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2012 | OriginalPaper | Buchkapitel

Chemical Looping Combustion

verfasst von : Edward John (Ben) Anthony

Erschienen in: Handbook of Climate Change Mitigation

Verlag: Springer US

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Abstract

Chemical looping combustion (CLC) and looping cycles in general represent an important new class of technologies, which can be deployed for direct combustion as well as be used in gasification applications. In this type of system, a solid carrier is used to bring oxygen to the fuel gas, so that it can be subsequently released as a pure CO2 stream suitable for use, or, more likely, for sequestration. The solid is then regenerated in a reactor using air, so that the technology effectively achieves oxygen separation from air without the use of a cryogenic process or membrane technology. In a sense, cycles using liquids, such as amine scrubbing, could also be regarded as a type of looping cycle, the key being that the carrier must be regenerated and reutilized for as long as possible. However, this chapter will restrict itself to considering the uses of solid carriers only and, more specifically, those in which oxygen is transported and not CO2 as is the case for calcium looping. Particular focuses of this chapter will be on the use of this technology for H2 production and gasification applications, as well as its use with solid fuels. Another issue that will be discussed is high-pressure cycles, which are ultimately necessary if such systems are to be integrated into high-efficiency electrical energy cycles.

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Literatur
1.
Zurück zum Zitat Lewis WK, Gilliland ER, Reed WA (1949) Reaction of methane with copper oxide in a fluidized bed. Ind Eng Res 41:1227–1237 Lewis WK, Gilliland ER, Reed WA (1949) Reaction of methane with copper oxide in a fluidized bed. Ind Eng Res 41:1227–1237
2.
Zurück zum Zitat Lewis WK, Gilliland ER (1954) Production of pure carbon dioxide. US Patent No. 2,665,972 Lewis WK, Gilliland ER (1954) Production of pure carbon dioxide. US Patent No. 2,665,972
3.
Zurück zum Zitat Richter HJ, Knoche K (1983) Reversibility of combustion processes. ACS Symp Ser 235:71–85 Richter HJ, Knoche K (1983) Reversibility of combustion processes. ACS Symp Ser 235:71–85
4.
Zurück zum Zitat Harvey SP, Richter HJ (1994) A high-efficiency gas turbine power generation cycle with solid oxide fuel cell technology and chemical looping fuel combustion. ASME Thermodyn Des Anal Improv Energy Syst Symp AES 33:66–71 Harvey SP, Richter HJ (1994) A high-efficiency gas turbine power generation cycle with solid oxide fuel cell technology and chemical looping fuel combustion. ASME Thermodyn Des Anal Improv Energy Syst Symp AES 33:66–71
5.
Zurück zum Zitat Jerndal E, Mattisson T, Lyngfelt A (2006) Thermal analysis of chemical looping combustion. Chem Eng Res Des 84:795–806 Jerndal E, Mattisson T, Lyngfelt A (2006) Thermal analysis of chemical looping combustion. Chem Eng Res Des 84:795–806
6.
Zurück zum Zitat Ishida M, Jin H (1994) A novel combustor based on chemical looping reactions and its reaction kinetics. J Chem Eng Jpn 27:296–301 Ishida M, Jin H (1994) A novel combustor based on chemical looping reactions and its reaction kinetics. J Chem Eng Jpn 27:296–301
7.
Zurück zum Zitat Ishida M, Jin H (1994) A new advanced power-generation system using chemical-looping combustion. Energy 19:415–419 Ishida M, Jin H (1994) A new advanced power-generation system using chemical-looping combustion. Energy 19:415–419
8.
Zurück zum Zitat Hatanak T, Matsuda S, Hatano H (1997) A new concept gas-solid combustion system “Merit”, for high combustion efficiency, and low emissions. In: Proceedings of the 23rd energy conversion engineering conference, Denver, 1997, vol 2, pp 994–948 Hatanak T, Matsuda S, Hatano H (1997) A new concept gas-solid combustion system “Merit”, for high combustion efficiency, and low emissions. In: Proceedings of the 23rd energy conversion engineering conference, Denver, 1997, vol 2, pp 994–948
9.
Zurück zum Zitat Lyngfelt A, Leckner B, Mattisson T (2001) A fluidized-bed combustion process with inherent CO2 separation: application of chemical looping combustion. Chem Eng Sci 56:3101–3113 Lyngfelt A, Leckner B, Mattisson T (2001) A fluidized-bed combustion process with inherent CO2 separation: application of chemical looping combustion. Chem Eng Sci 56:3101–3113
10.
Zurück zum Zitat Chuang SY, Dennis JS, Hayhurst AN, Scott SA (2008) Development and performance of Cu-based oxygen carriers for chemical looping combustion. Combust Flame 154:109–121 Chuang SY, Dennis JS, Hayhurst AN, Scott SA (2008) Development and performance of Cu-based oxygen carriers for chemical looping combustion. Combust Flame 154:109–121
11.
Zurück zum Zitat Bohn CD, Muller CR, Cleeton JP et al (2008) Production of very pure hydrogen with simultaneous capture of carbon dioxide using the redox reactions of iron oxide in packed beds. Ind Eng Chem Res 47:7623–7630 Bohn CD, Muller CR, Cleeton JP et al (2008) Production of very pure hydrogen with simultaneous capture of carbon dioxide using the redox reactions of iron oxide in packed beds. Ind Eng Chem Res 47:7623–7630
12.
Zurück zum Zitat Johansson M, Mattisson T, Lyngfelt A (2006) Investigation of Mn3O4 with stabilized ZrO2 for chemical looping combustion. Chem Eng Res Des 84:807–818 Johansson M, Mattisson T, Lyngfelt A (2006) Investigation of Mn3O4 with stabilized ZrO2 for chemical looping combustion. Chem Eng Res Des 84:807–818
13.
Zurück zum Zitat Johansson M, Mattisson T, Lyngfelt A (2006) Creating a synergy effect by using mixed oxides of iron and nickel in the combustion of methane in a chemical-looping combustor reactor. Energy Fuels 20:2399–2407 Johansson M, Mattisson T, Lyngfelt A (2006) Creating a synergy effect by using mixed oxides of iron and nickel in the combustion of methane in a chemical-looping combustor reactor. Energy Fuels 20:2399–2407
14.
