Calcium and Chemical Looping Technology for Power Generation by Paul Fennell, Ben Anthony

By Paul Fennell, Ben Anthony

Calcium and Chemical Looping know-how for energy new release and Carbon Dioxide (CO2) Capture experiences the basic ideas, platforms, oxygen providers, and carbon dioxide vendors suitable to chemical looping and combustion.

Chapters overview the marketplace improvement, economics, and deployment of those structures, additionally offering distinctive details at the number of fabrics and tactics that might support to form the way forward for CO2 capture prepared energy plants.

  • Reviews the basic rules, platforms, oxygen providers, and carbon dioxide companies correct to calcium and chemical looping
  • Provides a lucid clarification of complex innovations and advancements in calcium and chemical looping, excessive strain structures, and substitute CO2 carriers
  • Presents details out there improvement, economics, and deployment of those systems

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4%) that may entail a significant decrease of the energy needs in CaL technology. Apart from potential for heat integration, another major advantage for CaL over competing technologies is the potential mass integration of exhausted CaO purge as raw material in cement production. This option presents an opportunity to partially decarbonize the cement process, which is a highly resource and energy intensive process (Dean, Blamey, Florin, Al-Jeboori, & Fennell, 2011; Dean, Dugwell, & Fennell, 2011).

The calcium looping cycle for CO2 capture from power generation, cement manufacture and hydrogen production. Chemical Engineering Research and Design, 89, 836e855. Dean, C. , & Fennell, P. S. (2011). Investigation into potential synergy between power generation, cement manufacture and CO2 abatement using the calcium looping cycle. Energy & Environmental Science, 4, 2050e2053. , & Paolucci, A. (1999). Performance modelling of a carbon dioxide removal system for power plants. Energy Conversion Management, 40, 1899e1915.

CO2 capture from power plants: part I. A parametric study of the technical performance based on monoethanolamine. International Journal of Greenhouse Gas Control, 1(1), 37e46. , & de Diego, L. F. (2012). Progress in chemical-looping combustion and reforming technologies. Progress in Energy and Combustion Science, 38, 215e282. Al-Jeboori, M. , & Fennell, P. S. (2013). Improvement of limestonebased CO2 sorbents for Ca looping by HBr and other mineral acids. Industrial & Engineering Chemistry Research, 52, 1426e1433.

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