참고문헌
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- L. Di Palma, E. Petrucci (2014) Treatment and recovery of contaminated railway ballast, Turkish Journal of Engineering & Environmental Sciences, 38, pp. 248-255. https://doi.org/10.3906/muh-1404-9
- Y. Cho, D. Park, T.-S. Kwon, J.-Y. Lee (2015) Study of the performance of a dry cleaning method for polluted ballast gravel of railroad fields, Journal of the Korean Society for Railway, 18(6), pp. 552-557. https://doi.org/10.7782/JKSR.2015.18.6.552
- Y. Cho, D. Park, Y. Choi, J-I. Lim, K-H. Kim (2005) Remediation of contaminated ballast by blasting technology, Proceedings of Korean Society for Railway, Uiwang, Korea, pp. 100-106.
- I.-H. Lee (2010) Improvement of Dry-blasting efficiency for ballast used as aggregate of paved track, Journal of the Korean Society for Railway, 13(1), pp. 78-83.
- C.-D. Nam (2004) A study of the technical treatment within an environmental appetency for the ballast water, Journal of the Korean Society of Marine Engineering, 28(8), pp. 129-139.
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- I.-H. Lee (2009) Aggregate criterion for paved track considering recycling of railway ballast, Journal of the Korean Society for Railway, 12(4), pp. 481-487.
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- Y. Cho, J.-Y Lee, T.-S. Kown, W.-S. Jung, et al. (2012) Field application of dry washing technology for polluted railroad ballast gravel, Proceedings of Korean Society for Railway, Gyeongju, Korea, pp. 819-824.
- I.H. Lee, S.I. Kim, Y.J. Kim, T.H. Kim, C.S. Jeong (2015) A Study on the development of waterless gravel cleaning equipment for high-speed train rapid-hardening track, Proceedings of The Korean Society of Manufacturing Technology Engineers, Daejeon, Korea, p. 7.