Zurück zum Zitat Gayán P, Dueso C, Abad A et al (2009) NiO/Al2O3 oxygen carrier for chemical looping combustion prepared by impregnation and deposition-precipitation methods. Fuel 88:1016–1023 Gayán P, Dueso C, Abad A et al (2009) NiO/Al2O3 oxygen carrier for chemical looping combustion prepared by impregnation and deposition-precipitation methods. Fuel 88:1016–1023
15.
Zurück zum Zitat Abad A, Adánez J, García-Labiano F et al (2007) Mapping of the range of operational conditions for Cu-, Fe-, and Ni-based oxygen carriers in chemical-looping combustion. Chem Eng Sci 62:533–549 Abad A, Adánez J, García-Labiano F et al (2007) Mapping of the range of operational conditions for Cu-, Fe-, and Ni-based oxygen carriers in chemical-looping combustion. Chem Eng Sci 62:533–549
16.
Zurück zum Zitat Johansson M (2007) Screening of oxygen carrier particles based on iron, manganese, copper and nickel oxides for use in chemical looping technologies. PhD thesis, Chalmers University, Sweden Johansson M (2007) Screening of oxygen carrier particles based on iron, manganese, copper and nickel oxides for use in chemical looping technologies. PhD thesis, Chalmers University, Sweden
17.
Zurück zum Zitat Abanades JC, Rubin ES, Anthony EJ (2007) Sorbent cost and performance in CO2 capture systems. Ind Eng Chem Res 43:3462–3466 Abanades JC, Rubin ES, Anthony EJ (2007) Sorbent cost and performance in CO2 capture systems. Ind Eng Chem Res 43:3462–3466
18.
Zurück zum Zitat Prőll T, Mayer K, Bolhàr-Nordenkampf J et al (2009) Natural minerals as oxygen carriers for chemical looping combustion in a dual circulating fluidized bed system. Energy Procedia 1:27–34 Prőll T, Mayer K, Bolhàr-Nordenkampf J et al (2009) Natural minerals as oxygen carriers for chemical looping combustion in a dual circulating fluidized bed system. Energy Procedia 1:27–34
19.
Zurück zum Zitat Ishida M, Yamamoto M, Ohba T (2002) Experimental results of chemical looping combustion with Ni/NiAl2O4 particle circulation at 1200°C. Energy Convers Manage 43:1469–1478 Ishida M, Yamamoto M, Ohba T (2002) Experimental results of chemical looping combustion with Ni/NiAl2O4 particle circulation at 1200°C. Energy Convers Manage 43:1469–1478
20.
Zurück zum Zitat Ishida M, Takeshita K, Suzuki K, Ohba T (2005) Application of Fe2O3-Al2O3 composite particles as solid looping materials of the chemical-loop combustor. Energy Fuels 19:2514–2518 Ishida M, Takeshita K, Suzuki K, Ohba T (2005) Application of Fe2O3-Al2O3 composite particles as solid looping materials of the chemical-loop combustor. Energy Fuels 19:2514–2518
21.
Zurück zum Zitat Mattisson T, Leion H, Lyngfelt A (2009) Chemical-looping with oxygen uncoupling using CuO/ZrO2 with petroleum coke. Fuel 88:683–690 Mattisson T, Leion H, Lyngfelt A (2009) Chemical-looping with oxygen uncoupling using CuO/ZrO2 with petroleum coke. Fuel 88:683–690
22.
Zurück zum Zitat Zhao H, Liu L, Wang B et al (2008) Sol-gel derived NiO/NiAl2O4 oxygen carriers for chemical-looping combustion by coal char. Energy Fuels 22:898–905 Zhao H, Liu L, Wang B et al (2008) Sol-gel derived NiO/NiAl2O4 oxygen carriers for chemical-looping combustion by coal char. Energy Fuels 22:898–905
23.
Zurück zum Zitat Jerndal E, Mattisson T, Thijs I et al (2010) Investigation of NiO/NiAl2O4 oxygen carriers for chemical-looping combustion produced by spray-drying. Int J Greenhouse Gas Control 4:23–35 Jerndal E, Mattisson T, Thijs I et al (2010) Investigation of NiO/NiAl2O4 oxygen carriers for chemical-looping combustion produced by spray-drying. Int J Greenhouse Gas Control 4:23–35
25.
Zurück zum Zitat De Diego LF, Gayán P, García-Labiano F et al (2005) Impregnated CuO/Al2O3 oxygen carriers for chemical looping combustion: avoiding fluidized bed agglomeration. Energy Fuels 19:1850–1856 De Diego LF, Gayán P, García-Labiano F et al (2005) Impregnated CuO/Al2O3 oxygen carriers for chemical looping combustion: avoiding fluidized bed agglomeration. Energy Fuels 19:1850–1856
26.
Zurück zum Zitat De Diego LF, García-Labiano F, Gayán P et al (2007) Operation of a 10 kWth chemical-looping combustor during 200 h with a CuO-Al2O3 oxygen carrier. Fuel 86:1036–1045 De Diego LF, García-Labiano F, Gayán P et al (2007) Operation of a 10 kWth chemical-looping combustor during 200 h with a CuO-Al2O3 oxygen carrier. Fuel 86:1036–1045
27.
Zurück zum Zitat Linderholm C, Mattisson T, Lyngfelt A (2009) Long-term integrity testing of spray-dried particles in a 10-kW chemical-looping combustor using natural gas as fuel. Fuel 88:2083–2096 Linderholm C, Mattisson T, Lyngfelt A (2009) Long-term integrity testing of spray-dried particles in a 10-kW chemical-looping combustor using natural gas as fuel. Fuel 88:2083–2096
28.
Zurück zum Zitat Partington JR (1939) A text book of inorganic chemistry, 5th edn. MacMillan and Co. Ltd., London Partington JR (1939) A text book of inorganic chemistry, 5th edn. MacMillan and Co. Ltd., London
29.
Zurück zum Zitat Blamey J, Anthony EJ, Wang J, Fennell PS (2010) The calcium looping cycle for large-scale CO2 capture. Prog Energy Combust Sci 36:260–279 Blamey J, Anthony EJ, Wang J, Fennell PS (2010) The calcium looping cycle for large-scale CO2 capture. Prog Energy Combust Sci 36:260–279
30.
