Comparative study of atmospheric pressure DC, RF, and microwave thermal plasma torches for waste to energy applications
暂无分享,去创建一个
[1] S. Ghorui. Unique Aspects of Thermal Plasma Torches and Reactor Design for Process Applications , 2021, IEEE Transactions on Plasma Science.
[2] H. Gabbar,et al. Modeling of a Plasma-Based Waste Gasification System for Solid Waste Generated Onboard of Typical Cruiser Vessels Used as a Feedstock , 2020 .
[3] Su-Rong Sun,et al. Two-Temperature Chemical Non-equilibrium Modeling of Argon DC Arc Plasma Torch , 2020, Plasma Chemistry and Plasma Processing.
[4] Abbas Rohani,et al. Identification of effective factors to select energy recovery technologies from municipal solid waste using multi-criteria decision making (MCDM): A review of thermochemical technologies , 2020 .
[5] Mesut Akgün,et al. Gasification of Municipal Solid Wastes in Plasma Arc Medium , 2020, Plasma Chemistry and Plasma Processing.
[6] M. Baldan,et al. Thermal plasma technology for radioactive waste treatment: a review , 2020, Journal of Radioanalytical and Nuclear Chemistry.
[7] S. Elagroudy,et al. Gasification feasibility of polyethylene, polypropylene, polystyrene waste and their mixture: Experimental studies and modeling , 2020 .
[8] Li Wu,et al. Experimental investigation on improving the efficiency of power coupling from the incident microwave to the discharge in a plasma torch , 2020 .
[9] H. Gabbar,et al. RF-ICP Thermal Plasma for Thermoplastic Waste Pyrolysis Process with High Conversion Yield and Tar Elimination , 2020, Processes.
[10] Imran Khan,et al. Environmental impact assessment of waste to energy projects in developing countries: General guidelines in the context of Bangladesh , 2020 .
[11] P. Awakowicz,et al. Dissipated electrical power and electron density in an RF atmospheric pressure helium plasma jet , 2019, Plasma Sources Science and Technology.
[12] A. Rouboa,et al. A theoretical study on municipal solid waste plasma gasification. , 2019, Waste management.
[13] K. Ismail,et al. Evaluation of the treatment of municipal solid waste as renewable energy resource in Campinas, Brazil , 2018, Sustainable Energy Technologies and Assessments.
[14] Xiangjie Gong,et al. Plasma methods for metals recovery from metal-containing waste. , 2018, Waste management.
[15] A. R. Ibragimov,et al. Numerical Simulation of Temperature Fields in a Direct-Current Plasma Torch , 2018 .
[16] F. N. Ani,et al. Microwave induced plasma for solid fuels and waste processing: A review on affecting factors and performance criteria. , 2017, Waste management.
[17] Hussam Jouhara,et al. Potential of pyrolysis processes in the waste management sector , 2017 .
[18] V. Popov,et al. Multi-gas AC plasma torches for gasification of organic substances , 2017 .
[19] N. Striugas,et al. Investigation of sewage sludge treatment using air plasma assisted gasification. , 2017, Waste management.
[20] Dan Han,et al. Application of thermal plasma technology for the treatment of solid wastes in China: An overview. , 2016, Waste management.
[21] J. Kim,et al. Abatement of fluorinated compounds using a 2.45GHz microwave plasma torch with a reverse vortex plasma reactor. , 2015, Journal of hazardous materials.
[22] Maher I. Boulos,et al. Thermal Plasma Sources: How Well are They Adopted to Process Needs? , 2015, Plasma Chemistry and Plasma Processing.
[23] Sang Jun Yoon,et al. Hydrogen and syngas production from glycerol through microwave plasma gasification , 2013 .
[24] Haitao Huang,et al. Development of plasma pyrolysis/gasification systems for energy efficient and environmentally sound waste disposal , 2013 .
[25] F. Fabry,et al. Waste Gasification by Thermal Plasma: A Review , 2013, Waste and Biomass Valorization.
