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2020 | OriginalPaper | Buchkapitel

15. An Overview of the Technological Applicability of Plasma Gasification Process

verfasst von : Spyridon Achinas

Erschienen in: Contemporary Environmental Issues and Challenges in Era of Climate Change

Verlag: Springer Singapore

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Abstract

Recent increased environmental and political pressures, the unstable perspective of the fuel prices, and the fossil-resource-based energy have risen the industrial interest into the energy that can be produced from waste and have enhanced the technological findings in waste-to-energy sector. Sustainable waste treatment is an essential element in efforts to improve sustainability. Plasma gasification is considered an alternative for the abatement of municipal waste and has been demonstrated for the treatment of various wastes more in Japan, Canada, and the USA than in Europe. The goal of this mini-review is to brief the plasma-based gasification technology. This study includes a technological overview of the PG process, a survey of existing PG facilities, a comparison with other thermal techniques, and an identification of its environmental impacts.

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Literatur
Zurück zum Zitat Achinas S, Kapetanios E (2012) Basic design of an integrated plasma gasification combined cycle system for electricity generation from RDF. Int J Eng Res Technol 1(10):1–8 Achinas S, Kapetanios E (2012) Basic design of an integrated plasma gasification combined cycle system for electricity generation from RDF. Int J Eng Res Technol 1(10):1–8
Zurück zum Zitat Achinas S, Kapetanios E (2013) Efficiency evaluation of RDF plasma gasification process. Energy Environ Res 3(1):150–157CrossRef Achinas S, Kapetanios E (2013) Efficiency evaluation of RDF plasma gasification process. Energy Environ Res 3(1):150–157CrossRef
Zurück zum Zitat An’Shakov AS, Faleev VA, Danilenko AA, Urbakh EK, Urbakh AE (2007) Investigation of plasma gasification of carbonaceous technogeneous wastes. Thermophys Aeromech 14(4):607–616CrossRef An’Shakov AS, Faleev VA, Danilenko AA, Urbakh EK, Urbakh AE (2007) Investigation of plasma gasification of carbonaceous technogeneous wastes. Thermophys Aeromech 14(4):607–616CrossRef
Zurück zum Zitat Annamalai K, Puri IK (2006) Combustion science and engineering, 1st edn. CRC Press, Boca Raton Annamalai K, Puri IK (2006) Combustion science and engineering, 1st edn. CRC Press, Boca Raton
Zurück zum Zitat Arazo RO, Genuino DAD, de Luna MDG, Capareda SC (2017) Bio-oil production from dry sewage sludge by fast pyrolysis in an electrically-heated fluidized bed reactor. Sustain Environ Res 27(1):7–14CrossRef Arazo RO, Genuino DAD, de Luna MDG, Capareda SC (2017) Bio-oil production from dry sewage sludge by fast pyrolysis in an electrically-heated fluidized bed reactor. Sustain Environ Res 27(1):7–14CrossRef
Zurück zum Zitat Artemov AV, Bulba VA, Voshchinin SA, Krutyakov YA, Kudrinskii AA, Ostryi II, Pereslavtsev AV (2012) Technical and economic operation parameters of a high-temperature plasma plant for production and consumption waste conversion. Russ J Gen Chem 82(4):808–814CrossRef Artemov AV, Bulba VA, Voshchinin SA, Krutyakov YA, Kudrinskii AA, Ostryi II, Pereslavtsev AV (2012) Technical and economic operation parameters of a high-temperature plasma plant for production and consumption waste conversion. Russ J Gen Chem 82(4):808–814CrossRef
Zurück zum Zitat Basu P (2006) Combustion and gasification in fluidized beds, 1st edn. CRC Press, Boca RatonCrossRef Basu P (2006) Combustion and gasification in fluidized beds, 1st edn. CRC Press, Boca RatonCrossRef