Zurück zum Zitat Song Q, Xiao R, Deng Z et al (2008) Chemical looping combustion of methane with CaSO4 oxygen carrier in a fixed bed reactor. Energy Convers Manage 40:3178–3187 Song Q, Xiao R, Deng Z et al (2008) Chemical looping combustion of methane with CaSO4 oxygen carrier in a fixed bed reactor. Energy Convers Manage 40:3178–3187
31.
Zurück zum Zitat Song Q, Xiao R, Deng Z et al (2008) Multicycle study on chemical-looping combustion of simulated coal gas with a CaSO4 oxygen carrier in a fluidized bed reactor. Energy Fuels 22:3661–3672 Song Q, Xiao R, Deng Z et al (2008) Multicycle study on chemical-looping combustion of simulated coal gas with a CaSO4 oxygen carrier in a fluidized bed reactor. Energy Fuels 22:3661–3672
32.
Zurück zum Zitat Song Q, Ziao R, Deng Z et al (2008) Effect of temperature on reduction of CaSO4 oxygen carrier in a chemical-looping combustion of simulated coal gas in a fluidized bed reactor. Ind Eng Chem 47:8148–8149 Song Q, Ziao R, Deng Z et al (2008) Effect of temperature on reduction of CaSO4 oxygen carrier in a chemical-looping combustion of simulated coal gas in a fluidized bed reactor. Ind Eng Chem 47:8148–8149
33.
Zurück zum Zitat Shen L, Zheng M, Xiao J, Xiao R (2008) A mechanistic investigation of a calcium based oxygen carrier for chemical looping combustion. Combust Flame 154:489–506 Shen L, Zheng M, Xiao J, Xiao R (2008) A mechanistic investigation of a calcium based oxygen carrier for chemical looping combustion. Combust Flame 154:489–506
34.
Zurück zum Zitat Wang J, Anthony EJ (2008) A process for clean combustion of solid fuels. Appl Energy 85:73–79 Wang J, Anthony EJ (2008) A process for clean combustion of solid fuels. Appl Energy 85:73–79
35.
Zurück zum Zitat Tian H, Guo Q (2009) Investigation into the behavior of reductive decomposition of calcium sulfate by carbon monoxide in chemical looping combustion. Ind Eng Chem Res 48:5624–5632 Tian H, Guo Q (2009) Investigation into the behavior of reductive decomposition of calcium sulfate by carbon monoxide in chemical looping combustion. Ind Eng Chem Res 48:5624–5632
36.
Zurück zum Zitat Andrus HE, Thibeault PR, Chui JH, Lani BW (2010) Calcium oxide chemical looping with CO2 capture for the power industry. In: Ninth annual conference on carbon capture and sequestration, Pittsburgh, 10–13 May 2010 Andrus HE, Thibeault PR, Chui JH, Lani BW (2010) Calcium oxide chemical looping with CO2 capture for the power industry. In: Ninth annual conference on carbon capture and sequestration, Pittsburgh, 10–13 May 2010
37.
Zurück zum Zitat Andrus H (2007) Chemical looping combustion: R&D efforts of Alstom. In: Second workshop, oxy-combustion research network, Windsor, 25–27 Jan 2007 Andrus H (2007) Chemical looping combustion: R&D efforts of Alstom. In: Second workshop, oxy-combustion research network, Windsor, 25–27 Jan 2007
39.
Zurück zum Zitat Chandel MK, Hoteit A, Delebarre A (2009) Experimental investigations of some metal oxides for chemical looping combustion in a fluidized bed reactor. Fuel 88:898–908 Chandel MK, Hoteit A, Delebarre A (2009) Experimental investigations of some metal oxides for chemical looping combustion in a fluidized bed reactor. Fuel 88:898–908
40.
Zurück zum Zitat Tan R, Santos S, Spliethoff H (2006) Chemical looping combustion for fossil fuel utilization with carbon sequestration. International Flame Foundation Study Report Doc. No. G 23/y/s, January 2006 Tan R, Santos S, Spliethoff H (2006) Chemical looping combustion for fossil fuel utilization with carbon sequestration. International Flame Foundation Study Report Doc. No. G 23/y/s, January 2006
41.
Zurück zum Zitat Hossain MM, de Lasa HI (2008) Chemical looping combustion (CLC) for inherent CO2 separations – a review. Chem Eng Sci 63:4433–4451 Hossain MM, de Lasa HI (2008) Chemical looping combustion (CLC) for inherent CO2 separations – a review. Chem Eng Sci 63:4433–4451
42.
Zurück zum Zitat Adánez J, Gayán P, Celaya J et al (2006) Chemical looping in a 10 kWth prototype using a CuO/Al2O3 oxygen carrier: effect of operating conditions on methane combustion. Ind Eng Chem Res 45:6075–6080 Adánez J, Gayán P, Celaya J et al (2006) Chemical looping in a 10 kWth prototype using a CuO/Al2O3 oxygen carrier: effect of operating conditions on methane combustion. Ind Eng Chem Res 45:6075–6080
43.
Zurück zum Zitat Tian H, Chaudhari K, Simonyi T et al (2008) Chemical looping combustion of coal derived synthesis gas over copper oxide oxygen carriers. Energy Fuels 22:3744–3755 Tian H, Chaudhari K, Simonyi T et al (2008) Chemical looping combustion of coal derived synthesis gas over copper oxide oxygen carriers. Energy Fuels 22:3744–3755
44.
Zurück zum Zitat Adánez J, Gayán P, Celaya J et al (2006) Behaviour of a CuO-Al2O3 oxygen carrier in a 10 kW chemical looping combustion plant. In: Nineteenth international conference on fluidized bed combustion, Vienna, Austria, 21–24 May 2006 Adánez J, Gayán P, Celaya J et al (2006) Behaviour of a CuO-Al2O3 oxygen carrier in a 10 kW chemical looping combustion plant. In: Nineteenth international conference on fluidized bed combustion, Vienna, Austria, 21–24 May 2006
45.
