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Particuology and climate change

Particuology and climate change
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摘要 The global concern over the greenhouse gas emissions and its effect on global warming and climate change has focused attention on the necessity of carbon dioxide capture and sequestration. There are many processes proposed to capture carbon either before or after combustion and these processes invariably involve investigation and application of traditional particuology. The solids employed are of different sizes, densities, morphologies, and strengths. Their handling, transportation, recirculation, and reactor applications are the essence of 'particuology'. Particuology can play an important and vital role in achieving cost-effective removal of carbon and minimize emissions of greenhouse gases. In this paper, the existing and developing carbon capture processes are briefly reviewed and the opportunities for application of particuology are identified. The review was not intended to be exhaustive. It is only in sufficient detail to make connection between particuology and climate change. For immediate and future challenges of reducing global warming and carbon capture and sequestration, innovative reactor design and application of parricuology is imperative. Expertise and innovation in particuology can greatly enhance the speed of development of those technologies and help to achieve cost-effective implementation. Particuology is indeed intimately related to the climate change and global warming. The global concern over the greenhouse gas emissions and its effect on global warming and climate change has focused attention on the necessity of carbon dioxide capture and sequestration. There are many processes proposed to capture carbon either before or after combustion and these processes invariably involve investigation and application of traditional particuology. The solids employed are of different sizes, densities, morphologies, and strengths. Their handling, transportation, recirculation, and reactor applications are the essence of 'particuology'. Particuology can play an important and vital role in achieving cost-effective removal of carbon and minimize emissions of greenhouse gases. In this paper, the existing and developing carbon capture processes are briefly reviewed and the opportunities for application of particuology are identified. The review was not intended to be exhaustive. It is only in sufficient detail to make connection between particuology and climate change. For immediate and future challenges of reducing global warming and carbon capture and sequestration, innovative reactor design and application of parricuology is imperative. Expertise and innovation in particuology can greatly enhance the speed of development of those technologies and help to achieve cost-effective implementation. Particuology is indeed intimately related to the climate change and global warming.
出处 《Particuology》 SCIE EI CAS CSCD 2010年第6期507-513,共7页 颗粒学报(英文版)
关键词 Particuology Fluidized beds Circulating fluidized beds Pre-combustion Post-combustion Oxycombustion Chemical looping Carbon dioxide capture Carbon dioxide sequestration Climate changes Global warming Particuology Fluidized beds Circulating fluidized beds Pre-combustion Post-combustion Oxycombustion Chemical looping Carbon dioxide capture Carbon dioxide sequestration Climate changes Global warming
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  • 1[1]Agnihotri,R.,Chauk,S.,Mahuli,S.,& Fan,L.-S.(1999).Influence of Surface modifiers on structure of precipitated calcium carbonate.Industrial and Engineering Chemistry Research,38,2283-2291.
  • 2[2]Andrus,H.E.,Burns,G.,Chiu,J.H.,Liljedahl,G.N.,Stromberg,P.T.,& Thibeault,P.R.(2006).ALSTOM technical report for project DE-FC26-03NT41866.
  • 3[3]Chatel-Pelage,F.,Varagani,R.,Pranda,P.,Perrin,N.,Farzan,H.,Vecci,S.J.,et al.(2005).Applications of oxygen for NOx control and CO2 capture in coal-fired power plants.In Proceedings of Second International Conference on Clean Coal Technologies for our Future.
  • 4[4]Fan,L.-S.,Gupta,H.,& Iyer,M.V.(2007).Separation of carbon dioxide (CO2) from gas mixtures by calcium based reaction separation (CaRS-CO2) process.PCT Int.Appl.WO 2007002792.
  • 5[5]Fan,L.-S.,Gupta,P.,Velazquez-Vargas,L.G.,& Li,F.(2007b).Systems and methods of converting fuels.PCT Int.Appl.WO 2007082089.
  • 6[6]Fan,L.-S.,Li,F.,Velazquez-Vargas,L.G.,& Ramkumar,S.(in press).Chemical looping gasification.Proceedings of 9th International Conference on Circulating Fluidized Beds,Hamburg,Germany,May.
  • 7[7]Gupta,P.(2006).Regenerable metal oxide composite particles and their use in novel chemical processes.Doctoral dissertation,The Ohio State University.
  • 8[8]Gupta,P.,Velazquez-Vargas,L.G.,& Fan,L.-S.(2007).Syngas redox (SGR) process to produce hydrogen from coal derived syngas.Energy and fuels,21 (5),2900-2908.
  • 9[9]Gupta,P.,Velazquez-Vargas,L.G.,Li,F.,& Fan,L.-S.(2006).Chemical looping reforming process for the production of hydrogen from coal.In Proceedings of 23rd Annual International Pittsburgh Coal Conference.
  • 10[10]Gupta,P.,Velazquez-Vargas,L.G.,Thomas,T,& Fan,L.-S.(2004).Hydrogen production from combustion looping (solids-coal).In Proceedings of Clear Water Coal Conference.

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