DOI QR코드

DOI QR Code

A study on inspection methods for waste treatment facilities(I): Derivation of impact factor and mass·energy balance in waste treatment facilities

폐기물처리시설의 세부검사방법 마련연구(I): 공정별 주요인자 도출 및 물질·에너지수지 산정

  • Pul-Eip Lee (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research) ;
  • Eunhye Kwon (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research) ;
  • Jun-Ik Son (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research) ;
  • Jun-Gu Kang (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research) ;
  • Taewan Jeon (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research) ;
  • Dong-Jin Lee (Waste-to-Energy Research Division, Environmental Resources Research Department, National Institute of Environmental Research)
  • 이풀잎 (국립환경과학원 환경자원연구부 폐자원에너지연구과 ) ;
  • 권은혜 (국립환경과학원 환경자원연구부 폐자원에너지연구과 ) ;
  • 손준익 (국립환경과학원 환경자원연구부 폐자원에너지연구과 ) ;
  • 강준구 (국립환경과학원 환경자원연구부 폐자원에너지연구과 ) ;
  • 전태완 (국립환경과학원 환경자원연구부 ) ;
  • 이동진 (국립환경과학원 환경자원연구부)
  • Received : 2023.03.10
  • Accepted : 2023.03.19
  • Published : 2023.03.30

Abstract

Despite the continuous installation and regular inspection of waste treatment facilities, complaints about excessive incineration and illegal dumping stench continue to occur at on-site treatment facilities. In addition, field surveys were conducted on the waste treatment facilities currently in operation (6 type) to understand the waste treatment process for each field, to grasp the main operating factors applied to the inspection. In addition, we calculated the material·energy balance for each main process and confirmed the proper operation of the waste disposal facility. As a result of the site survey, in the case of heat treatment facilities such as incineration, cement kilns, and incineration heat recovery facilities, the main factors are maintenance of the temperature of the incinerator required for incineration and treatment of the generated air pollutants, and in the case of landfill facilities Retaining wall stability, closed landfill leachate and emission control emerged as major factors. In the case of sterilization and crushing facilities, the most important factor is whether or not sterilization is possible (apobacterium inspection).In the case of food distribution waste treatment facilities, retention time and odor control during fermentation (digestion, decomposed) are major factors. Calculation results of material balance and energy resin for each waste treatment facility In the case of incineration facilities, it was confirmed that the amount of flooring materials generated is about 14 % and the amount of scattering materials is about 3 % of the amount of waste input, and that the facility is being operated properly. In addition, among foodwaste facilities, in the case of an anaerobic digestion facility, the amount of biogas generated relative to the amount of inflow is about 17 %, and the biogas conversion efficiency is about 81 %, in the case of composting facility, about 11 % composting of the inflow waste was produced, and it was comfirmend that all were properly operated. As a result, in order to improve the inspection method for waste treatment facilities, it is necessary not only to accumulate quantitative standards for detailed inspection methods, but also to collect operational data for one year at the time of regular inspections of each facility, Grasping the flow and judging whether or not the treatment facility is properly operated. It is then determined that the operation and management efficiency of the treatment facility will increase.

폐기물처리시설의 지속적인 설치·정기검사에도 불구하고 현장 처리시설에서는 과다소각, 불법투기 악취 등에 대한 민원이 지속적으로 발생하는 것으로 보아 현재의 폐기물처리시설 설치정기 검사방법의 개선이 필요하다고 판단되었다 이에 현재 운영중인 폐기물처리시설(6개분야)을 대상으로 현장조사를 실시하여 각 분야별 폐기물처리공정을 파악하고 검사에 적용된 주요한 운영인자를 파악하고, 주요공정별 물질·에너지수지를 산정하여 폐기물처리시설의 적정 운영 여부를 확인하였다. 주요 운영인자 조사 결과 소각 및 시멘트 소성로, 소각열회수시설 등의 경우 소각에 필요한 소각로의 온도 유지 및 발생되는 대기오염물질의 처리가 가장 주요한 인자였으며, 매립시설의 경우 옹벽의 안정성, 매립 후 발생되는 침출수 및 배출가스 관리가 주요한 인자로 나타났다. 멸균·분쇄시설의 경우 멸균여부(아포균검사)가 가장 중요한 주요인자 이었으며, 음식물류폐기물처리시설의 경우 발효(소화, 부숙) 시 체류시간 및 악취관리가 주요한 인자로 나타났다. 또한 물질에너지수지 산정 결과 소각시설의 경우 폐기물 투입량 대비 바닥재 발생량은 약 14%, 비산재 발생량은 약 3%로 적정 운영되고 있을을 확인하였다. 또한 음식물류폐기물시설 중 혐기성분해시설의 경우 유입량 대비 바이오가스 발생량은 약 17%, 바이오가스 전환효율은 약 81%로 나타났고, 퇴비화시설의 경우 유입폐기물 대비 약 11%의 퇴비가 생산되어 모두 적정운영 되고있음을 확인하였다. 이에 따라 폐기물처리시설 검사방법의 고도화를 이루기 위해 세부검사방법의 정량적 기준 적립 뿐만 아니라 각 시설의 정기검사 시 1년간의 운영자료 등을 수집하여 폐기물의 흐름을 파악하고 처리시설의 적정운영 여부를 판단한다면, 처리시설의 운영 및 관리효율이 상승할 것으로 판단된다.

Keywords

Acknowledgement

이 논문은 환경부의 재원으로 국립환경과학원의 지원을 받아 수행하였습니다. (NIER-2022-01-01-049) 이에 감사드립니다.