[26] J. W. Spencer,et al. Thermophysical properties of nitrogen plasmas under thermal equilibrium and non-equilibrium conditions , 2011 .
[27] A. Mountouris,et al. Plasma gasification of sewage sludge: Process development and energy optimization , 2008 .
[28] Anthony B. Murphy,et al. Thermal plasma waste treatment , 2008 .
[29] H. Uhm,et al. Microwave plasma burner and temperature measurements in its flames , 2006 .
[30] Han Sup Uhm,et al. A microwave plasma torch and its applications , 2006 .
[31] G. Hieftje,et al. Effect of the plasma operating frequency on the figures of merit of an inductively coupled plasma time-of-flight mass spectrometer , 2006 .
[32] Edbertho Leal-Quiros,et al. Plasma processing of municipal solid waste , 2004 .
[33] Manabu Tanaka,et al. A treatment of carbonaceous wastes using thermal plasma with steam , 2004 .
[34] P. Rutberg. Some plasma environmental technologies developed in Russia , 2002 .
[35] Pierre Proulx,et al. Extended-field electromagnetic model for inductively coupled plasma , 2001 .
[36] D. Bernardi,et al. Simulation of the ignition transient in RF inductively-coupled plasma torches , 2001 .
[37] E. Pfender,et al. Numerical model of the anode region of high-current electric arcs , 1997 .
[38] A. Das,et al. DC plasma torch voltage and current characteristics through heat balance measurements , 1994 .
[39] M. Boulos. RF induction plasma spraying: State-of-the-art review , 1992 .
[40] Joachim V. R. Heberlein,et al. Generation of thermal and pseudo-thermal plasmas , 1992 .
[41] J. Szekely,et al. An Assessment of the Heat and Fluid Flow Phenomena Inside Plasma Torches in Non-transferred Arc Systems , 1990 .
[42] E. Pfender. Particle behavior in thermal plasmas , 1989 .
[43] Pierre Proulx,et al. Heating of powders in an r.f. inductively coupled plasma under dense loading conditions , 1987 .
[44] Y. Lee,et al. Particle dynamics and particle heat and mass transfer in thermal plasmas. Part I. The motion of a single particle without thermal effects , 1985 .
[45] E. Pfender,et al. Measurement of anode falls and anode heat transfer in atmospheric pressure high intensity arcs , 1984 .
[46] J. Mostaghimi,et al. Plasma-particle interaction effects in induction plasma modeling under dense loading conditions , 1983 .
[47] G. Hieftje,et al. Design and Construction of a Low-Flow, Low-Power Torch for Inductively Coupled Plasma Spectrometry , 1982 .
[48] G. Springer,et al. High temperature–high pressure thermal conductivity of argon , 1979 .
[49] M. Boulos. Flow and Temperature Fields in the Fire-Ball of an Inductively Coupled Plasma , 1976, IEEE Transactions on Plasma Science.
[50] T. Reed. Induction‐Coupled Plasma Torch , 1961 .
[51] R. H. Oppermann,et al. Radio physics course , 1936 .
[52] Md. Nizam Dahalan,et al. Feasibility Study of Plasma Actuator for Flow Separation Control , 2020 .
[53] Malek Hassanpour,et al. Plasma Technology and Waste Management , 2017 .
[54] H. Liao,et al. Three-dimensional simulation of an argon–hydrogen DC non-transferred arc plasma torch , 2015 .
[55] Kuang C. Lin,et al. Microwave plasma studies of Spirulina algae pyrolysis with relevance to hydrogen production , 2014 .
[56] Maher I. Boulos,et al. Thermal Plasmas: Fundamentals and Applications , 1994 .
[57] Akbar Montaser,et al. Inductively coupled plasmas in analytical atomic spectrometry , 1987 .
[58] J. D. Chase,et al. Energy‐Transfer Mechanism and Typical Operating Characteristics for the Thermal rf Plasma Generator , 1968 .
[59] George I. Babat,et al. Electrodeless discharges and some allied problems , 1947 .