A Review of CO2 Capture by Absorption and Adsorption

Обзор улавливания CO2 методами абсорбции и адсорбции
Cheng‐Hsiu Yu, Chih‐Hung Huang, Chung‐Sung Tan
2012-01-01

CO2 adsorptionCO2 capturechemical absorptionmesoporous solid adsorbentspost-combustion capture
Global warming resulting from the emission of greenhouse gases, especially CO2, has become a widespread concern in the recent years. Though various CO2 capture technologies have been proposed, chemical absorption and adsorption are currently believed to be the most suitable ones for post-combustion power plants. The operation of the chemical absorption process is reviewed in this work, together with the use of absorbents, such as the ionic liquid, alkanolamines and their blended aqueous solutions. The major concerns for this technology, including CO2 capture efficiency, absorption rate, energy required in regeneration, and volume of absorber, are addressed. For adsorption, in addition to physical adsorbents, various mesoporous solid adsorbents impregnated with polyamines and grafted with aminosilanes are reviewed in this work. The major concerns for selection of adsorbent, including cost, adsorption rate, CO2 adsorption capacity, and thermal stability, are compared and discussed. More effective and less energy-consuming regeneration techniques for CO2-loaded adsorbents are also proposed. Future works for both absorption and adsorption are suggested.
1
Adsorbent selection depends on cost, adsorption rate, CO2 capacity, and thermal stability, which are comparatively discussed.
2
Chemical absorption and adsorption are identified as the most suitable CO2-capture technologies for post-combustion power plants.
3
For adsorption, the review covers physical adsorbents and mesoporous solids incorporating polyamines or grafted aminosilanes.
4
More effective and less energy-intensive regeneration methods for CO2-loaded adsorbents are proposed, alongside future research directions for both technologies.
5
The review evaluates absorbents including ionic liquids, alkanolamines, and blended aqueous solutions, focusing on capture efficiency, absorption rate, regeneration energy, and absorber volume.

CO2 capture processes for post-combustion power plants using chemical absorption and adsorption

Capture performance, materials, operational concerns, and regeneration of absorption and adsorption systems, including capture efficiency, rates, capacity, energy consumption, cost, absorber volume, and thermal stability

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2012-01-01
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Cheng‐Hsiu Yu
Chih‐Hung Huang
Chung‐Sung Tan
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