Zurück zum Zitat De Diego LF, García-Labiano F, Adánez J et al (2004) Development of Cu-based oxygen carriers for chemical looping combustion. Fuel 83:1749–1757 De Diego LF, García-Labiano F, Adánez J et al (2004) Development of Cu-based oxygen carriers for chemical looping combustion. Fuel 83:1749–1757
46.
Zurück zum Zitat Cao Y, Casenas B, Pan W-P (2006) Investigation of chemical looping combustion by solid fuels. 2. Redox reaction kinetics and product characterization with coal, biomass, and solid waste as solid fuels, and CuO as an oxygen carrier. Energy Fuels 20:1845–1854 Cao Y, Casenas B, Pan W-P (2006) Investigation of chemical looping combustion by solid fuels. 2. Redox reaction kinetics and product characterization with coal, biomass, and solid waste as solid fuels, and CuO as an oxygen carrier. Energy Fuels 20:1845–1854
47.
Zurück zum Zitat Mattisson T, Lyngfelt A, Cho P (2001) The use of iron oxide as an oxygen carrier, in chemical-looping of methane with inherent separation of CO2. Fuel 80:1953–1962 Mattisson T, Lyngfelt A, Cho P (2001) The use of iron oxide as an oxygen carrier, in chemical-looping of methane with inherent separation of CO2. Fuel 80:1953–1962
48.
Zurück zum Zitat Leion H, Lyngfelt A, Johansson M et al (2008) The use of ilmenite as an oxygen carrier in chemical-looping combustion. Chem Eng Res Dev 86:1017–1026 Leion H, Lyngfelt A, Johansson M et al (2008) The use of ilmenite as an oxygen carrier in chemical-looping combustion. Chem Eng Res Dev 86:1017–1026
49.
Zurück zum Zitat Leion H, Mattisson T, Lyngfelt A (2008) Solid fuels in chemical-looping combustion. Int J Greenhouse Gas Control 2:180–193 Leion H, Mattisson T, Lyngfelt A (2008) Solid fuels in chemical-looping combustion. Int J Greenhouse Gas Control 2:180–193
50.
Zurück zum Zitat Abad A, Mattisson T, Lyngfelt A, Johansson M (2007) The use of iron oxide as oxygen carrier in a chemical looping reactor. Fuel 86:1021–1035 Abad A, Mattisson T, Lyngfelt A, Johansson M (2007) The use of iron oxide as oxygen carrier in a chemical looping reactor. Fuel 86:1021–1035
51.
Zurück zum Zitat Son SR, Kim SD (2006) Chemical looping combustion with NiO and Fe2O3 in a thermobalance and circulating fluidized bed reactor with double loops. Ind Eng Chem Res 45:2689–2696 Son SR, Kim SD (2006) Chemical looping combustion with NiO and Fe2O3 in a thermobalance and circulating fluidized bed reactor with double loops. Ind Eng Chem Res 45:2689–2696
52.
Zurück zum Zitat Corbella BM, Palacios JM (2007) Titania-supported iron oxide as oxygen carrier for chemical-looping combustion of methane. Fuel 86:113–122 Corbella BM, Palacios JM (2007) Titania-supported iron oxide as oxygen carrier for chemical-looping combustion of methane. Fuel 86:113–122
53.
Zurück zum Zitat Rydén M, Lyngfelt A, Schulman A et al (2008) Developing chemical-looping steam reforming and chemical-looping autothermal reforming. In: Thomas DC, Bensen SM (eds) Carbon dioxide capture for storage in deep geological formations, vol 3. CPL Press, Berks Rydén M, Lyngfelt A, Schulman A et al (2008) Developing chemical-looping steam reforming and chemical-looping autothermal reforming. In: Thomas DC, Bensen SM (eds) Carbon dioxide capture for storage in deep geological formations, vol 3. CPL Press, Berks
54.
Zurück zum Zitat Rydén M, Lyngfelt A, Mattisson T et al (2008) Novel oxygen carrier materials for chemical looping combustion and chemical-looping reforming La x Sr1 − x Fe y Co1 − y , O3-δ perovskites and mixed-metal oxides of NiO, Fe2O3, and Mn3O4. Int J Greenhouse Gas Control 2:21–36 Rydén M, Lyngfelt A, Mattisson T et al (2008) Novel oxygen carrier materials for chemical looping combustion and chemical-looping reforming La x Sr1 − x Fe y Co1 − y , O3-δ perovskites and mixed-metal oxides of NiO, Fe2O3, and Mn3O4. Int J Greenhouse Gas Control 2:21–36
55.
Zurück zum Zitat Rydén M, Johansson M, Cleverstam E et al (2010) Ilmenite with addition of NiO as oxygen carrier for chemical-looping combustion. Fuel 89(11):3523–3533 Rydén M, Johansson M, Cleverstam E et al (2010) Ilmenite with addition of NiO as oxygen carrier for chemical-looping combustion. Fuel 89(11):3523–3533
56.
Zurück zum Zitat Rubel A, Liu K, Neathery J, Taulbee D (2009) Oxygen carriers for chemical looping combustion of solid fuels. Fuel 88:876–884 Rubel A, Liu K, Neathery J, Taulbee D (2009) Oxygen carriers for chemical looping combustion of solid fuels. Fuel 88:876–884
57.
Zurück zum Zitat He F, Wei Y, Li H, Wang H (2009) Synthesis gas generation by chemical-looping reforming using Ce-based oxygen carriers modified with Fe, Cu and Mn oxides. Energy Fuels 23:2095–2102 He F, Wei Y, Li H, Wang H (2009) Synthesis gas generation by chemical-looping reforming using Ce-based oxygen carriers modified with Fe, Cu and Mn oxides. Energy Fuels 23:2095–2102
58.
Zurück zum Zitat Li K, Wang H, Wei Y et al (2010) Syngas production from methane and air via a redox process using Ce-Fe mixed oxides as oxygen carriers. Appl Catal B 97:361–372 Li K, Wang H, Wei Y et al (2010) Syngas production from methane and air via a redox process using Ce-Fe mixed oxides as oxygen carriers. Appl Catal B 97:361–372
59.
Zurück zum Zitat Jin H, Okamato T, Ishida M (1999) Development of a novel chemical-looping combustion: synthesis of a solid looping material of NiO/NiAl2O4. Ind Eng Chem Res 38:126–132 Jin H, Okamato T, Ishida M (1999) Development of a novel chemical-looping combustion: synthesis of a solid looping material of NiO/NiAl2O4. Ind Eng Chem Res 38:126–132
60.
