ORIGNAL PAPER : A STUDY ON THE KINETICS OF THERMAL DEGRADATION OF AUTOMOBILE SHREDDER RESIDUE

원저 : 폐자동차에서 발생되는 ASR의 반응 속도론적 연구

Jeong, Hyeon-Tae;Kim, Gi-Heon;Nam, Hun;Kim, Yeong-Ran;Hong, Jon-Hui;Yu, Tae-Uk;Park, Jin-Ho;Seo, Yong-Chil
정현태;김기헌;남훈;김영란;홍존희;유태욱;박진호;서용칠

  • Published : 20030000

Abstract

Keywords

References

  1. www.kama.or.kr
  2. www.kasa.or.kr/bbs_board_file/statistics/statistics-list.asp
  3. BMW : BMW Environmental Report, 1997/98-2000
  4. Das S, Curlee TR, Rizy CG, Schexnayder SM. : Automobile recycling in the United States: energy impacts and waste generation. Resource Conservation Recycle, Vol. 14, pp. 265-284 (1995) https://doi.org/10.1016/0921-3449(95)00021-A
  5. Anonymous Secondary reclamation of plastics waste, Research Report-Phase 1, Plastics Institute of America, Inc., Stevens Institute of Technology, Castle Point, Hoboken, NJ 07030 (1986)
  6. Anonymous Recycling and the automobile, Automotive Engineering, October, pp. 41-57 (1992)
  7. Lanoir D, Trouve G, Delfosse L, Froelich D, Kassamaly A : Physical and chemical characterization of automotive shredder residues, Waste Management Research, Vol. 15, pp. 261-276 (1997)
  8. Lee CH : Management of scrap car recycling, Research Conservation and Recycling, Vol. 20, pp. 207-217 (1997) https://doi.org/10.1016/S0921-3449(97)00018-9
  9. Day M, Shen J. : Automobile shredder residue: an assessment of thermal recycling ad a recovery option, NRCC ICPET Report, Ottawa, Canada (1997)
  10. M. Day, J. Graham, R. Lachmansing, E. Chen, Res. Conserv., Recycl. Vol. 9 (1993)
  11. Caputo DL. Automobile shredder residue: options and implications. J. Environ. Permits. Vol. 4, No.3, pp. 51-58 (1995)
  12. M. Day, J.D. Cooney, Z. Shen Pyrolysis of automobile shredder residue: an analysis of the products of a commercial screw kiln process, Journal of Analytical and Applied Pyrolysis, Vol. 37, pp. 49-67 (1996) https://doi.org/10.1016/0165-2370(96)00938-2
  13. M. Day, Z. Shen, J.D. Cooney : Pyrolysis of auto shredder residue: experiments with a laboratory screw kiln reactor, Journal of Analytical and Applied Pytolysis, Vol. 51 pp. 181-200 (1999) https://doi.org/10.1016/S0165-2370(99)00016-9
  14. Shen Z, Day M, Cooney JD, Lu G, Briens CL, Bergougnou MA : Ultrapyrolysis of automobile shredder residues, Can. J. Chem. Eng., Vol. 73, pp. 357-366 (1995)
  15. Day M, Graham J, Lachmansingh R, Chen E : Characterization of auto Shredder residue-a Canadian perspective, Research Conservation Recycle, Vol. 9, pp. 29-31 (1993)
  16. Day M Automotive Shredder residue: three recovery choices, Automotive Eng., Vol. 102, No.8, pp. 29-31 (1994)
  17. R. Voyer : Technico economic and environmental study of the processes for the treatment of residues from the salvaging of cars, Centre de Recherche Industrial Du Quebec, Report VPOIT-91-098, 739-PE02996, April (1992)
  18. ED : 20000/531EC, Directive of European Parliament and of the council (2000)
  19. C. Roy, A. Chaala, Vacuum pyrolysis of automobile shredder residues, Resources, Conservarion and Recycling, Vol. 32, pp. 1-27 (2001) https://doi.org/10.1016/S0921-3449(00)00088-4
  20. Japan Automobile Manufacturers Association Strategy of Recycling ELVs, JAMA Report (1999)
  21. Shuji Iida : Development of batch-type dry distillation/gasification technology for ASR (automobile sherdder residue, Technical Notes JSAE Review, Vol. 20, pp. 259-279 (1999) https://doi.org/10.1016/S0389-4304(99)00002-8
  22. 현대자동차 : 친환경적인 ASR 처리를 위한 기초기술연구 (2002)
  23. 서용칠, 김기헌, 정현태, 남훈, 홍존희, 유태욱 : 폐자동차에서 발생되는 Shredder Dust의 최적처리방안 연구, 폐기물학회추계학술 발표, pp. 150-153 (2002)
  24. 김영성, 조성호, 손재익 : 플라스틱 열분해의 생성물 회수 특성 II. PVC의 열분해, HWAHAK KONGHAK, Vol. 30, No.4, pp. 261 (1992)
  25. H. Bockhom, A. Hornung, U. Hornung, S. Teepe, J. Weichmann Investigation of the Kinetics of Thermal Degradation of Commodity Plastics, Combustion Science and Technology, pp. 166-177 (1996)
  26. Wesley WM. Wendlandt : Thermal Methods of Analysis, John WILEY & SONS, 2nd Ed (1974)
  27. 김명수, 오세천, 이해평, 김회택, 류경옥 : 폴리에틸렌 열분해의 속도론적 연구, J. Korean Ind. Eng. Chem, Vol. 10, No. 4, pp. 548-556 (1999)
  28. 유종익, 서용칠, 이민기, Manfred Born : 챠르의 입경분포와 물질수지 및 가스분석을 이용한 폐차장 분쇄폐기물의 최적 열분해 온도 추정, 한국폐기물학회, Vol. 16, No. 6, pp. 624-631 (1999)
  29. 김승도, 박상열 : 폐 PVC 파이프 열분해에 대한 연구 1. 반응 동역학 모델, 한국폐기물학회지, Vol. 17, No.7, pp. 824-832 (2000)
  30. E. S. Freeman, B. Carroll The application of thermoanalytical techniques to reaction kinetics, J. Phys. Chem., Vol. 62, pp. 394-397 (1958) https://doi.org/10.1021/j150562a003
  31. A. W. Coats, J. P : Redfern, Kinetic Parameters from Thermogravimetic Data, NATURE, 201, pp. 68. (1964) https://doi.org/10.1038/201068a0
  32. 박준하 : 도시쓰레기의 열적특성에 과한 연구, 창원대학교 (1995)
  33. 서용칠, 이성준 : 산화 분위기에서의 단일 폐기물 성분과 혼합폐기물의 열적감량 연구, 한국폐기물학회지, Vol. 15, No. 5, pp. 498-507 (1998)