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Evaluation of Performance of Modified Recycling Asphalt Mixture and Normal Asphalt Mixture Using Basalt Powder Sludge as Filler

현무암 석분슬러지를 채움재로 활용한 개질재생아스팔트혼합물과 일반아스팔트혼합물의 공용성 평가

  • Received : 2018.06.29
  • Accepted : 2018.07.05
  • Published : 2018.08.01

Abstract

Basalt powder sludge (abbreviated BPS) is an inevitable industry by product resulted from the stone processing. Recently, demands for natural materials have been increasing in the construction and landscaping fields, therefore, amounts of BPS have been also increasing. Since most of BPS are used as landfill and earth soil, it is necessary to figure out to expedite their utilization. In this study, by considering the characteristics of precipitation of Jeju, effectiveness of BPS as a filler for asphalt compounds mixed with cement were analyzed. As a result, BPS satisfies quality criterion required in KS F 3501. Marshall mixing designs were performed to determine the optimal asphalt content for the Modified recycling asphalt mixture (27% recycling aggregate) and the Normal asphalt mixture. Effectiveness of BPS were identified by the Marshall Stability Test with the mixing ratio (level 3) of two asphalt compounds and composition ration (level 3) of BPS and cement. Performance of asphalt compounds shown appropriate effect of mixing and composition ratios of the filler were assessed. Test results show that two types of asphalt compounds satisfy the quality standards of the MLIT (2015). Therefore, BPS could be used as filler for asphalt compounds.

현무암 석분슬러지는 석재가공 과정에서 필연적으로 발생하는 산업부산물이다. 최근 건축 및 조경분야에서 천연자재에 대한 수요가 증가하고 있어 석분슬러지 발생량도 증가하고 있다. 현무암 석분슬러지는 현재 발생량의 대부분이 단순 매립과 복토용으로 처리되고 있어 활용성 제고를 위한 노력이 필요하다. 이에 본 연구에서는 제주지역의 강우특성을 고려해 현무암 석분슬러지를 시멘트와 섞어 아스팔트혼합물의 채움재로 활용하기 위한 검토를 수행하였다. 검토결과 현무암 석분슬러지는 KS F 3501에서 요구하는 품질기준을 만족하였다. 마샬 배합설계를 실시하여 개질재생아스팔트혼합물(순환골재 27%)과 일반아스팔트혼합물에 대한 최적 아스팔트 함량(OAC)을 결정하였다. 두 종의 아스팔트혼합물에 채움재의 혼합비(3 수준) 및 현무암 석분슬러지와 시멘트의 구성비(3 수준)를 변화시켜 마샬안정도 시험으로 현무암 석분슬러지의 활용 범위를 파악하였다. 채움재의 혼합비와 구성비가 안정적인 활용성을 보이는 아스팔트혼합물들에 대한 공용성을 평가한 결과 두 종의 아스팔트혼합물 모두 국토교통부(2015)의 품질기준을 만족하였다. 따라서 현무암 석분슬러지는 아스팔트혼합물의 채움재로 활용이 가능한 것으로 판단된다.

Keywords

References

  1. Cho, D. Y., Park, K. B., Woo, Y. Y. and Moon, B. K. (2016). "A study on asphalt paving filler development from industrial by-products and its characteristics in construction site." Journal of the Korean Recycled Construction Resources Institute, Vol. 4, No. 3, pp. 227-234 (in Korean). https://doi.org/10.14190/JRCR.2016.4.3.227
  2. Choi, M. J., Kim, H. J., Kim, Y. J. and Lee, J. J. (2017). "Fundamental properties of asphalt concrete mixture as using TDF fly ash as mineral filler." Journal of the Korean Society of Civil Engineers, Vol. 37, No. 2, pp. 497-505 (in Korean). https://doi.org/10.12652/Ksce.2017.37.2.0497
  3. Hafeez, I. and Kamal, M. (2010). "Effects of mineral filler to polymer modified bitumen ratio on the design properties of hot mixasphalt and its performance mehran university research." Journal of Engineering & Technology, Vol. 29, No. 4, pp. 581-588.
  4. Hwang, S. D. (2004). Chapter 5. Asphalt Concrete Test, KICT, pp. 1-38.
  5. Hwang, S. D. and An, S. H. (2000). "High temperature behavior of asphalt mixtures according to the type of aggregate." Journal of the Korea Road Pavement Engineering Society, Vol. 2, No. 4, pp. 50-56 (in Korean).
  6. Jeong, J. S., Song, G. Y., Ahn, J. H. and Kim, T. H. (2007). "Utilization of stone sludges produced by stone manufacturing process as asphalt concrete filler." Journal of the Korean Society of Civil Engineers, Vol. 27, No. 4D, pp. 457-464 (in Korean).
  7. Kim, K. Y. (2007). A study on the application of powdered basalt sludge in construction engineering and its special characteristic, Ph.D. Dissertation, Jeju National University, pp. 55-56, 64-65 (in Korean).
  8. Kim, N. H., Kim, J. C., Hong, J. P. and Kim, K. W. (2010). "Evaluation of fundamental properties of warm-mix recycled asphalt concretes." Journal of the Korean Society Road Engineers, Vol. 12, No. 4, pp. 111-120 (in Korean).
  9. Kim, Y. G., Kim, J. S., Joe, B. Y., Joe, J. W., Han, J. M. and Lee, H. I. (2006). "Application study of filler for asphalt concrete mixture of industrial by-products (electric arc furnace dust + incinerator recovery dust)." Proceedings of Spring Conference of Korean Society of Waste Management, pp. 71-77 (in Korean).
  10. Kim, Y. W., Park, K. B., Woo, Y. Y. and Moon, B. K. (2017). "Characteristics of asphalt concrete utilizing coal ash based filler." Journal of the Korean Recycled Construction Resources Institute, Vol. 5, No. 3, pp. 305-312 (in Korean).
  11. Ko, D. W. and Choi, H. B. (2013). "Basic performance evaluation of dry mortar recycled basalt powder sludge." Journal of the Korea Institute of Building Construction, Vol. 13, No. 2, pp. 131-138 (in Korean). https://doi.org/10.5345/JKIBC.2013.13.2.131
  12. Lee, D. W., Kim, K. Y. and Kim, D. H. (2015). "A study on the application of powered basalt.", Proceeding of the Korean Society of Civil Engineers, Gunsan, pp. 163-164 (in Korean).
  13. Lee, D. W., Kim, S. H. and Oh, J. (2016). "Development of recycledmodified asphalt using basalt aggregate." International Journal of Civil, Environmental, Structural, Construction and Architectural Engineering, Vol. 10, No. 1, pp. 11-15.
  14. Ministry of Environment (ME) and Korea Environment Corporation (KECO), (2017). National Waste Generation and Disposal Status in 2016 (in Korean).
  15. Ministry of Land, Infrastructure and Transport (MLIT) (2015). Guide of Production and Construction of Asphalt mixture (in Korean).
  16. Ministry of Land, Transport and Maritime Affairs (MOLIT) (2012). Recycling Aggregate Quality Standard (in Korean).
  17. Rahman, M. N. and Sobhan, M. A. (2013). "Use of non-conventional fillers on asphalt-concrete mixture." International Journal of Innovation and Applied Studies, Vol. 3, No. 4, pp. 1101-1109.