DOI QR코드

DOI QR Code

The Development of Multi Stage Separation Ball Mill for Producing Recycled Aggregate

순환 골재 생산을 위한 다단 박리형 볼밀 시스템 개발

  • 이한솔 (과학기술연합대학원대학교 자원순환공학과) ;
  • 유명렬 (제로에미션) ;
  • 이훈 (한국지질자원연구원)
  • Received : 2021.08.18
  • Accepted : 2021.09.27
  • Published : 2021.10.30

Abstract

Natural aggregate regular exploitation has led to environmental and resource depletion issues; consequently, construction waste has become an important raw material in the supply of aggregate smoothly. The recycled aggregate produced in the most of recycled aggregate processing company in Korea has a high adhesion ratio of cement paste and mortar, which affects the water absorption ratio and density. Therefore, the quality of recycled aggregate needs to be improved. In this study, we improved the quality of recycled aggregate through the use of a multistage separation ball mill. This ball mill has a sieve which protects the ball mix and improves the motion. Products produced by using multistage separation ball mill were compared with various quality standard for utilization as recycle aggregate. Finally, we confirmed that the multistage separation ball mill can efficiently separate cement paste and mortar from natural aggregate and that it is suitable for the production of recycled aggregates.

천연골재의 지속적인 개발은 환경 및 자원고갈 문제를 발생시키기 때문에 건설폐기물은 원활한 골재 수급을 위한 중요한 원료이다. 대부분의 순환골재 처리업체에서 생산되는 순환 골재는 시멘트 페이스트 및 모르타르 부착률이 상대적으로 높아 흡수율과 밀도에 영향을 미친다. 따라서 본 연구에서는 순환 골재의 품질을 개선하기 위해 볼의 혼합 방지와 움직임을 개선할 수 있는 체가 적용된 다단 박리형 볼밀을 활용하였다. 생산된 제품을 순환 골재로 사용하기 위해 품질 조건 만족 여부를 확인하였다. 최종적으로 다단 박리형 볼밀은 시멘트 페이스트와 모르타르를 효율적으로 단체 분리할 수 있었으며, 순환골재 생산에 적합한 장비임을 확인하였다.

Keywords

Acknowledgement

본 연구는 산업통상자원부의 재원으로 한국에너지기술평가원(KETEP)의 지원을 받아 수행한 연구과제입니다(No.20192520100640).

References

  1. KORAS, recycled aggregate.https://www.koras.org/05/value.jsp, August 17, 2021.
  2. Jinyoung, L., Hoon, L., Min, H., et al., 2020 : Planning for comprehensive management of industrial stones and natural aggregate resources, pp.12.
  3. Ministry of Environment, 2020 : Waste generation and treatment status, pp.9.
  4. Wonsuk, L., Hyundo, Y., 2007 : Shear performance of reinforced recycled aggregate concrete beams, Journal of the Architectural Institute of Korea Structure & Construction, 23(4), pp.19-26.
  5. Yonungoh, L., Hyundo, Y., Sunwoo, Kim., et al., 2007 : Experimental study on the flexural and lap splice performances estimation of reiniforced recycled aggregate concrete beams, Journal of the Architectural Institute of Korea Structure & Construction, 23(5), pp.29-36.
  6. Seonhwa, Song, Kisun, Choi, Youngchan, You, et al., 2009 : Flexural behavior of reinforced recycled aggregate concrete beams, Journal of the Korea Concrete Institute, 21(4), pp.431-439. https://doi.org/10.4334/JKCI.2009.21.4.431
  7. Wonsuk, Lee, Hyundo, Yun, Sunwoo, Kim, et al., 2007 : The effect of replacement ratio of recyceld coarse aggregate on shear strength of reinforced concrete beams without shrear reinforcement, Journal of the Architectural Institute of Korea Structure & Construction, 10, pp.3-10.
  8. Jongsung, Sim, Cheolwoo, Park, Sungjae, Park, et al., 2006 : Characterization of Compressive Strength and Elastic Modulus of Recycled Aggregate Concrete with Respect to Replacement Ratios, Journal of the Architectural Institute of Korea Structure & Construction, 1, pp.213-218.
  9. Heonsoo, Chung, Keunhyeok, Yang, Hyunho, Kim, 2006 : The Influence of the Quality and the Replacement Level of Recycled Aggregate on the Mechanical Properties of Concrete, Journal of the Architectural Institute of Korea Structure & Construction, 6, pp.71-78.
  10. Seungjoe, Yoon, Sooyeon, Seo, Woojin, Lee, et al., 2006 : Concrete physical properties with substitution ratio of recycled Coarse aggregate and recycled fine aggregate, Korea Concrete Institute, 5, pp.161-164.
  11. Teawang, Lee, Hyunho, Lee, 2015 : The Characteristic of Compressive Strength by Replacement Ratio of Recycled Aggregate for Concrete, Korea Concrete Institute, 10, pp.531-532.
  12. Daehyun, Baek, Dongyeop, Han, Myongyoul, Yu, et al., 2007 : The Quality Properties of Recycled Coarse Aggregate Produced by the Bar-crusher and the Fundamental Properties of Concrete Using Aggregate, Architectural Institute of Korea, 10, pp.83-90.
  13. Korean Agency for Technology and Standards, KS F 2527. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059201946145309, September 22, 2021.
  14. Korean Agency for Technology and Standards, KS F 2503. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059203150618613, September 22, 2021.
  15. National Law Information Center, Recycled aggregate quality standard, https://www.law.go.kr/%ED%96%89%EC%A0%95%EA%B7%9C%EC%B9%99/%EC%88%9C%ED%99%98%EA%B3%A8%EC%9E%AC%ED%92%88%EC%A7%88%EA%B8%B0%EC%A4%80, September 22, 2021.
  16. Korean Agency for Technology and Standards, KS F 2507. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059197094868521, September 22, 2021.
  17. Korean Agency for Technology and Standards, KS F 2545. https://e-ks.kr/streamdocs/view/sd;streamdocsId=72059206276510231, September 22, 2021.