Zurück zum Zitat Basu P (2010) Biomass gasification and pyrolysis: practical design and theory, 1st edn. Academic, Burlington Basu P (2010) Biomass gasification and pyrolysis: practical design and theory, 1st edn. Academic, Burlington
Zurück zum Zitat Bratsev AN, Popov VE, Rutberg AF, Shtengel SV (2006a) A facility for plasma gasification of waste of various types. High Temp 44:823CrossRef Bratsev AN, Popov VE, Rutberg AF, Shtengel SV (2006a) A facility for plasma gasification of waste of various types. High Temp 44:823CrossRef
Zurück zum Zitat Bratsev AN, Popov VE, Shtengel SV, Rutberg AF (2006b) Some aspects of development and creation of plasma technology for solid waste gasification. High Temp Mater Processes 10:549–556CrossRef Bratsev AN, Popov VE, Shtengel SV, Rutberg AF (2006b) Some aspects of development and creation of plasma technology for solid waste gasification. High Temp Mater Processes 10:549–556CrossRef
Zurück zum Zitat Bratsev AN, Kuznetsov VA, Popov VE, Rutberg AF, Ufimtsev AA, Shtengel SV (2009) Experimental development of methods on plasma gasification of coal as the basis for creation of liquid fuel technology. High Temp Mater Processes 13:147–154CrossRef Bratsev AN, Kuznetsov VA, Popov VE, Rutberg AF, Ufimtsev AA, Shtengel SV (2009) Experimental development of methods on plasma gasification of coal as the basis for creation of liquid fuel technology. High Temp Mater Processes 13:147–154CrossRef
Zurück zum Zitat Chang JS, Gu BW, Looy PC, Chu FY, Simpson CJ (1996) Thermal plasma pyrolysis of used old tires for production of syngas. J Environ Sci Health A 31(7):1781–1799 Chang JS, Gu BW, Looy PC, Chu FY, Simpson CJ (1996) Thermal plasma pyrolysis of used old tires for production of syngas. J Environ Sci Health A 31(7):1781–1799
Zurück zum Zitat Clark BJ, Rogoff MJ (2010) Economic feasibility of a plasma arc gasification plant, city of Marion, Iowa. In: Proceedings of the 18th annual North American waste-to-energy conference, Orland, Florida, USA May 11–13, NAWTEC 18-3502 Clark BJ, Rogoff MJ (2010) Economic feasibility of a plasma arc gasification plant, city of Marion, Iowa. In: Proceedings of the 18th annual North American waste-to-energy conference, Orland, Florida, USA May 11–13, NAWTEC 18-3502
Zurück zum Zitat Dave PN, Joshi AK (2010) Plasma pyrolysis and gasification of plastics waste – a review. J Sci Ind Res 69:177–179 Dave PN, Joshi AK (2010) Plasma pyrolysis and gasification of plastics waste – a review. J Sci Ind Res 69:177–179
Zurück zum Zitat De Souza-Santos ML (2008) Solid fuels combustion and gasification: modeling, simulation, and equipment operations, 2nd edn. CRC Press, Boca Raton De Souza-Santos ML (2008) Solid fuels combustion and gasification: modeling, simulation, and equipment operations, 2nd edn. CRC Press, Boca Raton
Zurück zum Zitat Ducharme C, Themelis N (2010) Analysis of thermal plasma – assisted waste-to energy processes. In: Proceedings of the 18th annual North American waste-to-energy conference, Orland, Florida, USA May 11–13, NAWTEC 18-3582 Ducharme C, Themelis N (2010) Analysis of thermal plasma – assisted waste-to energy processes. In: Proceedings of the 18th annual North American waste-to-energy conference, Orland, Florida, USA May 11–13, NAWTEC 18-3582
Zurück zum Zitat Fauchais P (2007) Technologies plasma: applications au traitement des déchets. Techniques de l’Ingénieur G2055:1–11 Fauchais P (2007) Technologies plasma: applications au traitement des déchets. Techniques de l’Ingénieur G2055:1–11
Zurück zum Zitat Fourcault A, Marias F, Michon U (2010) Modelling of thermal removal of tars in a high temperature stage fed by a plasma torch. Biomass Bioenergy 34:1363–1374CrossRef Fourcault A, Marias F, Michon U (2010) Modelling of thermal removal of tars in a high temperature stage fed by a plasma torch. Biomass Bioenergy 34:1363–1374CrossRef
