• Non ci sono risultati.

[1] Intergovernmental Panel on Climate Change (IPCC), Special Report on Carbon Dioxide Capture and Storage, Cambridge University Press 2005

N/A
N/A
Protected

Academic year: 2021

Condividi "[1] Intergovernmental Panel on Climate Change (IPCC), Special Report on Carbon Dioxide Capture and Storage, Cambridge University Press 2005 "

Copied!
4
0
0

Testo completo

(1)

115

Riferimenti

[1] Intergovernmental Panel on Climate Change (IPCC), Special Report on Carbon Dioxide Capture and Storage, Cambridge University Press 2005

[2] Herzog, H. An Introduction to CO

2

Separation and Capture Technologies. Cambridge, MIT Energy Laboratory, 1999

[3] Coal meeting the Climate Challenge, World Coal Institute pubblication 2007

[4] Spliethoff, Tan, Coraggio, Santos. Oxy-Coal Combustion with Flue Gas Recycle for the Power Generation Industry. 2005. IFRF Doc. N° 23/y/1 [5] Hottel, Sarofim. Radiative transfer, vol. 1. NY, USA, McGrowHill 1993

[6] Woyocennko, Van de Kamp. Characterization of Flames generated by Burning Pulverised Coal in a Mixture of Oxygen and Recycled Flue Gas. 1995. IFRF Doc. N° F98/y/2

[7] Chatel-Pelage, F., Marin, O., Perrin, N., Carty, R., Philo, G.R., Farzan, H.

and Vecci, S.J. (2003). A Pilot-Scale Demonstration of Oxy-Combustion with Flue Gas Recirculation In A Pulverized Coal Fired Boiler. 28th International Technical Conference on Coal Utilization & Fuel Systems.

Clearwater, USA.

[8] Wall, Buhre, Elliot, Sheng, Gupta. Oxy-fuel combustion technology for coal fired power plants. Progerss in energy and combustion science 31 (2005) pp 287-288

[9] Kimura et al. Characteristics of pulverized coal combustion in O

2

/CO

2

mixtures for CO

2

recovery. Energy Conversion and Management 1995;

36:805-8

[10] Okazaki, Ando. NOx reduction mechanism in coal combustion with recycled CO

2

. Energy 1997; 22:207-15

[11] Woycenko. D. M., Ikeda, I. and van de Kamp W. L. Combustion of pulverized coal in a mixture of oxygen and recycled flue gas. 1994.

IFRF Doc. N° F98/y/1

[12] Croiset, E. and Thambimuthu, K.V. (2001). NOx and SO2 Emissions from O

2

/CO

2

Recycle Coal Combustion. Fuel Vol. 80, pp. 2117 – 2121.

[13] Kiga et al. Characteristics of pulverized coal combustion in the system

of oxygen/recycled flue gas combustion. Energy Conversion and

Management 1997; Vol. 38 pp S129 - S134

(2)

Riferimenti

116

[14] Li uet al. Sulfation Behaviour of Limestone under High CO

2

concentration in O

2

/CO

2

coal combustion. Fuel. Vol. 79, pp 945-953.

[15] Allen G. 1997. Coal combustion in advanced burners for minimal emission and carbon dioxide reduction technologies. European Commission Joule II Clean Coal Technology Program 1992-1995. Volume II: Powder Coal Combustion Projects Final Reports. ISBN 92-9-828-006-7.

[16] Yan, Anheden, Lindgren, Stromberg. Conceptual Development of Flue Gas Cleaning for CO

2

Capture from Coal-fired Oxyfuel Combustion Power Plant. Vattenfall AB.

[17] Minish M. Shah. Oxy-Fuel combustion for CO

2

Capture from PC Boilers.

Praxair Inc. 2006

[18] McDonald, Palkes - A Design Study of the Application of CO

2

/O

2

Combustion to an Existing 300 MW Coal Fired Power Plant.

[19] White, Allam and Miller. Purification of Oxyfuel-Derived CO

2

for Sequestration for EOR. 8

th

International Conference on Greenhouse Gas Control Technologies

[20] Tigges, Klauke, Bergins, Busekrus, Niesbach, Ehmann, Vollmer,

Buddenberg. Process engineering and aspects for oxyfuel retrofits of

existing state of the art power station - Bringing “capture ready to

reality”. Hitachi Power Europe. 2008

(3)

117

Bibliografia

ƒ IEA, Key world energy statistic, publication 2007

ƒ Herzog, H. An Introduction to CO2 Separation and Capture Technologies.