Zurück zum Zitat Corbella BM, de Diego F, García-Labiano F et al (2006) Performance in a fixed bed reactor of titania-supported nickel oxide as oxygen carrier for the chemical-looping combustion of methane in multicycle tests. Ind Eng Chem 45:157–165 Corbella BM, de Diego F, García-Labiano F et al (2006) Performance in a fixed bed reactor of titania-supported nickel oxide as oxygen carrier for the chemical-looping combustion of methane in multicycle tests. Ind Eng Chem 45:157–165
61.
Zurück zum Zitat Siriwardane R, Poston J, Chaudhari K et al (2007) Chemical looping combustion of simulated synthesis gas using nickel oxide oxygen carrier supported on bentonite. Energy Fuels 21:1582–1591 Siriwardane R, Poston J, Chaudhari K et al (2007) Chemical looping combustion of simulated synthesis gas using nickel oxide oxygen carrier supported on bentonite. Energy Fuels 21:1582–1591
62.
Zurück zum Zitat Kuusik R, Trikkel A, Lyngfelt A, Mattisson T (2009) High temperature behavior of NiO-based oxygen carriers for chemical looping combustion. Energy Procedia 1:3885–3892 Kuusik R, Trikkel A, Lyngfelt A, Mattisson T (2009) High temperature behavior of NiO-based oxygen carriers for chemical looping combustion. Energy Procedia 1:3885–3892
63.
Zurück zum Zitat Redman JE, Olafsen A, Smith JB, Blom R (2006) Chemical looping combustion using NiO/NiAl2O4: mechanisms and kinetics of reduction-oxidation (Red-Ox) reactions from in situ powder X-ray diffraction and thermogravimetric experiments. Energy Fuels 20:1382–1387 Redman JE, Olafsen A, Smith JB, Blom R (2006) Chemical looping combustion using NiO/NiAl2O4: mechanisms and kinetics of reduction-oxidation (Red-Ox) reactions from in situ powder X-ray diffraction and thermogravimetric experiments. Energy Fuels 20:1382–1387
64.
Zurück zum Zitat Mattisson T, Johansson M, Jerndal E, Lyngfelt A (2008) The reaction of Ni/NiAl2O4 particles with alternating methane and oxygen. Cdn J Chem Eng 86:756–767 Mattisson T, Johansson M, Jerndal E, Lyngfelt A (2008) The reaction of Ni/NiAl2O4 particles with alternating methane and oxygen. Cdn J Chem Eng 86:756–767
65.
Zurück zum Zitat Ksepko E, Siriwardane RV, Tian H et al (2010) Comparative investigation on chemical looping combustion of coal-derived synthesis gas containing H2S over supported NiO oxygen carrier. Energy Fuels 24(8):4206–4214 Ksepko E, Siriwardane RV, Tian H et al (2010) Comparative investigation on chemical looping combustion of coal-derived synthesis gas containing H2S over supported NiO oxygen carrier. Energy Fuels 24(8):4206–4214
66.
Zurück zum Zitat Zafar Q, Mattisson T, Gevert B (2005) Integrated hydrogen and power production with CO2 capture using chemical-looping reforming-redox reactivity of particles of CuO, NiO and Fe2O3 using SiO2 as a support. Ind Eng Chem Res 44:3485–3496 Zafar Q, Mattisson T, Gevert B (2005) Integrated hydrogen and power production with CO2 capture using chemical-looping reforming-redox reactivity of particles of CuO, NiO and Fe2O3 using SiO2 as a support. Ind Eng Chem Res 44:3485–3496
67.
Zurück zum Zitat Hossain M, Lopez D, Herrera J, de Lasa HI (2009) Nickel on lanthanum-modified γ-Al2O3 oxygen carrier for CLC: reactivity and stability. Catal Today 43:179–186 Hossain M, Lopez D, Herrera J, de Lasa HI (2009) Nickel on lanthanum-modified γ-Al2O3 oxygen carrier for CLC: reactivity and stability. Catal Today 43:179–186
68.
Zurück zum Zitat Mayer K, Prőll T, Hofbauer H (2010) Performance of mixtures of natural minerals and a nickel based material as oxygen carriers in chemical looping combustion in a 120 kW pilot plant. In: 1st international conference on chemical looping, Lyon, France, 17–19 Mar 2010 Mayer K, Prőll T, Hofbauer H (2010) Performance of mixtures of natural minerals and a nickel based material as oxygen carriers in chemical looping combustion in a 120 kW pilot plant. In: 1st international conference on chemical looping, Lyon, France, 17–19 Mar 2010
69.
Zurück zum Zitat Johansson M, Mattisson T, Rydén M, Lyngfelt A (2006) Carbon capture via chemical looping combustion and reforming. In: International seminar on carbon sequestration and climate change, Rio de Janeiro, 24–26 Oct 2006 Johansson M, Mattisson T, Rydén M, Lyngfelt A (2006) Carbon capture via chemical looping combustion and reforming. In: International seminar on carbon sequestration and climate change, Rio de Janeiro, 24–26 Oct 2006
70.
Zurück zum Zitat Adánez J, Dueso C, de Diego LF et al (2009) Methane combustion in a 500 Wth chemical looping combustion system using an impregnated Ni-based oxygen carrier. Energy Fuels 23:130–142 Adánez J, Dueso C, de Diego LF et al (2009) Methane combustion in a 500 Wth chemical looping combustion system using an impregnated Ni-based oxygen carrier. Energy Fuels 23:130–142
71.
Zurück zum Zitat Kimball E, Geerdink P, Huisinga A et al (2010) Fixed bed chemical looping combustion experiment based design. In: Proceedings of the 35th international technical conference on clean coal and fuel systems, Clearwater, 6–10 June 2010 Kimball E, Geerdink P, Huisinga A et al (2010) Fixed bed chemical looping combustion experiment based design. In: Proceedings of the 35th international technical conference on clean coal and fuel systems, Clearwater, 6–10 June 2010
72.