Zurück zum Zitat Ghofur A, Soemarno HA, Putra MD (2018) Potential fly ash waste as catalytic converter for reduction of HC and CO emissions. Sustain Environ Res 28(6):357–362CrossRef Ghofur A, Soemarno HA, Putra MD (2018) Potential fly ash waste as catalytic converter for reduction of HC and CO emissions. Sustain Environ Res 28(6):357–362CrossRef
Zurück zum Zitat Higman C, Van Der Burgt M (2008) Gasification, 1st edn. Oxford Press, Oxford Higman C, Van Der Burgt M (2008) Gasification, 1st edn. Oxford Press, Oxford
Zurück zum Zitat Hlína M, Hrabovský M, Kopecký V, Konrád M, Kavka T (2006) Plasma gasification of wood and production of gas with low content of tar. Czechoslov J Phys 56(B):179–1184 Hlína M, Hrabovský M, Kopecký V, Konrád M, Kavka T (2006) Plasma gasification of wood and production of gas with low content of tar. Czechoslov J Phys 56(B):179–1184
Zurück zum Zitat Hrabovsky M (2009) Thermal plasma generators with water stabilized arc. Open Plasma Phys J 2:99–104CrossRef Hrabovsky M (2009) Thermal plasma generators with water stabilized arc. Open Plasma Phys J 2:99–104CrossRef
Zurück zum Zitat Hrabovsky M, Konrad M, Kopecky V, Hlina M, Kavka T (2006) Gasification of biomass in water/gas stabilized plasma for syngas production. Czechoslov J Phys 56(B):1199–1206CrossRef Hrabovsky M, Konrad M, Kopecky V, Hlina M, Kavka T (2006) Gasification of biomass in water/gas stabilized plasma for syngas production. Czechoslov J Phys 56(B):1199–1206CrossRef
Zurück zum Zitat Huang YF, Chiueh PT, Lo SL (2016) A review on microwave pyrolysis of lignocellulosic biomass. Sustain Environ Res 26(3):103–109CrossRef Huang YF, Chiueh PT, Lo SL (2016) A review on microwave pyrolysis of lignocellulosic biomass. Sustain Environ Res 26(3):103–109CrossRef
Zurück zum Zitat Kalinenko RA, Kuznetsov AP, Levitsky AA, Messerle VE, Mirokhin YA, Polak LS, Sakipov ZB, Ustimenko AB (1993) Pulverized coal plasma gasification. Plasma Chem Plasma Process 13(1):141–167CrossRef Kalinenko RA, Kuznetsov AP, Levitsky AA, Messerle VE, Mirokhin YA, Polak LS, Sakipov ZB, Ustimenko AB (1993) Pulverized coal plasma gasification. Plasma Chem Plasma Process 13(1):141–167CrossRef
Zurück zum Zitat Leal-Quirós E (2004) Plasma processing of municipal solid waste. Braz J Phys 34:1587–1593CrossRef Leal-Quirós E (2004) Plasma processing of municipal solid waste. Braz J Phys 34:1587–1593CrossRef
Zurück zum Zitat Loghin I (2008) Market barriers to the integrated plasma gasification combined cycle plant implementation – Romanian case. UPB Sci Bull Ser C 70(2):111–120 Loghin I (2008) Market barriers to the integrated plasma gasification combined cycle plant implementation – Romanian case. UPB Sci Bull Ser C 70(2):111–120
Zurück zum Zitat Luche J, Falcoz Q, Bastien T, Leninger JP, Arabi K, Aubry O, Khacef A, Cormier JM, Lédé J (2012) Plasma treatments and biomass gasification. IOP Conf Ser Mater Sci Eng 29:012011CrossRef Luche J, Falcoz Q, Bastien T, Leninger JP, Arabi K, Aubry O, Khacef A, Cormier JM, Lédé J (2012) Plasma treatments and biomass gasification. IOP Conf Ser Mater Sci Eng 29:012011CrossRef
Zurück zum Zitat Mountouris A, Voutsas E, Tassios D (2006) Solid waste plasma gasification: equilibrium model development and exergy analysis. Energy Convers Manag 47:1723CrossRef Mountouris A, Voutsas E, Tassios D (2006) Solid waste plasma gasification: equilibrium model development and exergy analysis. Energy Convers Manag 47:1723CrossRef
Zurück zum Zitat Mountouris A, Voutsas E, Tassios D (2008) Plasma gasification of sewage sludge: process development and energy optimization. Energy Convers Manag 49(8):2264CrossRef Mountouris A, Voutsas E, Tassios D (2008) Plasma gasification of sewage sludge: process development and energy optimization. Energy Convers Manag 49(8):2264CrossRef
