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Analysis of Environment Emission Characteristics Each Construction Type for Road Field

국도건설공사 도로분야의 공종별 환경부하량 특성분석

  • Received : 2016.07.25
  • Accepted : 2016.09.05
  • Published : 2017.02.01

Abstract

Recently Korea has presented carbon emission reduce goal of 37% compare to BAU until 2030 according to Paris Agreement in order to correspond to climate change. For this, researchers need to study positively on construction industry that emit $CO_2$ of $3^{rd}$ volume of 28 industry classification. This study calculated environmental load by LCA using the road part except tunnel and bridge among national road cases completed already. After selecting representative type of large construction type based on environmental emission, earth works, drainage works and paving works took up 84%. And this study analyzed the environmental emission feature of each detail construction type after selecting representative type each detail construction type. Utilization of each construction type emission attribute to environmental load during national road construction, will be helpful in making decision of eco-friendly national road construction based on environmental emission.

최근 기후변화에 대응하기 위해 새롭게 체결된 파리협정에 따라 우리나라는 2030년까지 기준대비 37%의 탄소배출량 감축목표를 제시하였다. 이를 위해 28개 산업분류에서 3번째로 많은 이산화탄소를 배출하는 건설산업에서 보다 적극적인 연구가 필요하다. 본 연구에서는 기존의 완공된 국도건설사례들 중 터널과 교량을 제외한 도로분야만을 이용하여 전과정평가(LCA)를 실시하여 환경부하량을 산출 하였다. 산출된 환경부 하량을 기반으로 대공종의 대표공종을 선정한 결과 토공, 배수공, 포장공이 전체의 84%를 차지하였으며, 세부공종별 대표공종을 선정하여 각 세부공종별 환경부하량 특성을 분석하였다. 국도건설공사 시 환경부하량 공종별 배출특성을 이용한다면 환경부하량을 기반으로 하는 친환경적인 국도건설공사 의사결정에 도움이 될 것이다.

