By Paul Fennell, Ben Anthony
Calcium and Chemical Looping expertise for strength new release and Carbon Dioxide (CO2) Capture studies the basic rules, platforms, oxygen providers, and carbon dioxide companies appropriate to chemical looping and combustion.
Chapters evaluate the marketplace improvement, economics, and deployment of those structures, additionally supplying designated info at the number of fabrics and methods that would support to form the way forward for CO2 capture prepared strength plants.
- Reviews the elemental rules, structures, oxygen providers, and carbon dioxide companies correct to calcium and chemical looping
- Provides a lucid clarification of complex techniques and advancements in calcium and chemical looping, excessive strain structures, and substitute CO2 carriers
- Presents info out there improvement, economics, and deployment of those systems
Read Online or Download Calcium and chemical looping technology for power generation and carbon dioxide (CO2) capture : solid oxygen- and CO2-carriers PDF
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Extra info for Calcium and chemical looping technology for power generation and carbon dioxide (CO2) capture : solid oxygen- and CO2-carriers
Net/alstoms-ccs-technologies/. Ozcan, D. , & Brandani, S. (2013). Process integration of a Ca-looping carbon capture process in a cement plant. International Journal of Greenhouse Gas Control, 19, 530e540. , & Abanades, J. C. (2008). Heat requirements in a calciner of CaCO3 integrated in a CO2 capture system using CaO. Chemical Engineering Journal, 138(1e3), 148e154. Romano, M. , & Borgarello, E. (2013). The calcium looping process for low CO2 emission cement and power. Energy Procedia, 37, 7091e7099.
Different strategies may be applied to reduce the energy penalty of the capture plant—some of them will reduce the speciﬁc energy intensity of the process, and others will increase the production of net power by means of heat integration in the steam cycle. 2 Main energy requirements in a calcium looping (CaL) system as a function of operating parameters. Adapted from Romeo et al. (2009). , 2008). Through a sensitivity analysis, the inﬂuence of parameters such as solid purge ﬂow and solid circulation ratio on energy demand and cost of captured tonne of CO2 may be assessed, in order to obtain the operational window that yields an optimal scenario.
A. ), IPCC special report on carbon dioxide capture and storage (p. 208). Geneva, Switzerland: IPCC. 14 Calcium and Chemical Looping Technology for Power Generation and CO2 Capture IPCC. (2014). Climate change 2014: Impacts, adaptation and vulnerability. Intergovernmental panel on climate change, working group II report. gov/AR5/. , & Nielsen, R. (1997). ). Houston, TX: Gulf Publishing Company. Mac Dowell, N. (7 January, 2014). Optimisation of post-combustion CCS for ﬂexible operation. London: Advanced Power Generation Technology Forum.