Zurück zum Zitat Cuenca MA, Anthony EJ (eds) (1995) Pressurized fluidized beds. Blackie Academic and Professional, London Cuenca MA, Anthony EJ (eds) (1995) Pressurized fluidized beds. Blackie Academic and Professional, London
73.
Zurück zum Zitat Naqvi R, Wolf J, Bolland O (2007) Part-load analysis of a chemical looping combustion (CLC) combined cycle with CO2 capture. Energy 32:360–370 Naqvi R, Wolf J, Bolland O (2007) Part-load analysis of a chemical looping combustion (CLC) combined cycle with CO2 capture. Energy 32:360–370
74.
Zurück zum Zitat Kvamsdal HM, Jordal K, Bolland O (2007) A quantitative comparison of gas turbine cycles with CO2 capture. Energy 32:10–24 Kvamsdal HM, Jordal K, Bolland O (2007) A quantitative comparison of gas turbine cycles with CO2 capture. Energy 32:10–24
75.
Zurück zum Zitat Wolf J, Anheden M, Yan J (2005) Comparison of nickel- and iron-based oxygen carriers in chemical looping combustion for CO2 capture in power generation. Fuel 84:993–1006 Wolf J, Anheden M, Yan J (2005) Comparison of nickel- and iron-based oxygen carriers in chemical looping combustion for CO2 capture in power generation. Fuel 84:993–1006
76.
Zurück zum Zitat Consonni S, Lozza G, Pelliccia G et al (2006) Chemical looping combustion for combined cycles with CO2 capture. J Eng Gas Turbine Power 128:525–534 Consonni S, Lozza G, Pelliccia G et al (2006) Chemical looping combustion for combined cycles with CO2 capture. J Eng Gas Turbine Power 128:525–534
77.
Zurück zum Zitat Damen K, van Troost M, Faaij A, Turkenburg W (2006) A comparison of electricity and hydrogen systems with CO2 capture and storage: part A: review and selection of promising conversions and capture systems. Prog Energy Combust Sci 32:215–246 Damen K, van Troost M, Faaij A, Turkenburg W (2006) A comparison of electricity and hydrogen systems with CO2 capture and storage: part A: review and selection of promising conversions and capture systems. Prog Energy Combust Sci 32:215–246
78.
Zurück zum Zitat Dueso C, García-Labiano F, Adánez J et al (2009) Syngas combustion in a chemical-looping combustion system using impregnated Ni-based oxygen carrier. Fuel 88:2357–2364 Dueso C, García-Labiano F, Adánez J et al (2009) Syngas combustion in a chemical-looping combustion system using impregnated Ni-based oxygen carrier. Fuel 88:2357–2364
79.
Zurück zum Zitat Rao AB, Rubin ES (2006) Identifying cost-effective CO2 control levels for amine-based CO2 capture. Ind Eng Chem Res 45:2421–2429 Rao AB, Rubin ES (2006) Identifying cost-effective CO2 control levels for amine-based CO2 capture. Ind Eng Chem Res 45:2421–2429
80.
Zurück zum Zitat Higman C, van der Burgt M (2008) Gasification, 2nd edn. Gulf Professional Publishing, Elsevier, Oxford Higman C, van der Burgt M (2008) Gasification, 2nd edn. Gulf Professional Publishing, Elsevier, Oxford
81.
Zurück zum Zitat Siriwardane R, Tian H, Miller D et al (2010) Evaluation of reaction mechanism of coal-metal oxide interaction in chemical looping combustion. Combust Flame 157:2198–2208 Siriwardane R, Tian H, Miller D et al (2010) Evaluation of reaction mechanism of coal-metal oxide interaction in chemical looping combustion. Combust Flame 157:2198–2208
82.
Zurück zum Zitat Dennis JS, Scott SA (2010) In situ gasification of a lignite coal and CO2 separation using chemical looping with a Cu-based oxygen carrier. Fuel 89:1623–1640 Dennis JS, Scott SA (2010) In situ gasification of a lignite coal and CO2 separation using chemical looping with a Cu-based oxygen carrier. Fuel 89:1623–1640
83.
Zurück zum Zitat Brown TA, Dennis JS, Scott SA et al (2010) Gasification and chemical-looping combustion of a lignite char in a fluidized bed of iron oxide. Energy Fuels 24:3034–3048 Brown TA, Dennis JS, Scott SA et al (2010) Gasification and chemical-looping combustion of a lignite char in a fluidized bed of iron oxide. Energy Fuels 24:3034–3048
84.
Zurück zum Zitat Srinivasan NS, Lahiri AK (1975) On the mechanism of iron oxide reduction by carbon. Metall Trans B 6(2):269–274 Srinivasan NS, Lahiri AK (1975) On the mechanism of iron oxide reduction by carbon. Metall Trans B 6(2):269–274
85.
Zurück zum Zitat Lyon RK, Cole JA (2000) Unmixed combustion: an alternative to fire. Combust Flame 121:249–261 Lyon RK, Cole JA (2000) Unmixed combustion: an alternative to fire. Combust Flame 121:249–261
86.
Zurück zum Zitat Leion H, Mattisson T, Lyngfelt A (2007) The use of petroleum coke as fuel in chemical-looping combustion. Fuel 86:1947–1958 Leion H, Mattisson T, Lyngfelt A (2007) The use of petroleum coke as fuel in chemical-looping combustion. Fuel 86:1947–1958
87.
Zurück zum Zitat Berguerand N, Lyngfelt A (2008) The use of petroleum coke as fuel in a 10 kWth chemical-looping combustor. Int J Greenhouse Gas Control 2:169–179 Berguerand N, Lyngfelt A (2008) The use of petroleum coke as fuel in a 10 kWth chemical-looping combustor. Int J Greenhouse Gas Control 2:169–179
88.
Zurück zum Zitat Anthony EJ (1995) Fluidized bed combustion of alternative solid fuels: status, successes and problems of the technology. Prog Energy Combust Sci 21:239–268 Anthony EJ (1995) Fluidized bed combustion of alternative solid fuels: status, successes and problems of the technology. Prog Energy Combust Sci 21:239–268
89.
Zurück zum Zitat Berguerand N, Lyngfelt A (2008) Design and operation of a 10 kWth chemical-looping combustor for solid fuels – testing with South African coal. Fuel 87:2713–2726 Berguerand N, Lyngfelt A (2008) Design and operation of a 10 kWth chemical-looping combustor for solid fuels – testing with South African coal. Fuel 87:2713–2726
90.
