Browse > Article

Combustion Characteristics and Kinetics Parameters of Thermal-treated Sewage Sludge/coal Blends  

Park, Sang-Woo (Department of Civil & Environmental Engineering, Hanbat National University)
Jang, Cheol-Hyeon (Department of Civil & Environmental Engineering, Hanbat National University)
Abstract
The combustion characteristics and kinetic parameters of thermal-treated sludge, coal, and sludge/coal blends were investigated, and the corresponding results are given as follows: In the case of the differential thermogravimetric (DTG) characteristics below $300^{\circ}C$, two peaks were observed, and therefore, over $300^{\circ}C$, only a single peak was observed. As for the parameters for the combustion characteristics, initial temperature (IT) was slightly high because of the high thermal treatment temperature of the sludge, and hence, even burnout temperature (BT) showed similar results. The sludge/coal blends had different proportions of IT and BT, depending on the type of coal. The optimum reaction order values ranged from 4.0 to 4.2 for the devolatilization step, whereas the values for the char combustion step ranged from 1.4 to 2.3. These values were higher than that of coal, whose values ranged from 1.1 to 1.3. The activation energy of the sludge/coal blend depended on the type of coal; however, the activation energy decreased as the of amount of sludge increased. Therefore, the pre-exponential factor (A) of combustion of the sludge/coal blend was lower than that of a single combustion of only coal. It was found that due to the low reaction rate constant (k) values, the combustion rate was low.
Keywords
Sewage sludge; Combustion characteristics; Kinetics parameters; Thermogravimetric analysis;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
연도 인용수 순위
1 Carpenter, A. M. : Coal blending for power stations, IEACR/81, London, UK, IEA Coal research (1995)
2 김미영, 김재관, 이현동, 김성철 : 하수 슬러지-역청탄 혼합물의 연소특성, 한국공업화학회 프로시딩, 응용화학, Vol. 13, No. 1, pp. 93-96 (2009)
3 이현동, 김재관, 김미영, 부창진, 김성철 : 국내 하수슬러지와 무연탄의 혼합 연소특성, 한국공업화학회 프로시딩, 응용화학, Vol. 12, No. 2, pp. 345-348 (2008)
4 Amari, T., Tanaka, M., Koga, Y., Okuno, S. and Tajima, A. : Biomass solid fuel from sewage sludge with pyrolysis and co-firing in coal power plant, in : proceedings of the Japan Society of Mechanical Engineers, 2006 Symposium on Environmental Engineering, 11 July 2006, Japan, pp. 151-153 (2006)
5 Koga, Y., Oonuki, H., Amari, T., Endo, Y., Kakurata, K. and Ose, K. : Biomass solid fuel production from sewage sludge with pyrolysis and co-firing in coal power plant, Mitsubishi Heavy Industries Technical Review, Vol. 44, No. 2, pp. 43-46 (2007)
6 박상우, 장철현 : 비등온 열중량분석에 의한 탄화슬러지의 연소특성 평가, 한국폐기물자원순환학회지, Vol. 27, No. 5, pp. 422-430 (2010)
7 Vyazovkin, S., Burnham, A. K., Criado, J. M., Perez-Maqueda, L. A., Popescu, C. and Sbirrazzuoli, N. : ICTAC Kinetics Committee recommendations for performing kinetic computations on thermal analysis data, Thermochimica Acta, Vol. 520, pp. 1-19 (2011)   DOI
8 환경부 생활하수과 : 전국 하수처리시설별 소화조 설치 운영현황 (민원 신청번호 : 1AA-1001-030889) (2010)
9 Yuan, J. H., Xu, R. K. and Zhang, H. : The forms of alkalis in the biochar produced from crop residues at different temperatures, Bioresource Technology, Vol. 102, No. 3, pp. 3488-3497 (2011)   DOI
10 Wang, C., Liu, Y., Zhang, X. and Che, D. : A study on coal properties and combustion characteristics of blended coals in Northwestern China, Energy Fuels, Vol. 25, pp. 3634-3645 (2011)   DOI
11 Coats, A. W. and Redfern, J. P. : Kinetic parameters from thermogravimetric data, Nature, Vol. 201, pp. 68-69 (1964)   DOI
12 Cumming, J. W. : A DTG combustion study on anthracitic and other coal chars, Thermochimica acta, Vol. 155, pp.151-161 (1989)   DOI
13 Fernando, R. : Cofiring of coal with waste fuels, CCC/126, London, UK, IEA Clean Coal Centre (2007)
14 Tsuji, H., Hashimoto, N., Shirai, H. and Makino, H. : A study on combustion characteristics of dried sludge pellets by use of a pulverized coal combustion test furnace, Journal of the Japan Insititute of Energy, Vol. 88, No. 5, pp. 422-429 (2009)   DOI
15 Folgueras, M. B., Diaz, R. M. and Jorge xiberta, I. P. : Thermogravimetric analysis of the co-combustion of coal and sewage sludge, Fuel, Vol. 82, pp. 2051-2055 (2003)   DOI
16 박상우, 장철현 : 석탄대체연료로서 하수슬러지의 연료특성에 관한 연구, 한국폐기물자원순환학회지, Vol. 27, No. 5, pp. 431-437 (2010)
17 Kim, J. K. and Lee, H. D. : Investigation on the combustion possibility of dry sewage sludge as a pulverized fuel of thermal power plant, Journal of Industrial and Engineering Chemistry, Vol. 16, pp. 510-516 (2010)   DOI
18 Artos, V. and Scaroni, A. W. : T.g.a. and drop-tube reactor studies of the combustion of coal blends, Fuel, Vol. 72, No. 7, pp. 927-933 (1993)   DOI
19 Pan, W. P., Gan, Y. and Serageldin, M. A. : A study of thermal analytical values for coal blends burned in an air atmosphere, Thermochimica acta, Vol. 180, pp. 203-217 (1991)   DOI
20 Vamvuka, D. and Sfakiotakis, S. : Combustion behaviour of biomass fuels and their blends with lignite, Thermochimica Acta, Vol. 526, pp. 192-199 (2011)   DOI
21 Cumming, J. W. : Reactivity assessment of coals via a weighted mean activation energy, Fuel, Vol. 63, No. 10, pp. 1436-1440 (1984)   DOI