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A Study on Particle-Size Distribution and Collect Rate of the Oyster Shells as Breaking and Crushing

파쇄 및 분쇄를 통한 굴 패각의 입도분포와 회수율에 관한 연구

  • Jung, Ui-In (Department of Architectural Engineering, Kongju National University) ;
  • Kim, Bong-Joo (Department of Architectural, Kongju National University)
  • Received : 2017.10.14
  • Accepted : 2017.12.11
  • Published : 2017.12.30

Abstract

The purpose of the present study was to examine the method of physically processing oyster shells for use as raw material(aggregate) through experimentation. The results of the experiment found that the adequate particle size of the pulverized oyster shells should be smaller than 10mm due to their shape. Also, after considering various particle size distributions and residual rates by particle size, the study found the cutter mill to be the most suitable tool for pulverizing oyster shells. The use of a cutter mill resulted in recovery rates of 97.3%, 98.2%, and 98.9% for inner screens of 8mm, 12mm, and 20mm respectively, revealing how the increase of screen size results in slightly higher recovery rates. The experiment involving the difference between the inner screen of the cutter mill and the speed of the inverter shows that a smaller screen size and a faster inverter speed result in a lower fineness modulus, while a rise in inverter speed for an identical screen made possible the material recovery of a much lower range of particle sizes.

본 연구에서는 굴 패각을 원료(골재)로 활용하기 위한 물리적인 가공방법에 관한 것을 실험을 통해 검토하고자 하였다. 실험결과 굴 패각의 형상에 의해 분쇄된 굴 패각의 적정 입도는 10mm 보다 작아야 될 것으로 판단된다. 또한 가동시간과 회수율, 각 입도별 잔류율과 다양한 입도분포를 고려할 때 굴 패각의 분쇄에는 커터 밀이 적합한 것으로 나타났다. 커터 밀의 경우, 8mm의 내부 스크린을 적용할 때, 회수율은 97.3% 12mm를 적용할 때, 98.2%, 20mm일 때, 98.9%로 나타나 스크린 사이즈가 커짐에 따라 회수율은 다소 증가되는 것으로 나타났다. 커터 밀의 내부 스크린과 인버터의 속도 차이에 의한 실험결과 스크린의 크기가 작을수록, 인버터의 속도가 빠를수록 조립률은 낮아지는 것으로 나타났으며, 동일한 스크린에서 인버터 속도의 상승은 더욱 낮은 입도범위의 재료 회수가 가능한 것으로 나타났다.

Keywords

References

  1. Bak, Y.C., Cho, K.J., Kim, S.B. (2003). Reaction characteristics of calcium-based adsorbents for bulk separation of CO2 in high-temperature, Journal of Environmental Engineering Research, 25(5), 595-601 [In Korean].
  2. Jung, U.I., Kim, B.J., Kim, J.M. (2016). "A study on strength properties of mortar using LFS binder and oyster shell as fine aggregate," Proceedings of Journal of the Korean Recycled Construction Resource Institute, 58(1), 69-72 [In Korean].
  3. Kim, H.S. (2011). A Study on the Quality Improvement of Recycled Fine Aggregate using Neutralization and Low Speed Wet Abraser, Ph.D Thesis, Kongju National University [In Korean].
  4. Koo, H.S., Jun, H.S. (2006). An experimental study on the strength development of concrete using of the oyster shells, Journal of the Korea Institute for Structural Maintenance and Inspection, 10(5), 137-146 [In Korean].
  5. Lee, H.S., Park, D.W., Woo, D.S. (2009). A study on physicochemical and calcination processed characteristic of oyster shell, Journal of Academia-Industrial Technology, 10(12), 3971-3976 [In Korean].
  6. Lee, S.H., Kim, H.J., Jung, Y.C., Bae, S.G. (2001). A study on the properties of cement mortar with modified oyster shell powder, Journal of the Korean Ceramic Society, 38(3), 231-237 [In Korean].
  7. Yoon, G.L., Chae, K.S., Yoo, H.K. (2004). Experimental investigation on oyster shell-sand mixtures, KSCE Journal of Civil Engineering, 24(5C), 283-288 [In Korean].
  8. Yoon, G.L., Kwon, O.S., Im, Y.J., Yang, E.I. (2001). Engineering characteristics of waste oyster shell for recycling, KSCE Journal of Civil Engineering, 21(4C), 421-431 [In Korean].