Zurück zum Zitat Markström P, Berguerand N, Lyngfelt A (2010) The application of a multistage-bed model for residence-time analysis in chemical-looping combustion of solid fuel. Chem Eng Sci 65(18):5055–5066 Markström P, Berguerand N, Lyngfelt A (2010) The application of a multistage-bed model for residence-time analysis in chemical-looping combustion of solid fuel. Chem Eng Sci 65(18):5055–5066
91.
Zurück zum Zitat Gao Z, Shen L, Xian J et al (2008) Use of coal as fuel for chemical-looping combustion with Ni-based oxygen carrier. Ind Eng Chem Res 47:9279–9287 Gao Z, Shen L, Xian J et al (2008) Use of coal as fuel for chemical-looping combustion with Ni-based oxygen carrier. Ind Eng Chem Res 47:9279–9287
92.
Zurück zum Zitat Shen L, Wu J, Xiao J (2009) Experiments on chemical looping combustion of coal with a NiO based oxygen carrier. Combust Flame 156:721–728 Shen L, Wu J, Xiao J (2009) Experiments on chemical looping combustion of coal with a NiO based oxygen carrier. Combust Flame 156:721–728
93.
Zurück zum Zitat Zheng M, Shen L, Xiao J (2010) Reduction of CaSO4 oxygen carrier with coal in chemical-looping combustion: effects of temperature and gasification intermediate. Int J Greenhouse Gas Control 4(5):716–728 Zheng M, Shen L, Xiao J (2010) Reduction of CaSO4 oxygen carrier with coal in chemical-looping combustion: effects of temperature and gasification intermediate. Int J Greenhouse Gas Control 4(5):716–728
94.
Zurück zum Zitat Scott SA, Dennis JS, Hayhurst AN, Brown T (2006) In-situ gasification of a solid fuel and CO2 separation using chemical looping. AIChE J 52:3325–3328 Scott SA, Dennis JS, Hayhurst AN, Brown T (2006) In-situ gasification of a solid fuel and CO2 separation using chemical looping. AIChE J 52:3325–3328
95.
Zurück zum Zitat Dennis JS, Scott SA, Hayhurst AN (2006) In situ gasification of coal using steam with chemical looping: a technique for isolating CO2 from burning a solid fuel. J Energy Inst 79:187–190 Dennis JS, Scott SA, Hayhurst AN (2006) In situ gasification of coal using steam with chemical looping: a technique for isolating CO2 from burning a solid fuel. J Energy Inst 79:187–190
96.
Zurück zum Zitat Xiang W, Wang S, Di T (2006) Investigation of gasification chemical looping combustion combined cycle performance. Energy Fuels 22:961–966 Xiang W, Wang S, Di T (2006) Investigation of gasification chemical looping combustion combined cycle performance. Energy Fuels 22:961–966
97.
Zurück zum Zitat Xiao R, Song Q, Song M et al (2010) Pressurized chemical-looping combustion of coal with an iron ore-based oxygen carrier. Combust Flame 157:1140–1153 Xiao R, Song Q, Song M et al (2010) Pressurized chemical-looping combustion of coal with an iron ore-based oxygen carrier. Combust Flame 157:1140–1153
98.
Zurück zum Zitat Xiao R, Song S, Zhang S et al (2010) Pressurized chemical-looping combustion of Chinese bituminous coal: cyclic performance and characterization of iron-ore based oxygen carrier. Energy Fuels 24:1449–1463 Xiao R, Song S, Zhang S et al (2010) Pressurized chemical-looping combustion of Chinese bituminous coal: cyclic performance and characterization of iron-ore based oxygen carrier. Energy Fuels 24:1449–1463
99.
Zurück zum Zitat Adánez J, García-Labiano F, Gayán P et al (2009) Effects of gas impurities on the behavior of Ni-based oxygen carriers on chemical-looping combustion. GHGT-9. Energy Procedia 1:11–18 Adánez J, García-Labiano F, Gayán P et al (2009) Effects of gas impurities on the behavior of Ni-based oxygen carriers on chemical-looping combustion. GHGT-9. Energy Procedia 1:11–18
100.
Zurück zum Zitat Foero CR, Gayán P, García-Labiano F et al (2010) Effect of gas composition in chemical-looping combustion with copper based oxygen carriers: fate of sulphur. Int J Greenhouse Gas Control 4(5):762–770 Foero CR, Gayán P, García-Labiano F et al (2010) Effect of gas composition in chemical-looping combustion with copper based oxygen carriers: fate of sulphur. Int J Greenhouse Gas Control 4(5):762–770
101.
Zurück zum Zitat Shen L, Gao Z, Wu J, Xiao J (2010) Sulfur behavior in chemical looping combustion with NiO/Al2O3 oxygen carrier. Combust Flame 157:853–863 Shen L, Gao Z, Wu J, Xiao J (2010) Sulfur behavior in chemical looping combustion with NiO/Al2O3 oxygen carrier. Combust Flame 157:853–863
102.
Zurück zum Zitat McGlashan NR (2010) The thermodynamics of chemical looping combustion applied to the hydrogen economy. Int J Hydrogen Energy 35:6465–6474 McGlashan NR (2010) The thermodynamics of chemical looping combustion applied to the hydrogen economy. Int J Hydrogen Energy 35:6465–6474
103.
Zurück zum Zitat Harrison DP (2009) Private communication. University of Louisiana, Lafayette, September 2009 Harrison DP (2009) Private communication. University of Louisiana, Lafayette, September 2009
104.
Zurück zum Zitat Larsen R, Wang M, Santini D et al (2004) Might Canadian oil sands promote hydrogen production technology for transportation. Argonne National Laboratory Presentation, Chicago, IL, 20 Apr 2004 Larsen R, Wang M, Santini D et al (2004) Might Canadian oil sands promote hydrogen production technology for transportation. Argonne National Laboratory Presentation, Chicago, IL, 20 Apr 2004
105.
