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고로슬래그 기반 탄소흡수용 콘크리트의 시멘트 첨가율 및 노출조건에 따른 역학적 특성 분석을 위한 실험적 연구

Experimental Study on Mechanical Properties of Carbon-Capturing Concrete Composed of Blast Furnace Slag with Changes in Cement Content and Exposure

  • 조현명 (강원대학교 토목건설공학과) ;
  • 김승원 (강원대학교 토목공학과) ;
  • 송지현 (세종대학교 공과대학 건설환경공학과) ;
  • 박희문 (한국건설기술연구원 도로연구실) ;
  • 박철우 (강원대학교 사회기반시스템공학과)
  • 투고 : 2015.04.21
  • 심사 : 2015.08.03
  • 발행 : 2015.08.17

초록

PURPOSES: This study investigates the mechanical performance of carbon-capturing concrete that mainly contains blast furnace slag. METHODS: The mixture variables were considered; these included Portland cement content, which was varied from 10% to 40% of the blast furnace slag by weight. The specimens were exposed to different conditions such as high $N_2$ and $O_2$ concentrations, laboratory conditions and high $CO_2$ conditions. Mechanical performances, including compressive and flexural strengths and carbon-capturing depth, were evaluated. RESULTS : The slump, air content and unit weight were not affected significantly by the variation in cement content. The strength development when the specimens were exposed to high purity air was slightly greater than that when exposed to high $CO_2$. As the cement content increased the compressive and flexural strength increased but not considerably. The carbon-capturing capacity decreased as the cement content increased. The specimens exposed in the field for 70 days had flexural strength greater than 3 MPa. CONCLUSIONS : The results indicate that cement content is not an important parameter in the development of compressive and flexural strengths. However, the carbon-capturing depth was higher for less cement content. Even after field exposure for 70 days, neither any significant damage on the surface nor any decrease in strength was observed.

키워드

참고문헌

  1. Barker T. I., B. Metz., O. R. Davidson., P. R. Bosch., R. Dave and L. A. Meyer (2007), "Technical Summary., In: Climate Change 2007: Mitigation", Contribution of Working Group III to the Fourth Assessment Report of the Intergovernmental Panel on Climate Chage, Cambridge Universty Press, Cambridge United Kingdom and New Youk, NY, USA.
  2. Caijun S., Pavel V. K and Della R (2006), "Alkali-Activated Cements and Concretes", Taylor & Francis Group, pp. 150-156.
  3. Carbon Neutral Road Technologies Research Group (2015), "Final Report for Carbon Neutral Road Technologies using Activated Industrial By-product", Construction Technology Innovation Project, R&D-11 Technology, Innovation A04.
  4. Jang, Bong Jin., Kim, Seung Won., Song, Ji Hyeon., Park, Hee Mun., Ju, Min Kwan and Park, Cheol Woo (2013), "Fundamental Characteristics of Carbon-Capturing and Sequestering Activated Balst-Furnace Slag Mortar", 2013 International Journal of Highway Engineering, IJHE, Vol. 15, No. 2, pp. 95-103. https://doi.org/10.7855/IJHE.2013.15.2.095
  5. Jang, Bong Jin (2014), "Experimental Study on Development of Carbon Absorbing Concrete using Ground Granulated Blast Furnace Slag", Thesis for the Degree of Master, Department of Civil & Construction Engineering, Graduate School in Kangwon National University, Korea, pp. 45-62.
  6. Keum-Il, Song., Keun-Hyeok, Yang., Bang Yeaon, Lee., and Jin-Kyu, Song (2012), "Carbonation Characteristics of Alkali Activated Blast-Furnace Slag Mortar", 2012 Journal of the Korea Concrete Institute, JKCI, Vol. 24, No. 3, pp. 315-322. https://doi.org/10.4334/JKCI.2012.24.3.315
  7. Lenny Bernstein et al., (2007), "Climate Change 2007: Synthesis Report", An Assessment of the Intergovernmental Panel on Climate Change(IPCC).
  8. MIT Technology Review (2010), 10 Breakthrough Technologies, http://www2.technologyreview.com/article/418542/tr10-green-concrete/
  9. Saud, Al-Otaibi (2002), "Performance of Alkali-Activated Slag Concrete", Thesis for the Degree of Doctor of Philosophy, Department of Civil and Structural Engineering, Universty of Sheffield, U.K, pp. .33-83.
  10. Song, Jin-Kyu., Lee, Kang-Seok.., Yang, Keum-Hyeok., Song, Ho-Bum and Kim Byeong-Jo (2009), "An Experimental Study on the Compressive Strength of Concrete using Granulated Blast Furnace Slag", 2009 Conference of Korea Concrete Institute, pp. 555-556.
  11. Yang, Wan-Hee (2013), "Properties of Alkali-Activated Portland Blast-furnace Slag Cement Concrete - Using Sodium Sulfate and Light-burnt Dolomite as Activators", Thesis for the Degree of Doctor of Philosophy, Department of Architectural Engineering, Graduate School of Konkuk University, Korea, pp. 78-81.