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Burnability and Mineral Properties of Clinker Added Chlorine

염소 함유 클링커의 소성성 및 광물특성에 관한 연구

  • Kim, Tae-Yeon (Energy & Environmental Division, Korea Institute of Ceramic Eng. & Tech.) ;
  • Kim, Nam-Il (Energy & Environmental Division, Korea Institute of Ceramic Eng. & Tech.) ;
  • Chu, Yong-Sik (Energy & Environmental Division, Korea Institute of Ceramic Eng. & Tech.)
  • 김태연 (한국세라믹기술원 에너지환경본부) ;
  • 김남일 (한국세라믹기술원 에너지환경본부) ;
  • 추용식 (한국세라믹기술원 에너지환경본부)
  • Received : 2020.10.26
  • Accepted : 2020.11.26
  • Published : 2020.12.30

Abstract

In this study, raw mix was mixed with CaCl2 for analyzing characteristics of clinker added chlorine and chlorine was added by 2,000ppm at high concentration condition. The raw mix added chlorine was burned at 1250℃~1350℃ and maintained during 10minutes at each maximum temperature. Clinker target modulus was LSF 92, SM 2.5 and IM 1.6 in this study. The burnability of clinker added chlorine was identified by free-CaO content. Free-CaO content decreased as chlorine content increased and free-CaO content of 1350℃-2000ppm clinker decreased by 1.5%. Optical microscope and XRD Analyses were used for identify mineral properties of clinker added chlorine. The mineral of clinker could not be observed at 1250℃ and the size of alite grew larger as chlorine content increased at 1350℃. It showed a good crystallizability as chlorine content increased. As chlorine content of clinker increased, clinker showed a good burnability and mineral property.

본 연구에서는 염소 함유 클링커 특성을 분석하기 위해 raw mix 제조 시 CaCl2를 첨가하였으며, 이때 염소 함량을 고농도 조건인 2,000ppm까지 제어하였다. 염소 첨가 raw mix의 소성온도는 1250℃에서 1350℃까지 조정하였으며, 각각의 최대온도에서 10분간 유지하였다. 모듈러스는 LSF-92.0, SM-2.5 및 IM-1.6으로 고정하였으며, 염소 함유 클링커의 소성성은 free-CaO 분석을 통해 확인하였다. 염소 함량 증가에 따라 free-CaO는 감소하였으며, 1350℃-2000ppm의 free-CaO 함량은 1.5%까지 낮아졌다. 염소 함량 증가에 따른 광물특성 확인을 위해 광학현미경 및 XRD를 활용하였다. 1250℃ 소성 시에는 클링커 광물을 관찰할 수 없었으며, 1350℃ 소성 시에는 염소 함량 증가에 따라 alite 크기가 소폭 증가하였다. 또한 염소 함량 증가에 따라 우수한 광물결정성을 발현되어 클링커 내 염소함량이 증가할수록 우수한 소성성 및 광물특성을 보였다.

Keywords

References

  1. Korea Waste Association, Waste statistics, http://www.kwaste.or.kr/bbs/content.php?co_id=sub0401, October 21, 2020.
  2. Ministry of Environment, Information, https://me.go.kr/ysg/web/index.do?menuId=4507, October 21, 2020.
  3. National Environmental Industry Technology Information System, Environmental archive, https://www.konetic.or.kr/dataroom/dataroom_view.asp?1=1&gotopage=421&unique_num=63&tblcode=EUN_EDU_MORGUE, October 21, 2020.
  4. Korea Cement Association, Current status of circulating resources, http://recycling.cement.or.kr/, October 21, 2020.
  5. Jae young kim, Chung Hyun Park, 2015 : Solid Waste Treatment and Management, The National Academy of Sciences, 54(2), pp.45-90.
  6. Council Chungbuk, 2019 : The effect of waste recycling in the cement industry.
  7. Tae Beom Min, Hyun Kuk Choi, Hyeong Cheol Kim, et al., 2019 : Use of Alternative fuels in Cement Manufacturing, 14(1), pp.17-21.
  8. Korea Cement Association, 2014 : Cement industry process characteristics and recycling of recycled resources, Korea Cement Association.
  9. Ja-Hyung Choi, Sea Cheon Oh, 2019 : Removal of Chlorine from Municipal Solid Waste Fly Ash by using Acid and Alkaline Solution, J. Korea Soc. Waste Manag., 36(5), pp. 471-479. https://doi.org/10.9786/kswm.2019.36.5.471
  10. Seung-Heun Lee, Se-jin Lee, Yang-Yee Woo, et al., 2014 : Properties of Portland Cement Clinker Using Polysilicon Sludge, J Rec Const Resources, 2(4), pp.328-334.
  11. Woo-Teck Kwon, Young-Hee Kim, Yong-Sik Chu, et al., 2005 : Effect of P2O5 and chloride on clinkering reaction, Advances in Technology of Materials and Materials Processing Journal, 7(1), pp.63-66.
  12. Theodore Hanein, Yuki Hayashi, Claire Utton, et al., 2020 : Pyro processing cement kiln bypass dust: Enhancing clinker phase formation, Construction and Building Materials, 259, pp.1-12.
  13. Theodore Hanein, Fredrick P. Glasser, Marcus N. Bannerman, 2020 : Thermodynamic data for cement clinkering, CCR, 132, pp.1-9.
  14. Peter C. Hewlett, 2020 : Lea's Chemistry of Cement and Concrete, pp.436-437, 4th Edition, Elsevier.
  15. Sung Ho Son, 2011. KR. 10-2011-0132530.
  16. Ji Whan Ahn, Kwang-Suk You, Sung Min Cheon, et al., 2004 : Clinkering of sewage sludge ash as cement raw material, J. Korean Ceram. Soc., 41(4), pp.323-327. https://doi.org/10.4191/KCERS.2004.41.4.323
  17. Bruce Ratner, 2009 : The correlation coefficient: Its values range between +1/-1, or do they?, Journal of Targeting, Measurement and Analysis for Marketing, 17, pp.139-142. https://doi.org/10.1057/jt.2009.5