Zurück zum Zitat Jin H, Ishida M (2001) Reactivity study on a novel hydrogen fueled chemical-looping combustion. Int J Hydrogen Energy 26:889–894 Jin H, Ishida M (2001) Reactivity study on a novel hydrogen fueled chemical-looping combustion. Int J Hydrogen Energy 26:889–894
106.
Zurück zum Zitat Chiesa P, Lozza G, Malandrino A et al (2008) Three-reactors chemical looping process for hydrogen. Int J Hydrogen Energy 33:2233–2245 Chiesa P, Lozza G, Malandrino A et al (2008) Three-reactors chemical looping process for hydrogen. Int J Hydrogen Energy 33:2233–2245
107.
Zurück zum Zitat Go KS, Son SR, Kim SD et al (2009) Hydrogen production from two-step steam methane reforming in a fluidized bed reactor. Int J Hydrogen Energy 34:1301–1309 Go KS, Son SR, Kim SD et al (2009) Hydrogen production from two-step steam methane reforming in a fluidized bed reactor. Int J Hydrogen Energy 34:1301–1309
108.
Zurück zum Zitat Xiang W, Chen S, Xue Z, Sun X (2010) Investigation of coal gasification hydrogen and electricity co-production with three-reactors chemical looping process. Int J Hydrogen Energy 35(16):8580–8591 Xiang W, Chen S, Xue Z, Sun X (2010) Investigation of coal gasification hydrogen and electricity co-production with three-reactors chemical looping process. Int J Hydrogen Energy 35(16):8580–8591
109.
Zurück zum Zitat Fan L, Li F, Ramkumar S (2008) Utilization of chemical looping strategy in coal gasification processes. Particuology 6:131–142 Fan L, Li F, Ramkumar S (2008) Utilization of chemical looping strategy in coal gasification processes. Particuology 6:131–142
110.
Zurück zum Zitat Cleeton JPE, Bohn CD, Dennis JS, Scott SA (2009) Clean hydrogen production and electricity from coal via chemical looping: identifying a suitable operating regime. Int J Hydrogen Energy 34:1–12 Cleeton JPE, Bohn CD, Dennis JS, Scott SA (2009) Clean hydrogen production and electricity from coal via chemical looping: identifying a suitable operating regime. Int J Hydrogen Energy 34:1–12
111.
Zurück zum Zitat Yang J, Cai N-S, Li Z-S (2008) Hydrogen production from the steam-iron process with direct reduction of iron oxide by chemical looping combustion of coal char. Energy Fuels 22:2570–2579 Yang J, Cai N-S, Li Z-S (2008) Hydrogen production from the steam-iron process with direct reduction of iron oxide by chemical looping combustion of coal char. Energy Fuels 22:2570–2579
112.
Zurück zum Zitat Rydén M, Lyngfelt A, Mattisson T (2008) Chemical-looping combustion and chemical-looping reforming in a circulating fluidized-bed reactor using Ni-based oxygen carriers. Energy Fuels 22:2285–2297 Rydén M, Lyngfelt A, Mattisson T (2008) Chemical-looping combustion and chemical-looping reforming in a circulating fluidized-bed reactor using Ni-based oxygen carriers. Energy Fuels 22:2285–2297
113.
Zurück zum Zitat De Diego LF, Ortiz M, García-Labiano F et al (2009) Synthesis gas generation by chemical-looping reforming using a Ni-based oxygen carrier. GHGT-9. Energy Procedia 1:3–10 De Diego LF, Ortiz M, García-Labiano F et al (2009) Synthesis gas generation by chemical-looping reforming using a Ni-based oxygen carrier. GHGT-9. Energy Procedia 1:3–10
114.
Zurück zum Zitat Pröll T, Bolhàr-Nordenkampf J, Kolbitsch P, Hofbauer H (2010) Syngas and a separate nitrogen/argon stream via chemical looping reforming – a 140 kW pilot plant study. Fuel 89:1249–1256 Pröll T, Bolhàr-Nordenkampf J, Kolbitsch P, Hofbauer H (2010) Syngas and a separate nitrogen/argon stream via chemical looping reforming – a 140 kW pilot plant study. Fuel 89:1249–1256
115.
Zurück zum Zitat Kale GR, Kulkarni BD, Joshi AR (2010) Thermodynamic study of combining chemical looping combustion and combined reforming of propane. Fuel 89:3141–3146 Kale GR, Kulkarni BD, Joshi AR (2010) Thermodynamic study of combining chemical looping combustion and combined reforming of propane. Fuel 89:3141–3146
116.
Zurück zum Zitat Shimuzu T (2010) Open communication at 60th IEA FBC meeting, Gothenburg, Sweden, May 2010 Shimuzu T (2010) Open communication at 60th IEA FBC meeting, Gothenburg, Sweden, May 2010
117.
Zurück zum Zitat Jin H, Ishida M (2004) A new type of coal gas fueled chemical looping combustion. Fuel 83:2411–2417 Jin H, Ishida M (2004) A new type of coal gas fueled chemical looping combustion. Fuel 83:2411–2417
118.
Zurück zum Zitat Garcia-Labiano F, Adánez J, de Diego LF et al (2006) Effect of pressure on the behavior of copper-, iron-, and nickel-based oxygen carriers for chemical-looping combustion. Energy Fuels 20:26–33 Garcia-Labiano F, Adánez J, de Diego LF et al (2006) Effect of pressure on the behavior of copper-, iron-, and nickel-based oxygen carriers for chemical-looping combustion. Energy Fuels 20:26–33
119.
Zurück zum Zitat Zeeman F, Castaldi M (2008) An investigation of synthetic fuel production via chemical looping. Environ Sci Technol 42:2723–2727 Zeeman F, Castaldi M (2008) An investigation of synthetic fuel production via chemical looping. Environ Sci Technol 42:2723–2727
120.
Zurück zum Zitat Zhang X, Han W, Hong H, Jin H (2008) A chemical intercooling turbine cycle with chemical looping combustion. Energy 34:2131–2136 Zhang X, Han W, Hong H, Jin H (2008) A chemical intercooling turbine cycle with chemical looping combustion. Energy 34:2131–2136
Metadaten
Titel
Chemical Looping Combustion
verfasst von
Edward John (Ben) Anthony
Copyright-Jahr
2012
Verlag
Springer US
DOI
https://doi.org/10.1007/978-1-4419-7991-9_42