Search / Korean Journal of Chemical Engineering
Korean Chemical Engineering Research,
Vol.47, No.2, 230-236, 2009
하수슬러지 케익으로부터 생산한 탄화물의 에너지 특성
An Energy Characteristics of Carbonization Residue produced from Sewage Sludge Cake
국내 하수슬러지는 2012년부터 런던협약에 의해 해양투기가 금지될 예정에 있어 이에 대한 처리방법이 절실한 실정이다. 본 연구에서는 하수슬러지 케익을 재활용하기 위한 방법으로 탄화공정을 이용하여 탄화물 제조 및 에너지 특성에 대한 검토를 실시하였다. 하수슬러지 케익의 기초적 특성과 조성에 의하면, 하수슬러지 케익에는 27%의 인산염이 포함되어 있으며 이는 환원제로서 유해물질 처리에 이용될 수 있다. 하수슬러지 케익의 발열량을 파악한 결과, 저위발열량은 38.7 kcal/kg으로 하수슬러지 케익을 탄화하지 않고 직접 에너지원으로 사용하는 것은 바람직하지 않다. 하수슬러지 케익의 탄화공정에서 최적 탄화온도와 최적 탄화시간은 250 ℃와 15분으로 설정되었다. 이 조건에서의 탄화물의 발열량은 비교적 낮아 하수슬러지 케익 탄화물 자체는 신재생 에너지원으로의 가능성은 크지 않다고 판단되나 인산염이 27% 정도가 포함되어 있어 다른 유기성 폐기물과 혼합하여 탄화하는 것이 적합하다고 판단되었다.
Sewage sludge cake(SSC) is seriously concerned because ocean dumping, which is the cheapest treatment method now, will be banned in 2012. On the basis of this reason, recycling of SSC is emphasized to convert the treatment method. One of the method to recycling SSC could be carbonization process which also can be reduced greenhouse gas effectively. And carbonization residue of SSC produced by carbonization process can become a renewable energy source. However, carbonization process has not been evaluated by considering basic operating data such as heating value, yield and fuel ratio. In this study, the basic characteristics of SSC such as proximate analysis, elementary analysis and heating value are analyzed. In carbonization process, the effect of carbonization temperature and time on the residue of SSC are estimated. And the analysis is carried out to obtain basic properties of the residue of SSC. From the result of chemical composition of SSC residue, there is 27% of phosphate in SSC. Phosphate will take a role of reductant to convert from hazardous substance to non-hazardous material. As increased carbonization temperature and time, heating value and yield are decreased but fuel ratio(fixed carbon/volatile combustible) of the residue is increased. In the carbonization process, the optimum temperature and time in carbonization test for SSC can be decided by 250 ℃ and 15 min, respectively. However, the carbonization residue of SSC can not be deserved to use one of renewable energy sources because the heating value at the optimum condition is relatively low. Hence, it is desirable that SSC can be mixed with other organic waste to carbonize.
[References]
  1. Lee HS, Lee JY, Bae SK, Kang SH, Yoon OS, J. Korea Society of Waste Management, 11, 31, 2006
  2. Park SW, Jang CH, Kim SS, J. Korea Society of Waste Management, 19, 418, 2002
  3. Najla G, Kamel H, Andre Z, Foued H, Maderas Ciencia Tecnologia, 9, 15, 2007
  4. Kazuhiro M, Lloyd SP, Michael AAJ, “Flash Carbonization of Biomass,” AIChE Annual Meeting, Indianapolis, Nov., IN, 2002
  5. Jung DH, Song JS, Lee JH, Chun YN, J. Korea Society of Waste Management, 24, 448, 2007
  6. Lee HY, Kim YJ, “Characteristics and Utilization of Carbonization Residue Prodeced from Sewage Sludge,” 24(7), 581-590, 2007
  7. Ministry of Environment: A Current Status of National Waste Generation and Treatment 2006, 2007
  8. Ministry of Environment: A National Plan on Waste Management 2nd Edition, 2002
  9. Ministry of Environment: A National Plan on Sewage Sludge Management, 2007
  10. Park SW, J. Korea Society of Waste Management, 22, 226, 2005
  11. Mun SP, Ku CS, Park SB, J. Ind. Eng. Chem., 13(1), 127, 2007
  12. Su CI, Wang CL, Fibers and Polymers, 8, 482, 2007
  13. Lee OK, Jo TS, Choi JW, Wood Science and Technology, 35, 21, 2007
  14. Park NS, “A Study on the Physico-Chemical and Adsorption Characteristic of Carbonized Sludge,” Graduate School of Industy, University of Incheon, 2007
  15. Hwang BH, Woodbiomass, Sunjin, 45, 70, 1998
  16. McMurry, John., Organic Chemistry, Thomson-Brooks/Cole, 1992
  17. Rhee SW, Cho YH, J. Korea Society of Waste Management, 25, 533, 2008
  18. The Merck Index, 12th Ed., Merck & Co., Inc., Whitehouse Station, 1996