Arickx, S;Van Gerven, T;Vandecasteele, C, “Accelerated carbonation for treatment of MSWI bottom ash”, Journal of Hazardous Materials B137 235–243,2006.
Brunner, Bridle, T. L., P. L. Coto, T. W. Constable, and J. L. Fraser, “Evaluation of Heavy Metal Leachability from Solid Wastes”, Water Science and Technology, v19, n5-6, pp.1029-1036, 1987. P.H.,and Hermann Monch,“ The Flux of Metals Through Municipal Solid Waste Incinerators”, Waste Management&Research, No.4, pp.105-119, 1986.
Buchholz, B.A., Landsberger, S. 1995. Leaching Dynamics Studies of Municipial Solid Waste Incinerator Ash. Journal of the Air & Waste Management Association, 45, 579-590.
Chimenos, J.M., Segarra, M., Fernandez, M.A., Espiell, F. 1999. Characterization of the Bottom Ash in Municipal Solid Waste Incinerator. Journal of Hazardous Material, 64, 211-222.
Clifford, Y.T., Chen, W.R., Shin, S.M., 2005, “Factors Affecting Wollastonite Carbonation under CO2 Supercritical Conditions”, American Institute of Chemical Engineers , Vol. 52, pp. 292-299.
Fernandez, B.M., Simons, S.J.R., Hills, C.D., Carey, P.J., 2004, “A review of accelerated carbonation technology in the treatment of cement-based materials and sequestration of CO2”, Journal of Hazardous Materials, Vol.112, pp. 193–205.
Izquierdo, M., et al. 2008. “ Comparison between laboratory and field leachability of MSWI bottom ash as a road material ”.Science of The Total Environment 389(1): 10-19.
Ito,R., G. Dodbiba, T. Fujita, J.W. Ahn “ Removal of insoluble chloride from bottom ash for recycling”. Waste Management 28 (2008) 1317–1323
Jeng, W. C. and S. H. Gau, “Influence of Ligands on Metals Leachability from Landfilling Bottom Ashes”, Journal of Hazardous Materials, v58, pp. 59-71, 1998.
Johnson, C. A., M. Kersten, F. Ziegler and H. C. Moor, “Leaching Behaviour and Solubility Controlling Solid Phases of Heavy Metals in Municipal Solid Waste Incinerator Ash”, Waste Management, v16, Nos 1-3, pp. 129-134, 1996.
Kida, A., Noma, Y., Imada, T. 1996. Chemical speciation and leaching properties of elements in municipal incinerator ashes. Waste Management, 6, 527-536.
Kersten M., “Speciation of trace metals in leachate from a MSWI bottom ash landfill”, Applied Geochemistry, Vol. 12, pp.675-683, 1997
Ukwattage, N. L.,Ranjith, P. G.Wang, S. H. (2013). "Investigation of the potential of coal combustion fly ash for mineral sequestration of CO2 by accelerated carbonation." Energy 52: 230-236.
Pera, J., Coutaz, L., Ambroise, J. and Chababbet, M., 1997. Use of incinerator bottom ash in concrete. Cement and Concrete Research, 27(1), 1-5.Reimann, D.O.,“ Heavy Metals in Domestic Refuse and Their Distribution in Incinerator Residues”, Waste Management & Research, pp.57-62, 1989.
Rafael M. Santos , Gilles Mertens, Muhammad Salman , Ozlem Cizer,
Tom Van Gerven “Comparative study of ageing, heat treatment and accelerated carbonation for stabilization of municipal solid waste incinerationbottom ash in view of reducing regulated heavy metal/metalloidleaching”, Journal of Hazardous Material, 128(2013), 807-821.
S.V. Krivovichev and P.C. Burns, "Crystal chemistry of basic lead carbonates. II. Crystal structure of synthetic ''plumbonacrite''." Mineralogical Magazine, 64(6), p. 1069-1075, December 2000.
Schreurs, J. P. G. M., et al. 2000. "Verification of laboratory–field leaching behavior of coal fly ash and MSWI bottom ash as a road base material." Waste Management 20(2–3): 193-201.
Suryavanshi, A.K., Swamy, R.N., 1996. “ Stability of Friedel’s salt in carbonated concrete structural elements”. Cement and Concrete Research 26 (5), 729–741.
Shim, Y.S., Kim, Y.K., Kong, S.H., Rhee, S.W., Lee, W.K. 2003. The adsorption characteristics of heavy metals by various particle sizes of MSWI bottom ash. Waste Managerment, 23, 851-857.
Stanley E. Manahan. Environment Chemistry. Eight edition,61-65.(2004)
Wiles, C.C. 1996. Municipal Solid Waste Combustion Ash:State-of the-knowledge. Journal of Hazardous Materials, 47, 325-344.