References

  1. Ministry of the environment, "2019 Waste treatment business and installation and management of waste treatment facilities evaluation result report", pp. 2~35. (2020). 
  2. Newsis, 'Waste business cancellation dispute' End of Cheongju-Clenko argument, https://newsis.com/view/?id=NISX20211024_0001624756 (Accession date: March 04, 2021) 
  3. Ministry of the environment, "Environment press release(Continued promotion of illegal waste disposal and eradication measures)", pp. 1~15. (2020). 
  4. Maeil business newspaper, 158 cases of unfair gain through illegal dumping and neglect of waste were exposed, https://www.mk.co.kr/news/society/view/2021/11/1095795/ (Accession date: March 04, 2021) 
  5. Chungcheong Today, The site of stabilization of the waste landfill in Wangam-dong, Jecheon, https://www.cctoday.co.kr/news/articleView.html?idxno=1115990 (Accession date: March 04, 2021) 
  6. Ministry of Environment, "Waste management legislation, "Inspection of waste treatment facility"", low-18318, (2021). 
  7. National Institute of Environmental Research, "A study on the inspection method for waste treatment facilities", pp. 5~7. (2021). 
  8. Ministry of the environment and National Institute of Environmental Research, "Waste statistics Data Book(Resource.recycle.waste to energy)", pp.117~132. (2020). 
  9. Korea Environmental and Social Policy Institute, "Seminar on problems and improvement measures of small incinerator performance inspection and contamination inspection", (2000). 
  10. Korea Environment Coporation, "Reporting on the results of overseas business trips to improve diagnostic technology for waste treatment facilities(incineration and landfill)", (2017). 
  11. Jeong, J. C., Kang, D. S., Kim, K. K., Kim, N. C., Kim, H. S., No, K. H., Park, S. H., Park, J. H., Yoo, H. C., Lee, N. H., Lee, U. S., Jung, I. H., Jang, S. H., Cho, J. G. and Huh, G., "Waste treatment", Donghwa technology, pp. 409~503. (2004). 
  12. Ministry of environment, "Practical lesson plan for landfill facility operation", (2021). 
  13. Sudokwon landfill site management corporation, "Landrill site management technology", (2021). 
  14. Yu, J. J. and Lee, Y. S., "HDPE waterproof sheet construcion management for waste landfill facilities", J. of KGSS, 13(3), pp. 15~19. (2014). 
  15. Korea institute of civil engineering and building technology, "Research on design and construction technology for waste landfill facilities", (1998).
  16. 1 6. Shin, E. C., Huh, Y., Lee, G. H. and Oh, Y. I., "Engineering properties of GCLs and Stability analysis of waste landfill", 2, pp. 461~464. (1999). 
  17. Kim, R., "Case study on slope stability of bioreactor landfill with leachate level in urban area", Graduate School of Industry, Yonsei university, pp. 1~20. (2017). 
  18. Yu, J. C., "Study on the Reduction Solution and Survey of Internal Air Quality for Dome-type Landfill Facilities", Graduate School of Industry, Kumoh National Institute of Technology, pp. 2~4. (2018). 
  19. National Institute of Environmental Research, "Q&A about domestic waste landfill", (2020). 
  20. Ministry of environment, "Landfill gas recycling project of Sudokwon landfill site management corporation", (2014). 
  21. Korea cnvironment institute, "Analyzes of cyclicling use potential of landfill resources and formulation of future landfill management strategies", (2017). 
  22. Oh, Y. I., "Direction of improvement of post management system closede landfill site in South Korea", KGSS, 9(2), pp. 30~35. (2010). 
  23. Kim, S. P., "A study on the developing status of crack and differential settlement in a landfill final cover system", Graduate School of Industry, Inha university, pp. 4~24. (2009). 
  24. Kelim ceramics, "Closed landfill environmental impact study report for post-management termination", (2019). 
  25. Park, T. H., "The study on the efficient way to manage post-landfill", Graduate School of Industry, Kyungpook National University, pp. 36~59. (2011). 
  26. National Institute of Environmental Research, "Research to establish management standards and inspection guidelines for waste heat treatment facility inspection institution", (2013). 
  27. Ministry of Environment, "Waste treatment facility installation work manual", (2004). 
  28. Notification of Rural Development Administration, "Setting and specifying fertilizer process specifications", 2019-38, (2019). 
  29. Korea Cement Association, "Cement Industry Process Characteristics and Recycling of Recyclable Resources", (2014). 
  30. Ministry of the Environment, "Household Waste Division Ash from burning household waste becomes wealth", (2007). 
  31. Ministry of the Environment, "Waste incineration facility installation.operation guidline commentary-revision", pp. 83~85. (2012). 
  32. An, H. Y., "A Study on Economic Efficiency and Environmental through Material Flow Analysis (MFA) of Food Waste", Graduate School of Industry and Engineering, Seoul National University of Science and Technology, pp. 40~66. (2012). 
  33. Lee, D. J., Namgung, H., Kwon, J. H., Lee, W. B., Lee, P. E., Lee, W. S., Shin, S. K. and Yoo, M. S., "Feasibility on alternative treatment methods of pig-feeding foodwaste - Anaerobic digestion of foodwaste with combined sewage sludge -", NIER, pp. 30~35. (2020). 
  34. Lee, D. J., Yoon, Y. S., Kim, K. Y., Kang, J. G., Park, H. Y., Moon. H. S., Bae, J. S., Jeon, T. W. and Lee, Y. G., "Optimal operation of biogas production and utilization of organic waste(II) - Part of transportation gas and city gas -", NIER, pp. 43~44. (2018).