DOI QR코드

DOI QR Code

Basic research on the quality improvement of recycled aggregate using electric pulse discharge technology

전기 펄스 방전을 이용한 순환골재의 품질 향상 기술에 관한 기초연구

  • 윤현노 ((재)한국화학융합시험연구원) ;
  • 배상진 ((재)한국화학융합시험연구원) ;
  • 이성규 ((재)한국화학융합시험연구원) ;
  • 김대수 (자연환경(주))
  • Published : 2023.12.30

Abstract

Keywords

References

  1. 최원영, 전찬수, 김상헌, 김태형, & 전덕우. (2021). 고품질 순환골재 활용에 따른 건설 산업의 경제적 효과 및 순환골재 생산 산업의 비용 편익 분석. 한국건설순환자원학회논문집, 9(4), 483-491. https://doi.org/10.14190/JRCR.2021.9.4.483
  2. Tam, V. W., Soomro, M., & Evangelista, A. C. J. (2021). Quality improvement of recycled concrete aggregate by removal of residual mortar: A comprehensive review of approaches adopted. Construction and Building Materials, 288, 123066.
  3. Kim, H. S., Kim, J. M., & Kim, B. (2018). Quality improvement of recycled fine aggregate using steel ball with the help of acid treatment. Journal of Material Cycles and Waste Management, 20, 754-765. https://doi.org/10.1007/s10163-017-0639-8
  4. Kim, J. H., Sung, J. H., Jeon, C. S., Lee, S. H., & Kim, H. S. (2019). A study on the properties of recycled aggregate concrete and its production facilities. Applied Sciences, 9(9), 1935.
  5. Mulder, E., de Jong, T. P., & Feenstra, L. (2007). Closed Cycle Construction: An integrated process for the separation and reuse of C&D waste. Waste Management, 27(10), 1408-1415. https://doi.org/10.1016/j.wasman.2007.03.013
  6. Josipovic, J., Milovanovic, B., Kuzmanovic, V., Kapor, R., Savic, L., & Zindovic, B. (2016). Frequency and duration of hydrodinamic load sampling in the stilling basin. Zbornik radova 4. Medunarodne konferencije Savremena dostignuca u gradevinarstvu 2016, 699-708.
  7. Yang, Z., Brown, H., & Cheney, A. (2006, May). Influence of moisture conditions on freeze and thaw durability of Portland cement pervious concrete. In Concrete Technology Forum: Focus on Pervious Concrete (pp. 24-25).
  8. Wang, L., Wang, J., Qian, X., Chen, P., Xu, Y., & Guo, J. (2017). An environmentally friendly method to improve the quality of recycled concrete aggregates. Construction and Building Materials, 144, 432-441. https://doi.org/10.1016/j.conbuildmat.2017.03.191
  9. Al-Bayati, H. K. A., Das, P. K., Tighe, S. L., & Baaj, H. (2016). Evaluation of various treatment methods for enhancing the physical and morphological properties of coarse recycled concrete aggregate. Construction and Building Materials, 112, 284-298. https://doi.org/10.1016/j.conbuildmat.2016.02.176
  10. Abbas, A., Fathifazl, G., Isgor, O. B., Razaqpur, A., Fournier, B., & Foo, S. (2007). Proposed method for determining the residual mortar content of recycled concrete aggregates. Journal of ASTM International, 5(1), 1-12.
  11. Kazemian, F., Rooholamini, H., & Hassani, A. (2019). Mechanical and fracture properties of concrete containing treated and untreated recycled concrete aggregates. Construction and Building Materials, 209, 690-700. https://doi.org/10.1016/j.conbuildmat.2019.03.179
  12. Tang, A. J., De Jesus, R., & Cunanan, A. (2019). Microstructure and mechanical properties of concrete with treated recycled concrete aggregates. GEOMATE Journal, 16(57), 21-27.
  13. Wang, X., Du, J., & Li, Q. (2022). Experimental study on crushing of concrete columns by high voltage pulse discharge. Case Studies in Construction Materials, 16, e01090.
  14. Narahara, S., Namihira, T., Nakashima, K., Inoue, S., Iizasa, S., Maeda, S., ... & Akiyama, H. (2008, June). Evaluation of concrete made from recycled coarse aggregates by pulsed power discharge. In 2007 16th IEEE International Pulsed Power Conference (Vol. 1, pp. 748-751). IEEE.
  15. Soomro, M., Tam, V. W., Shigeishi, M., Kencanawati, N. N., Namihira, T., & Kalinowska, K. (2023). Quality improvement of recycled aggregate. In Recycled Concrete (pp. 161-194). Woodhead Publishing.