O’Connor, W. K. D. C. Dahlin, D. N. Nilsen, R. P. Walters, P. C. Turner, Carbon Dioxide Sequestration by Direct Mineral Carbonation with Carbonic Acid, Proceedings of the 25th International Technical Conference on Coal Utilization and Fuel Systems. Clearwater, Florida, 2000.
University of Rhode Island. Solubility Product Constants near 25℃.
行政院環境保護署,101年公告修正「一般廢棄物-垃圾焚化廠焚化底渣再利用管理方式」。
行政院環保署,全國水質監測資訊網-相關詞彙及定義。
台灣水科技網,水化學與水質分析,2009。
楊萬發,陳宗賓,「垃圾焚化灰燼特性分析及其處置方式之特探討(II)」,行政院國家科學委員會補助專題研究計劃,1991。
章裕民、邱嘉川、陳政緯、鄭鴻列,「大型垃圾焚化爐爐溫對灰渣中重金屬分佈特性影響之研究—實廠案例」,第十九屆廢棄物處理技術研討會論文集,2004。
楊金鐘、吳裕民,「垃圾焚化灰渣穩定化產物再利用可行性之探討」,一般廢棄物焚化灰渣資源化技術與實務研討會論文集,第43~57頁,1996。
高思懷、王鯤生,「垃圾焚化灰渣利用之研發建制及推廣計劃-第一年」,行政院環保署專題計劃,計劃編號:EPA-87-E3H1-03-01,1998。
王鯤生,江康鈺,葉宗智,林仕敏,「都市垃圾焚化灰渣重金屬物種分析與溶出特性之研究」,第十一屆廢棄物處理技術研討會論文集,第68~76頁,1996。
張一岑,有害廢棄物焚化技術,1991。
高思懷、李昌煥,「都市垃圾灰渣掩埋過程重金屬之釋放趨勢以及氯鹽對其溶出之影響」,第九屆廢棄物處理技術研討會論文集,第203~214頁,1994。
張祖恩、蔡敏行、蔡尚行、林建榮、張國益、蔡樹鴻,「台灣地區都市垃圾焚化灰渣物化組成與溶出特性探討」,一般廢棄物焚化資源化技術與實務研討會,第227~246頁,1996。
林佩瑩,「加速碳酸化對焚化底渣特性影響之研究」,環境工程與管理研究所,國立台北科技大學,2011。
曾淑滿 ,「高氯含量廢水去除氯離子之研究」,碩士論文,國立臺北科技大學資源工程碩士班,2011。程士豪,「模擬煙道氣進行轉爐石碳酸化之研究」,環境工程與科學系碩士班,輔英科技大學,2008鄭光志,「垃圾焚化底渣資源化前處理之研究-加酸水洗脫氯」,環境工程與管理研究所,國立台北科技大學,2010。
張道淼,「垃圾焚化灰渣掩埋對生垃圾滲出水之處理能力」,水資源及環境工程所,淡江大學,1996。
鄭文欽,「都市垃圾焚化焚化底灰受鹽類影響重金屬釋出之研究」,水資源及環境工程所,淡江大學,1996。
吳靜薇,「水庫淤泥添加改善都市垃圾焚化灰渣燒製輕質骨材之研究」水資源及環境工程所,淡江大學,2007。
李志偉,「細粒徑都市垃圾焚化底渣水萃水萃及磷酸穩定配合燒結資源化之研究」,水資源及環境工程所,淡江大學,2002。
沈筱菁,「電聚浮除結合活性污泥法處理都市垃圾焚化底渣水洗廢水之研究」,水資源及環境工程所,淡江大學,2004。
何欣怡,「垃圾焚化飛灰水萃廢水處理之研究」,水資源及環境工程所,淡江大學,2004。
林祐全,「電聚浮除法配合薄膜系統處理都市垃圾焚化底渣水洗廢水之研究」,水資源及環境工程所,淡江大學,2004。
胡貴寶,「細粒徑都市垃圾焚化底渣以螯合劑穩定搭配燒結資源化之研究」,水資源及環境工程所,淡江大學, 2005。
陳雨詩,「粗粒徑垃圾焚化底渣燒製高強度輕質骨材之研究」,水資源及環境工程所,淡江大學,2005。
陳政綱,「都市垃圾焚化底渣燒製輕質骨材膨脹機制之研究」,水資源及環境工程所,淡江大學,2007。
蘇文亮,「都市垃圾焚化底渣水萃細泥再生耐火石膏板之研究」,水資源及環境工程所,淡江大學,2009。
曾柏倫,「都市垃圾焚化飛灰摻合淨水污泥以機械研磨製成水泥取代料氯鹽穩定能力之研究」,水資源及環境工程所,淡江大學,2013。