[1]
TANG Mingxing, on status of sludge in urban sewage treatment plant and its treatment strategy [J]. SHANXI ARCHITECTURE, 2009, 37 (14):54-60.
Google Scholar
[2]
Navaee-Ardeh, S.; Bertrand, F.; Stuart, P.R, Emerging biodrying technology for the drying of pulp and paper mixed sludge [J]. Drying Technology, 2006, 24 (7):863–878.
DOI: 10.1080/07373930600734026
Google Scholar
[3]
Ilic, M., and Turner, .I.W., Drying of a Wet Porous Material [J]. Applied Mathematical Modeling, 1996, 10: 16-24.
Google Scholar
[4]
Chen Qunyu, The current situation of biodrying in sewage sludge [J].China resources comprehensive utilization, 2010, 29(2) 64-67.
Google Scholar
[5]
S.A. Channiwala,P.Parikh, A unified correlation for estimating HHV of solid, liquid and gaseous fuels [J] .Fuel, 2002, 81 :1051-1063 .
DOI: 10.1016/s0016-2361(01)00131-4
Google Scholar
[6]
Shizas, I, Bagley, D. M, Experimental Determination of Energy Content of UnknownOrganics in Municipal Wastewater Streams [J], Energy. Eng. 2004, 130:45-53.
DOI: 10.1061/(asce)0733-9402(2004)130:2(45)
Google Scholar
[7]
THOMAS K M., Hydrogen adsorption and storage on porous materials [J] .Catalysis Today, 2007, 120 (3/4):389-398.
DOI: 10.1016/j.cattod.2006.09.015
Google Scholar
[8]
Shou D H, Fan J T, Ding F, A difference-fractal model for permeability of fibrous porous media [J] .Phys Lett A, 2010, 374:1201-1204.
DOI: 10.1016/j.physleta.2010.01.002
Google Scholar
[9]
Chai Lihe, Statistical dynamic features of sludge drying systems [J]. International Journal of Thermal Sciences, 2007, 46 (8): 802-81 1.
DOI: 10.1016/j.ijthermalsci.2006.10.011
Google Scholar
[10]
Leonard A, Blacher S, Marchot P, et al. Convective drying of wastewater sludge: Influence of air temperature, superficial velocity, and humidity on the kinetic[J] .Drying Technology, 2005, 23 (8): 1667-1679.
DOI: 10.1081/drt-200065082
Google Scholar
[11]
Tsang, K.R; Vesilind, P.A, Moisture distribution in sludge [J].Water Science and Technology, 1990, 22(12):135-142.
Google Scholar
[12]
Frei, K.M., Cameron, D., Stuart, P.R, Novel drying process using forced aeration through a porous biomass matrix[J],Drying Technology ,2004,22(5):1191-1215.
DOI: 10.1081/drt-120038587
Google Scholar
[13]
Geankoplis, C. J., Transport processes and unit operations. 3rd edition. Prentice Hall, 1993, .NJ, USA.
Google Scholar
[14]
Haug, R.T. The Practical Handbook of Compost Engineering. 1st edition, Lewis Publishers, Boca Raton, 1993, FL, USA.
Google Scholar
[15]
Madigan, M.T., and Martinko, J.M. Brock Biology of Microorganisms. 6th edition, Upper Saddle River, 2006, NJ: Prentice Hall.
Google Scholar
[16]
Navaee-Ardeh, S., Bertrand, F., and Stuart, P.R. Development and experimental evaluation of a 1-D distributed model of transport phenomena in a continuous biodrying process for pulp and paper mixed sludge[J]. Drying Technology.2009, 10:321-330.
DOI: 10.1080/07373937.2010.482723
Google Scholar
[17]
Bari, Q.H., Koenig, A., and Guihe, T, Kinetic analysis of forced aeration composting: I. Reaction rates and temperature [J], Waste Management & Research, 2008, 18(4):303-312.
DOI: 10.1034/j.1399-3070.2000.00114.x
Google Scholar
[18]
Perry, R. H. and Green, D. W, Perry's chemical engineers' handbook. 6th edition, 2006, McGraw-Hill, USA.
Google Scholar
[19]
S. Navaee-Ardeh, F. Bertrand and P.R. Stuart , Modeling and Experimental Verification of a Novel Biodrying Process for Drying Pulp and Paper Sludge .The 4th Inter-American Drying Conference in 8th World Chemical Engineering Conference 2009.
DOI: 10.1080/07373937.2010.482723
Google Scholar
[20]
Shahram Navaee-Ardeh, Francois Bertrand, Paul R. Stuart, A 2-D Distributed Model of Transport Phenomena in a Porous Media Biodrying Reactor [J], Drying Technology ,2011, 29(2): 153-162.
DOI: 10.1080/07373937.2010.482724
Google Scholar