Zurück zum Zitat Moustakas K, Fatta D, Malamis S, Haralambous K, Loizidou M (2005) Demonstration plasma gasification/vitrification system for effective hazardous waste treatment. J Hazard Mater B 123:120–126CrossRef Moustakas K, Fatta D, Malamis S, Haralambous K, Loizidou M (2005) Demonstration plasma gasification/vitrification system for effective hazardous waste treatment. J Hazard Mater B 123:120–126CrossRef
Zurück zum Zitat Moustakas K, Xydis G, Malamis S, Haralambous KJ, Loizidou M (2008) Analysis of results from the operation of a pilot plasma gasification/vitrification unit for optimizing its performance. J Hazard Mater 151:473–480CrossRef Moustakas K, Xydis G, Malamis S, Haralambous KJ, Loizidou M (2008) Analysis of results from the operation of a pilot plasma gasification/vitrification unit for optimizing its performance. J Hazard Mater 151:473–480CrossRef
Zurück zum Zitat Murphy AB, Farmer AJD, Horrigan EC, McAllister T (2002) Plasma destruction of ozone depleting substances. Plasma Chem Plasma Process 22(3):371–385CrossRef Murphy AB, Farmer AJD, Horrigan EC, McAllister T (2002) Plasma destruction of ozone depleting substances. Plasma Chem Plasma Process 22(3):371–385CrossRef
Zurück zum Zitat Nema SK, Ganeshprasad KS (2002) Plasma pyrolysis of medical waste. Curr Sci 83(3):271–278 Nema SK, Ganeshprasad KS (2002) Plasma pyrolysis of medical waste. Curr Sci 83(3):271–278
Zurück zum Zitat Popov VE, Bratsev AN, Kuznetsov VA, Shtengel SV, Ufimtsev AA (2011) Plasma gasification of waste as a method of energy saving. J Phys Conf Ser 275:012015CrossRef Popov VE, Bratsev AN, Kuznetsov VA, Shtengel SV, Ufimtsev AA (2011) Plasma gasification of waste as a method of energy saving. J Phys Conf Ser 275:012015CrossRef
Zurück zum Zitat Rezaiyan J, Cheremisinoff NP (2005) Gasification technologies: a primer for engineers and scientists, 1st edn. CRC Press, Boca RatonCrossRef Rezaiyan J, Cheremisinoff NP (2005) Gasification technologies: a primer for engineers and scientists, 1st edn. CRC Press, Boca RatonCrossRef
Zurück zum Zitat Serbin SI, Matveev IB (2010) Theoretical investigations of the working processes in a plasma coal gasification system. IEEE Trans Plasma Sci 38(12):3300–3305CrossRef Serbin SI, Matveev IB (2010) Theoretical investigations of the working processes in a plasma coal gasification system. IEEE Trans Plasma Sci 38(12):3300–3305CrossRef
Zurück zum Zitat Tendler M, Rutberg P, Van Oost G (2005) Plasma based waste treatment and energy production. Plasma Phys Control Fusion 47:A219–A230CrossRef Tendler M, Rutberg P, Van Oost G (2005) Plasma based waste treatment and energy production. Plasma Phys Control Fusion 47:A219–A230CrossRef
Zurück zum Zitat Vaish B, Srivastava V, Singh P, Singh A, Singh PK, Singh RP (2016) Exploring untapped energy potential of urban solid waste. Energy Ecol Environ 1(5):323–342CrossRef Vaish B, Srivastava V, Singh P, Singh A, Singh PK, Singh RP (2016) Exploring untapped energy potential of urban solid waste. Energy Ecol Environ 1(5):323–342CrossRef
Zurück zum Zitat Vaish B, Sharma B, Srivastava V, Singh P, Ibrahim MH, Singh RP (2019) Energy recovery potential and environmental impact of gasification for municipal solid waste. Biofuels 10:87–100CrossRef Vaish B, Sharma B, Srivastava V, Singh P, Ibrahim MH, Singh RP (2019) Energy recovery potential and environmental impact of gasification for municipal solid waste. Biofuels 10:87–100CrossRef
Zurück zum Zitat Yang L, Wang H, Wang H, Wang D, Wang Y (2011) Solid waste plasma disposal plant. J Electrost 69:411–413CrossRef Yang L, Wang H, Wang H, Wang D, Wang Y (2011) Solid waste plasma disposal plant. J Electrost 69:411–413CrossRef
Metadaten
Titel
An Overview of the Technological Applicability of Plasma Gasification Process
verfasst von
Spyridon Achinas
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-32-9595-7_15