References
- Lee SJ, Kang NH, Chon CM, Jou HT. Grinding effects of coal-fired pond ash on compressive strength of gepolymers. Journal of Korean Institute of Resources Recycling. 2014 Nov;23(6):3-11. https://doi.org/10.7844/kirr.2014.23.6.3
- Cho HY, Hong WP, Rho JS, Chung SY, Kim MH. The mortar properties of portland cements blended with modified coal ashes. Journal of the Korean Ceramic Society. 1990 Apr;27(7):833-40.
- Manz OE. Worldwide production of coal ash and utilization in concrete and other products. Fuel, 1997 Jun;76(8): 691-6. https://doi.org/10.1016/S0016-2361(96)00215-3
- Sheng G, Zhai J, Li Q, Li F. Utilization of fly ash coming from a CFBC boiler cofiring coal and petroleum coke on portland cement. Fuel. 2007 Nov;86(26):25-31.
- Jang JK, Ji SW, Ahn JW. Utilization of circulating fluidized bed combustion ash and related specifications for mine backfills. Journal of Korean Institute of Resources Recycling. 2017 Feb;26(2):71-9. https://doi.org/10.7844/kirr.2017.26.2.71
- Lin KL, Chang CT. Leaching characteristics of slag from the melting treatment of municipal solid waste incinerator ash. Journal of Hazardous Materials. 2006 Jul;135(1):296-302. https://doi.org/10.1016/j.jhazmat.2005.11.064
- Kim SL, Park JH. Research and development trends for mine subsidence prevention technology in korea, Tunnel & Underground Space. 2015:25(5);408-16. https://doi.org/10.7474/TUS.2015.25.5.408
- Sreenivasarao K, Warren GW, Mckinley MD Hydrometallurgical G. Treatment of municipal solid waste fly-ash for simultaneous detoxification and metal recovery. Journal of Environmental Science and Health. 1997 Apr;32(4):1225-45.
- Lin KL, Wang KS, Lin CH. The hydration of pastes containing municipal solid waste incinerator fly ash slag. Journal of Hazardous Materials. 2004 Jun;109(1):173-81. https://doi.org/10.1016/j.jhazmat.2004.03.014
- Kim SC, Park DK, Yoog KC. Characteristic of cementitous mortar using high volume of recycled fine aggregate. Journal of the Korean Recycled Construction Resources Institute. 2016 Sep;4(3):235-42. https://doi.org/10.14190/JRCR.2016.4.3.235
- Kim YS, Kim KK, Park SJ, Kim JS. Drying shrinkage characteristics of the concrete incorporated shrinkage reducing agent according to mixed proportion of concrete. Journal Korea Institute Building Construction. 2017 Jun;17(3):245-52. https://doi.org/10.5345/JKIBC.2017.17.3.245
- Moon HY, Yu JH. A study on the fundamental properties of mortar with pig-iron steel slag fine aggregate. KSCE Journal of Civil Engineering. 2000 Oct;(1):403-6.
- Choi YW, Park MS, Choi BK, Oh SR. The properties of strength development of high volume fly ash concrete with reduction of unit water content. Journal of the Korean Recycled Construction Resources Institute. 2014 Mar;2(1):46-51. https://doi.org/10.14190/JRCR.2014.2.1.046
- Ruy JH, Jeon, HK. Analysis of mechanical properties and micro structure of fly ash based alkali-activated mortar. Journal of the Korea Institute of the Resources Recycling. 2012 May;21(3):27-38.
- Yang KH, Seo EA. Evaluation of shrinkage strain of alkali-activated slag concrete. Journal of the Korea Concrete lnstitute. 2013 Dec;25(6):593-9.
- Won JP, Lee YS. Properties of controlled low-strength material containing bottom ash. Journal of the Korea Concrete Institute. 2001 Jun;13(3):294-300. https://doi.org/10.22636/JKCI.2001.13.3.294