參考文獻 |
1. 王昱智,「CFB副產石灰為混凝土膠結材料之配比與研究」,碩士論文,國立中央大學土木工程學系,中壢(2008)。
2. 林志棟,「CFB副產石灰應用於土木工程之去化應用初步研究」,國立中央大學土木工程研究所執行,台塑石化股份有限公司煉油事業部委託計畫,雲林縣麥寮鄉(2002)。
3. 邱奇昌,「砂土經水泥改良後之力學性質」,碩士論文,國立中央大學土木工程學系,中壢(2003)。
4. 翁世昌,「以副產石灰作為回填材料」,碩士論文,國立成功大學土木工程學系,台南(2011)。
5. 翁和德,「循環式流體化床鍋爐技術」,化工技術學刊,第六卷,第九期,第180-193頁(1998)。
6. 翁榮聖,「水化副產石灰應用於拌製填方材料之研究」,碩士論文,國立中央大學土木工程學系,中壢(2012)。
7. 徐永翰,「水化副產石灰應用於軟弱土壤改良之研究」,碩士論文,國立中央大學土木工程學系,中壢(2013)。
8. 盛廣宏,陳明,程麟,方恒林,「硬石膏對矽酸鹽水泥性能的影響」,水泥工程,第五期 (2004)。
9. 陳毅,「不同圍壓下不等向壓密飽和夯實土壤之動態行為」,碩士論文,國立中央大學土木工程學研究所,中壢(2009)。
10. 陳婷,「水泥改良砂土之動靜態剪力強度特性」,碩士論文,國立中央大學土木工程學系,中壢(2011)。
11. 黃偉慶,「以副產石灰作為六輕廠區墊高材料方法研究」,國立中央大學土木工程研究所執行,台塑石化股份有限公司煉油事業部委託計畫,雲林縣麥寮鄉(2011)。
12. 張達德,「黏土膨脹性問題的探討與穩定改良方法之分析」,地工技術雜誌,第八期,第59~66頁(1984)。
13. 黨輝,王洪昇,黃紅,楊愛麗,「循環流化床脫硫灰渣的特性及應用初探」,環保技術,中國(2004)。
14. American Society for Testing and Material, “Standard Test Method for Consolidated Undrained Triaxial Compression Test for Cohesive Soils (D4767-11)”ASTM, West Conshohocken, Pennsylvania, United States, (2011).
15. American Society for Testing and Material, “Standard Test Methods for One-Dimensional Consolidation Properties of Soils Using Incremental Loading, (D2435-04)”ASTM, West Conshohocken, Pennsylvania, United States (2003).
16. American Society for Testing and Material, “Standard Test Methods for Laboratory Compaction Characteristics of Soil Using Modified Effort (12,400 ft-lbf/ft3), (D698-12)”ASTM, West Conshohocken, Pennsylvania, United States (2012).
17. American Society for Testing and Material, “Standard Test Method for Direct Shear Test of Soils Under Consolidated Drained Conditions, (D3080)”ASTM, West Conshohocken, Pennsylvania, United States (2011).
18. Binquet, J. and Lee, K.L., “Bearing Capacity Tests on Reinforced Earth Slabs,” Journal of the Geotechnical Engineering Division, ASCE, Vol.101, No.12, pp. 1241 -1255 (1975).
19. Gartner ,E.M., “Cohesion and Expansion in Polycrystalline Solids Formed by Hydration Reactions – The Case of Gypsum Plasters,” Cement and Concrete Research, Vol. 39, pp. 289-295 (2009).
20. Jackson, N.M., Mack, R., Schultz, S. and Malek, M., “Pavement subgrade stabilization and construction using bed and fly Ash,” World of Coal Ash , pp. 7-10 (2007).
21. Jackson, N. M., Schultz, S., Sander, P., and Schopp, L., “Beneficial Use of CFB Ash in Pavement Construction Applications,” Fuel, Vol. 88, pp.1210-1215 (2009).
22. Krishnaswamy, N.R. and Raghavendra, H.B., “Behavior of Reinforced Earth under Direct Shear Test,” Proceedings of first Indian Geotextiles Conference on Reinforced Soil, Bombay, India, C47–C52 (1988).
23. Krishnaswamy, N.R. and Srinivaulu Reddy, N., “Behavior of Reinforced Earth under Triaxial Compression,” Proceedings of first Indian Geotextiles Conference on Reinforced Soil, Bombay, India, A41–A46 (1988).
24. Lewry, A., J., and Williamson, J., “The Setting of Gypsum Plaster Part 1 The Hydration of Calcium Sulphate Hemihydrate,” Journal of Materials Science, Vol. 29, pp. 5279-5284 (1995).
25. Mandal, J.N. and Murti, M.V.R., “Potential for Use of Natural Fibers in Geotextile Engineering,” Proceedings of International Workshop on Geotextiles, Bangalore, India, pp. 251–254 (1989).
26. Prabakar, J., Dendorkar, N., and Morchhale, R.K., “Influence of Fly Ash on Strength Behavior of Typical Soils,” Construction and Building Materials, Vol. 18, pp. 263-267 (2004).
27. Ramanatha Ayyar, T.S., Krishnaswamy, N.R., and Viswanadhan, B.V.S., “Geosynthetics for Foundation on a Swelling Clay,” Proceedings of International Workshop on Geotextiles, Bangalore, India, pp. 176–180 (1989).
28. Reyes, A. and Pando, M., “Evaluation of CFBC Fly Ash for Improvement of Soft Clay,” World of Coal Ash(WOCA), Northern Kentucky, United States (2007).
29. Sievert, T., and Wolter, A. ,“Hydration of Anhydrite of Gypsum (CaSO4.II) in a Ball Mill,” Cement and Concrete Research, Vol. 35, pp. 623-630 (2005).
30. Wiedeman, H., G., and Rössler, M., “Thermo-Optical and Thermo-Analytical Investigations of Gypsum,” Thermochimica Acta, Vol. 95, No.1, pp. 145-153 (1985). |