Chemical looping combustion thesis

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Added: 05.05.2021
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Chemical looping combustion

Rotary bed reactor for chemical-looping combustion with carbon capture

Chemical looping combustion CLC is a technological process typically employing a dual fluidized bed system. CLC operated with an interconnected moving bed with a fluidized bed system, has also been employed as a technology process. In CLC, a metal oxide is employed as a bed material providing the oxygen for combustion in the fuel reactor. The reduced metal is then transferred to the second bed air reactor and re-oxidized before being reintroduced back to the fuel reactor completing the loop. Fig 1 shows a simplified diagram of the CLC process. Fig 2 shows an example of a dual fluidized bed circulating reactor system and a moving bed-fluidized bed circulating reactor system. Isolation of the fuel from air simplifies the number of chemical reactions in combustion.

Lahore Cantt. As a promising approach for carbon dioxide capture, chemical looping combustion has been extensively investigated for more than two decades. However, the chemical looping strategy can be and has been extended well beyond carbon capture. In fact, significant impacts on emission reduction, energy conservation, and value-creation can be anticipated from chemical looping beyond combustion CLBC.
Chemical looping, a low carbon technology for the fossil fuel industry, is increasingly been viewed as a competitive technology in carbon capture and storage, with the successful completion of pilot plant trials in the USA. As the world increasingly transitions to a low-carbon economy, it is becoming important for fossil fuel-based industries to develop ways to reduce their carbon dioxide CO 2 emissions. To do this many fossil fuel-based industries, and in particular coal-based power stations, are promoting carbon capture and storage CCS. The advantage of CCS is that it enables existing infrastructure and industries to meet carbon emission reductions while continuing to operate into the medium-term future.

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