New Pozzolanic Material”, ACI Material Journal, Issue 100, pp.208-215, 2003.
[39]J.Cuenca, J.Rodríguez, M.Martín-Morales, Z.Sánchez-Roldán, and M.Zamorano, “Effects of olive residue biomass fly ash as filler in self-compacting concrete”, Construction and Building Materials, Vol. 40, pp.702-709, 2013.
[40]A.U. Ellinwa, and Y.A. Mahmoodm, “Ash from timber waste as cement replacement material”, Cement and Concrete Composites, Vol. 24, Issue 2, pp.219-222, 2002.
[41]Udoeyo, Felix F, Inyang, Hilary I, Young, David T, Oparadu, and Edmund E, “Potential of Wood Waste Ash as an Additive in Concrete”, Journal of Materials in Civil Engineering, Vol. 18, Issue 4, pp.605-611, 2006.
[42]江少鋒,「都市垃圾焚化灰燼作為水泥混凝土細骨材之可行性」,碩士論文,國立中央大學土木工程研究所,1995年。
[43]S. E. Sawell, T W Constable, and Raymond K Klicius, “The national incinerator testing and evaluation program: Characterization of residues from a modular municipal waste incinerator”, International conference on municipal waste Combustion, Vol. 2, pp.2B-45-62, 1989.
[44]Rosmadi Abdul Rashid, and Gregory C. Frantz, “MSW Incinerator Ash as Aggregate in Concrete and Masonry”, Journal of Materials in Civil Engineering, Vol. 4, Issue 4, pp.353-368, 1992.
[45]陳怡伶,「都市垃圾焚化底渣於管溝回填應用之探討」,碩士論文,中華大學土木工程學系碩士班,2006年。
[46]李釗、江少鋒、郭文田、Lee, Chau、Cheng, Shau-fong、Kuo, Wen-ten 「垃圾焚化灰渣作為混凝土細骨材之可行性研究」,中國環境工程學刊,7:3卷(民86),pp.289-296。
[47]G. Pecqueur, C. Crignon, and B. Quénée, “Behaviour of cement-treated MSWI bottom ash”, Waste Management, Vol. 21, Issue 3, pp.229-233, 2001.
[48]林育丞,「垃圾焚化底渣與水泥拌合後之潛在問題探討」,碩士論文,國立中央大學土木工程研究所,2003年。
[49]Carlton C.Wiles, “Municipal solid waste combustion ash: State-of-the-knowledge”, Journal of Hazardous Materials, Vol. 47, Issues 1–3, pp.325-344, 1996.
[50]張坤森、邱孔濱、陳麗萍、潘志明、鍾日熙,「垃圾焚化飛灰特性、處理再利用技術、法規與未來展望」,環境工程會刊,第23卷第2期,2012年5月。
[51]Vavva, C., Voutsas, E., Samaras, P., and Tassios, D., “Environmental management of APC residues produced from the incineration of municipal waste with energy recovery”, CEMEPE 09 & SECOTOX Conference, Mykonos, Greece, June 21–26, 2009.
[52]張子敬,「赴新加坡參訪填海造島設施」出國報告,2011年。
[53]Scharff, H., “Bottom ash and fly ash disposal”, Workshop Implementation of the Landfill Directive, Tallinn, Estonia, May 15, 2009.
[54]行政院公共工程委員會,「第03377章v6.0 控制性低強度回填材料施工規範」,控制性低強度回填材料施工規範,2013年。
[55]許鎧麟,「新拌CLSM性質」,高性能回填材料(CLSM)產製,台灣營建研究院,2000年。
[56]ACI committee 229R-99,“Controlled Low Strength Materials (CLSM)”, ACI Manual of Concrete Practice, Part I, American Concrete Institute, Farmington Hills, MI‚ 1999.
[57]潘昌林,CLSM配比及產製技術,載自潘昌林主編高性能回填材料(CLSM)產製,台北縣:台灣營建研究院,pp.33-50,2002年。
[58]高長義,「經熱處理之污泥灰渣再利用於CLSM材料之可行性研究」,碩士論文,國立成功大學資源工程學系,2015年。
[59]ACI 229R-99, “Controlled Low-Strength Materials”, 1999&2005.
[60]房性中,「控制性低強度材料使用成效之探討」,技師報,第755期,pp.4-6,2011。
[61]洪斌修,「台灣中部明潭水庫淤積土再生利用之研究」,碩士論文,朝陽科技大學營建管理系,2014年。
[62]林義翔,「花崗岩礦泥製作控制性低強度材料與高性能混凝土之探討」,碩士論文,國立台灣科技大學營建工程系,2008年。
[63]柴希文、謝佩昌,「CLSM材料簡介」,高性能回填材料(CLSM)產製,台灣營建研究院,2001年。
[64]陳本霖,「石材廢泥應用於控制性低強度材料之研究」,碩士論文,大漢技術學院土木工程與環境資源管理系,2014年。
[65]鄭瑞濱,「新拌及硬固CLSM材料試驗」,高性能回填材料(CLSM)產製,台灣營建研究院,2000年。
[66]王世賢,「焚化爐底渣及廢混凝土塊應用於控制性低強度材料工程與環境效益評估之研究」,碩士論文,國立中央大學土木工程學系,2005年。
[67]行政院公共工程委員會,「控制性低強度回填材料」,施工綱要規範第03377章V7.0,2016年。
[68]台灣電力公司,「管路工程施工規範」,第03377A章, 2018。
[69]交通部,「控制性低強度回填材料」,公路工程施工規範第03377章,2013年。
[70]交通部公路總局,「交通部公路總局受理挖掘公路作業程序手冊」,2017年8月。
[71]交通部臺灣區國道新建工程局,「公路工程施工規範」,2013年。
[72]Amer Ali Al-Rawas, Abdel Wahid Hago, Ramzi Taha, and Khalid Al-Kharousi, “Use of incinerator ash as a replacement for cement and sand in cement mortars”, Building and Environment, Vol. 40, Issue 9, pp.1261-1266, 2005.
[73]Rushan Bie, Pei Chen, Xingfei Song, and Xiaoyu Ji, “Characteristics of municipal solid waste incineration fly ash with cement solidification treatment”, Journal of the Energy Institute, Vol. 89, Issue 4, pp.704-712, 2016.
[74]Thuy Bich Thi Nguyen, Warangkana Saengsoy, and Somnuk Tangtermsirikul, “Effect of initial moisture of wet fly ash on the workability and compressive strength of mortar and concrete”, Construction and Building Materials, Vol. 183, pp.408-416, 2018.
[75]Hao Wu, Baoshan Huang, Xiang Shu, and Jian Yin, “Utilization of solid wastes/byproducts from paper mills in Controlled Low Strength Material (CLSM)”, Construction and Building Materials, Vol. 118, pp.155-163, 2016.
[76]劉邦龍,「爐碴作為混凝土細粒料的膨脹安定化方法及檢測技術研究」,國立中央大學土木工程學系,碩士論文,2013年。
[77]林喻峰,「應用非破壞檢測技術評估以野溪淤積土製作之混凝土強度」,行政院農業委員會水土保持局,成果報告書,2017年6月。
[78]亞東預拌混凝土股份有限公司,https://www.yatung.com.tw/tw/product/knowledge.aspx?id=3。
[79]J. Francis Young, Sidney Francis Mindess, and David Darwin, “Concrete”, America, Prentice Hall, 2003. |