A.E.S. Green and R.P. Chaube
[1] A. Green, Overview of ICCDF, Proc. ICCDF, Gainesville, FL,February 2003, in press. [2] A. Green (ed.), An alternative to oil: Burning coal with gas(Gainesville, FL: University Presses of Florida, 1981). [3] A. Green & K.M. Pamidimukkala, Kinetic simulation of thecombustion of gas/coal and coal/water mixtures, Proc. 1stInt. Conf. on Combined Combustion of Coal and Gas, CaseWestern University, Cleveland, OH, 1982, 1–15. [4] A. Green & K.M. Pamidimukkala, Oil backout and acid rainin A.E.S. Green & W.H. Smith (Eds.), Acid deposition, causesand effects, (Rockville, MD: Government Institutes Inc., 1983)130–152. [5] A. Green and K. Pamidimukkala, Energy, Synergistic Combustion of Coal with Natural Gas, The International Journal, 9 (6), 477–484, 1984. [6] A. Green, J. Wagner, W. Gattle, B. Green, J. Schwartz, P.West, & E. Mize, Coal-water-gas: An all-American fuel foroil boilers, Proc. 11th Int. Conf. on Slurry Technology, HiltonHead, SC, 1986, 251–262. [7] Fuel and combustion technology (FACT), in A. Green (Ed.),Co-combusion, 4 (New York: Div. American Society of Mechanical Engineers (ASME), 1988). [8] H. Kobayashi, J.B. Howard, & A.F. Sarofim, Coal devolatilization at high temperatures, 16th Int. Symp. on Combustion, Combustion Institute, Pittsburgh, PA, 1976, 411–425. [9] A. Green, Nuclear physics, Int. series of physics (New York:McGraw-Hill, 1955). [10] A. Green (Ed.), Solid fuel conversions for the transportationsector, Proc. ASME-FACT, New York, 1991. [11] P. Tromp, F. Kapteijm, & J. Moulijn, Characterization of coalpyrolysis, in P. Tromp and F. Kapteijm (Eds.), Coal characterization for conversion processes (Amsterdam: Elsevier, 1992) 45–56. [12] R. Graham, M. Bergougnou, & B. Freel, The kinetics of vapor-phase cellulose fast pyrolysis reactions, Biomass & Bioenergy, 7, 1994, 33–47. doi:10.1016/0961-9534(94)00045-U [13] Z. Ozturk, and J. Merklin, Applied polymer science, 52, 1994,747–753. doi:10.1002/app.1994.070520604 [14] A. Green, S. Peres, J. Mullin, & H. Xue, Cogasification ofdomestic fuels, Proc. of ASME-Int. Joint Power GenerationConf., vol. 1, Minneapolis, MN, 1995, 247–258. [15] A. Green, M. Zanardi, S. Peres, & J. Mullin, Co-gasificationof coal and other domestic fuels, Proc. 21st Int. Conf. on CoalUtilization, Clearwater, FL, 1996, 137–147. [16] A. Green, M. Zanardi, S. Peres, K. Jurczyk, and J. Mullin,Cogasification of solid fuels, Proc. of Joint Power Generation.Cong. ASME, Houston, TX, October 1996, 369–379. [17] A. Green, M. Zanardi, & S. Peres, Thermal conversion ofbiomass, in R. Ramamurthy, S. Kastury, and W. Smith (Eds.),Bioenergy: Vision for the New Millenium (Enfield, NH: SciencePub., 2000) 41–62. [18] A. Green, S. Peres, J. Mullin, & R. Anderson, Solid fuelgasification for gas turbines, Proc. ASME Int. Gas TurbineInst. Gas Turbine Conference, Orlando, FL, 1997, 1–8. [19] A. Green, M. Zanardi, & J. Mullin, Phenomenological modelsof cellulose pyrolysis, Biomass & Bioenergy, 13, 1997, 15–24. doi:10.1016/S0961-9534(97)00019-6 [20] A. Green & J. Mullin, Feedstock blending studies with laboratory indirectly heated gasifiers, Journal of Engineering for Gas Turbines and Power, 121, 1998, 1–7. [21] A.Green & M. Zanardi, Cellulose pyrolysis and quantumchemistry, International Journal of Quantum Chemistry, 66,1998, 219–227. doi:10.1002/(SICI)1097-461X(1998)66:3<219::AID-QUA3>3.0.CO;2-Y [22] A. Green, J. Mullin, G. Schaefer, W. Zhang, N. Chancy, &M. Sankar, Life support applications of TCM-FC technology,Proc. 31st ICES Conf., San Antonio, TX, 2001, 1–13. [23] A. Green, P. Venkatachalam, & M. Sankar, Pyrolysis systematics for co-utilization applications, Proc. IASTED Power and Energy Sysems. Conf., Tampa, FL, 2001, 316–323. [24] A. Green, W. Zhang, & S. Sankar, Proc. ASEE.SE, Gainesville,FL, 2002. [25] A. Green, P. Venkatachalam, & M. Sankar, Feedstock blendingin gasifiers/liqufiers, Proc. ASME Turbo Expo 2002, Amsterdam, 2002, 1–10. [26] W. Xu and A.Tomita, Effects of coal type on the flash pyrolysisof various coals, Fuel, 66, 1987, 627–631. doi:10.1016/0016-2361(87)90270-5 [27] W. Xu and A.Tomita, Effects of temperature on the flashpyrolysis of various coals, Fuel, 66, 1987, 632–636. doi:10.1016/0016-2361(87)90271-7 [28] A. Green, S. Sankar, & R. Chaube, Multipurpose solid wastedisposal system for the ISS, Proc. 32nd ICES Conf., SanAntonio, Texas, 2002. [29] A. Green & R. Chaube, Flash pyrolysis systematics for coalsof various ranks, Proc. 28th Int. Technical Conf. on CoalUtilization and Fuel Systems, Clearwater, FL, 2003, 89–100. [30] A. Green & R. Chaube, Pyrolysis systematics for co-utilizationapplications, Proc. ASME Turbo Expo, Atlanta, GA, 2003, 1–10. [31] H. Stiles & R. Kandiyoti, Secondary reactions of flash pyrolysistars measured in a fluidized bed reactor with some novelfeatures, Fuel, 68, 1989, 275–283. doi:10.1016/0016-2361(89)90087-2 [32] C. Hindmarsh, K. Thomas, W. Wang, H. Cai, A. Güell, D.Dugwell, & R. Kandiyoti, A comparison of the pyrolysis inwire-mesh and entrained flow reactors, Fuel, 74, 1995, 1185–1190. doi:10.1016/0016-2361(95)00036-5 [33] E. Bar-Ziv and A. Sarofin, Prog. Energy Combust Sci., 17,1991, 1–65 doi:10.1016/0360-1285(91)90002-5 [34] X. Zhang & E. Bar-Ziv, Rev. Sci. Instrum, 67, 1998, 3483–3490. doi:10.1063/1.1147163 [35] R. Kandiyoti, Bench scale design for developing co-pyrolysis &co-gasification technologies, Proc. ICCDF Conf., Gainesville,FL, 2003, in press. [36] S. Niksa & A.R. Kerstein, FLASHCHAIN theory for rapidcoal devolatilization kinetics: 1. Formulation, Energy & Fuels,5, 1991, 647–665. doi:10.1021/ef00029a006 [37] S. Niksa, Predicting the rapid devolatization of diverse forms of biomass with bio-flashchain, Proc. 28th Int. Symp. on Combutsion, Edinburgh, UK, 2000, 2727-2733.
Important Links:
Go Back