Keywords

References

  1. Ahn, J. Y., Chun, H. C., Choi, D. S., Do, J. S. and Cho, K. H. (2012). "Study on estimation of environmental load production in apartment buildings through the result of major materials selection." Architectural Institute of Korea, Vol. 32, No. 2, pp. 307-308 (in Korean).
  2. Choi, D. S., Chun, H. C. and Choi, Y. B. (2012). "A study on the development of a model and computer program for building total cost assessment." Journal of Korean Institute of Architectural Sustainable Environment and Building Systems, Vol. 6, No. 4, pp. 206-215 (in Korean).
  3. Chun, J. K. and Kim, B. S. (2012). "The measurement method of $CO_2$ emission for construction equipment using zigbee sensor." Korean Society of Civil Engineers, Vol. 32, No. 2, pp. 167-174 (in Korean).
  4. Hong, T. H., Ji, C. Y. and Jeong, K. B. (2012). "Environmental impact assessment of buildings based on life cycle assessment (LCA) methodology." Korean Journal of Construction Engineering and Management, Vol. 6, No. 2, pp. 84-93 (in Korean).
  5. Jo, A. R., Kim, C. W., Cho, H. H. and Kang, K. I. (2013). "Deduction of the primary management works for reduction of the environmental loads at the construction phases." The Korea Institute of Building Construction, Vol. 13, No. 1, pp. 144-145 (in Korean).
  6. Joaquin, D. and Laura, A. A. (2014). "Sustainable construction approach through integration of LCA and BIM tools." Omputing in Civil and Building Engineering, Vol. 1, pp. 283-290, DOI : https://doi.org/10.1061/9780784413616.036.
  7. Jullien, A., Dauvergne, M. and Cerezo, V. (2014). "Environmental assessment of road construction and maintenance policies using LCA." Transportation Research Part D, Vol. 29, pp. 56-65, DOI : https://doi.org/10.1016/j.trd.2014.03.006.
  8. Kang, M. H. and Park, H. K. (2013). "A study of the combination method for earthwork equipments using the environmental loads and costs." Korean Society of Civil Engineers, Vol. 33, No. 3, pp. 1215-1224, DOI : http://dx.doi.org/10.12652/Ksce.2013.33.3.1215 (in Korean).
  9. Kim, B. S. and Jang, W. S. (2013). "A study on comparing the $CO_2$ emission estimating result for construction equipment." Korean Society of Civil Engineers, Vol. 33, No. 4, pp. 1675-1682, DOI : http://dx.doi.org/10.12652/ksce.2013.33.4.1675 (in Korean).
  10. Kwak, I. H., Park, K. H., Hwang, Y. W. and Park, J. H. (2012). "Development and application of carbon emissions estimation methodology during the life cycle of road." Environmental Engineering Research, Vol. 34, No. 6, pp. 382-390, DOI : https://doi.org/10.4491/ksee.2012.34.6.382 (in Korean).
  11. Lee, J. G., Tae, S. H., Chae, C. U., Kim, R. H. and Roh, S. J. (2015). "A study on the analysis of $CO_2$ emission in the apartment housing construction." Architectural Institute of Korea, Vol. 35, No. 1, pp. 403-404 (in Korean).
  12. Lee, J. H., Shim, J. A. and Kim, K. J. (2016). "Analysis of environmental load by work classification for NATM tunnels." Journal of the Korean Society of Civil Engineers, Vol. 36, No. 2, pp. 307-315, DOI : http://dx.doi.org/10.12652/ksce.2016.36.2.0307 (in Korean).
  13. Lee, S. G., Kang, G. N., Lee, M. D., Cho, H. H. and Kang, K. I. (2012). "Indicators for environmental performance assessment of construction activities." The Korea Institute of Building Construction, Vol. 12, No. 1, pp. 145-146 (in Korean).
  14. Lee, S. W. and Kim, S. K. (2010). "An environment impact assessment of a wastewater reuse facility using life-cycle cost analysis (LCA)." Proceeding Korean Society of Civil Engineers, Vol. 36, pp. 1172-1175 (in Korean).
  15. Lee, S. W. and Kim, S. K. (2011). "Life-Cycle Assessment (LCA) for eco-design in a wastewater reuse facility." Journal of the Korean Society of Civil Engineers, Vol. 31, No. 2, pp. 255-266 (in Korean).
  16. Mroueh, U. M., Eskola, P. L. and Ylijoki, J. (2000). "Life cycle analysis of road construction," Final Report, Teilatos, Finish National Road Administration Helsinki (Finland), p. 65.
  17. Ortiz, O. O., Pasqualino, J. and Castells, F. (2010). "Environmental assessment based on life cycle analysis (LCA) in the construction phase of a building in catalonia." Asociacion De Quimicos, Vol. 1, No. 547, pp. 175-181.
  18. Park, J. Y. and Kim, B. S. (2015). "A study on the extraction of the environmental load impact factors for earth work in road projects." Proceeding Korean Society of Civil Engineers, Vol. 38, pp. 27-28 (in Korean).
  19. Park, P. J., Kim, M. Y. and Yi, I. S. (2009). "Analysis $CO_2$ emission intensity per industry using the input-output tables 2003." Korea Environmental Economics Association, Vol. 18, No. 2, pp. 279-311 (in Korean).
  20. Pontarollo, G. and Smith, T. (2001). "A life cycle analysis of the environmental impacts of asphalt and concrete road." IRF World Road Congress, Paris.
  21. Roh, S. J., Tae, S. H., Kim, T. H. and Kim, R. H. (2013). "A study on the comparison of characterization of environmental impact of major building material for building life cycle assessment." Journal of the Architectural Institute of Korea Structure & Construction, Vol. 29, No. 7, pp. 93-100 (in Korean). https://doi.org/10.5659/JAIK_SC.2013.29.7.93
  22. Yu, B. and Lu, Q. (2012). "Life cycle assessment of pavement : Methodology and Case Study." Transportation Research Part D, Vol. 17, No. 5, pp. 380-388, DOI : https://doi.org/10.1016/j.trd. 2012.03.004.

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