Cambridge, MIT Energy Laboratory, 1999

ƒ IEA, CO2 capture ready plants, Technical Report May 2007

ƒ Intergovernmental Panel on Climate Change (IPCC), Special Report on Carbon Dioxide Capture and Storage, Cambridge University Press 2005

ƒ Coal meeting the Climate Challenge, World Coal Institute publication 2007

ƒ CSFL, Discussion paper by task force to identify gaps in CO2 capture and transport, February 2006

ƒ Harry Audus, An update on CCS technologies and costs, IEA September 2006

ƒ Kobayashi, Van Hassel, CO2 reduction: economics and opportunities, PRAXAIR March 2005

ƒ Paul W. Parfomak, Peter Folger. Carbon Dioxide Pipelines for Carbon Sequestration: Emerging Policy Issues. 2007

ƒ Spliethoff, Tan, Coraggio, Santos. Oxy-Coal Combustion with Flue Gas Recycle for the Power Generation Industry. 2005. IFRF Doc. N° 23/y/1

ƒ Chatel-Pelage, F., Marin, O., Perrin, N., Carty, R., Philo, G.R., Farzan, H. and Vecci, S.J. (2003). A Pilot-Scale Demonstration of Oxy-Combustion with Flue Gas Recirculation In A Pulverized Coal Fired Boiler. 28th International Technical Conference on Coal Utilization & Fuel Systems. Clearwater, USA.

ƒ Wall, Buhre, Elliot, Sheng, Gupta. Oxy-fuel combustion technology for coal fired power plants. Progress in energy and combustion science 31 (2005) pp 287-288

ƒ Yan, Anheden, Lindgren, Stromberg. Conceptual Development of Flue Gas Cleaning for CO2 Capture from Coal-fired Oxyfuel Combustion Power Plant.

Vattenfall AB.

ƒ White, Allam and Miller. Purification of Oxyfuel-Derived CO2 for Sequestration for EOR. 8th International Conference on Greenhouse Gas Control Technologies

ƒ Minish M. Shah. Oxy-Fuel combustion for CO2 Capture from PC Boilers. Praxair Inc. 2006

ƒ McDonald, Palkes - A Design Study of the Application of CO2/O2 Combustion to an Existing 300 MW Coal Fired Power Plant.

(4)

Bibliografia

118

ƒ Bruce R. Clements, Ligang Zheng and Richard Pomalis, Oxy-Fuel Firing: The Transition to Pressurized Systems for Cycle Efficiency Optimization. CANMET Energy Technology Centre

ƒ Fan, Seltzer. Conceptual design of oxygen-based PC boiler. Foster Wheeler Power Group Inc. 2006

ƒ R. J. Allam, H. Castle-Smith, A. R. Smith, J. C. Sorensen and V. E. Stein (Air Products). Air Separation Units, Design and Future Development. Paper presented at ECOS 2000 Gasification of Coal, Biomass and Oil EUROTHERM Seminar No 65, 2000.

ƒ H. Farzan, S. Vecci, D. McDonald and K. McCauley. State of the Art of Oxy-Coal Combustion Technology for CO2 Control from Coal-Fired Boilers.The Babcock &

Wilcox Company, technical paper, 2007

ƒ Toshihiko Yamada, Current status of the callide oxyfuel demonstration project, Ishikawajima-Harima Heavy Industries Co. 2006

ƒ D. McDonald and A. Zadiraka, Control of Pulverized Coal Oxy-Combustion Systems, The Babcock & Wilcox Company, June 2007.

ƒ Pulverized oxy-coal combustion. National Energy Tecnology Laboratory (NETL), 2007

ƒ Tigges, Klauke, Bergins, Busekrus, Niesbach, Ehmann, Vollmer, Buddenberg.

Process engineering and aspects for oxyfuel retrofits of existing state of the art power station - Bringing “capture ready to reality”. Hitachi Power Europe.

PowerGen conference papers 2008

ƒ Altmann (Vattenfall), Stamatelopoulos (Alstom). First experience gained from design, erection and commissioning of Vattenfall’s 30 oxyfuel pilot plant.

PowerGen conference papers 2008

Riferimenti

Documenti correlati

Frandsen; Assessment of Ash Characteristic and Properties of Ashes from Fuel Mixture: Impact on Slagging/Fouling and Corrosion behavior; IFRF TOTeM 35 "Co- firing secondary

Il Cross Traffic Filter non funziona con il radar montato in un angolo della porta.. La porta si apre da sola quando piove

Figures 1 and 2 present the conceptual designs of super-critical power plant with post-combustion capture based on gas - liquid absorption (Figure 1) and calcium

This study utilized a pressure swing adsorption (PSA) process to separate high-purity hydrogen and to capture CO 2 from synthesis gas, which is the effluent stream of

In order to reduce carbon dioxide emissions, pressure swing adsorption (PSA) process was studied to capture carbon dioxide from flue gas in a coal-fired power plant..

large surface area, pore volume and large contribution of the mesopores, porous organic polymers were selected as poten- tially adsorptive materials for methane

The UNEP coal combustion partnership area has been established to contribute to significantly reduce global mercury emissions mainly though existing

The base used for analysis in the article is a demonstration installation of CO2 reduction for exhaust gases (DCCP - Demo Carbon Capture Plant) [3].. The installation has to capture