Sorption direct air capture with CO2 utilization

Сорбционный прямой улавливание воздуха с использованием CO2
Mohamed Pourkashanian, Maria Fernanda Rojas Michaga, Stavros Michailos, L. Jiang, Weiting Liu, R.Q. Wang, Abigail González-Díaz, X.J. Zhang, Carolina Font-Palma
2023-01-03

CO2 conversionCO2 utilizationbiological utilizationchemical sorbentsdirect air capturelife cycle assessmentphysical sorbentspressure swing adsorptionsorptionsynthesis of fuels and chemicalstechno-economic analysistemperature swing adsorption
Direct air capture (DAC) is gathering momentum since it has vast potential and high flexibility to collect CO2 from discrete sources as “synthetic tree” when compared with current CO2 capture technologies, e.g., amine based post-combustion capture. It is considered as one of the emerging carbon capture technologies in recent decades and remains in a prototype investigation stage with many technical challenges to be overcome. The objective of this paper is to comprehensively discuss the state-of-the-art of DAC and CO2 utilization, note unresolved technology bottlenecks, and give investigation perspectives for commercial large-scale applications. Firstly, characteristics of physical and chemical sorbents are evaluated. Then, the representative capture processes, e.g., pressure swing adsorption, temperature swing adsorption and other ongoing absorption chemical loops, are described and compared. Methods of CO2 conversion including synthesis of fuels and chemicals as well as biological utilization are reviewed. Finally, techno-economic analysis and life cycle assessment for DAC application are summarized. Based on research achievements, future challenges of DAC and CO2 conversion are presented, which include providing synthesis guidelines for obtaining sorbents with the desired characteristics, uncovering the mechanisms for different working processes and establishing evaluation criteria in terms of technical and economic aspects.
1
DAC (direct air capture) offers high potential and flexibility to collect CO2 from dispersed sources compared with amine-based post-combustion capture, envisioned as a “synthetic tree.”
2
DAC remains at prototype stage with many technical challenges and unresolved technology bottlenecks that must be overcome for large-scale commercial application.
3
Methods for CO2 utilization reviewed include synthesis of fuels and chemicals and biological utilization, linking capture to conversion pathways.
4
Techno-economic analysis and life cycle assessment summaries identify needs for sorbent design guidelines, mechanistic understanding of working processes, and technical/economic evaluation criteria for future development.
5
The paper evaluates characteristics of physical and chemical sorbents and compares representative capture processes including pressure swing adsorption, temperature swing adsorption, and absorption chemical loops.

Sorption-based direct air capture (DAC) systems for CO2 capture and utilization

Performance, materials, processes, conversion pathways, techno-economic and life-cycle characteristics of sorption DAC and associated CO2 utilization (including sorbent properties, PSA/TSA and absorption cycles, CO2-to-fuels/chemicals and biological conversion, and TEA/LCA)

Publication Details
Publication Date
2023-01-03
Journal
Publisher
ISSN
Cited by
317
Access Type
Author Information
Authors
Mohamed Pourkashanian
Maria Fernanda Rojas Michaga
Stavros Michailos
L. Jiang
Weiting Liu
R.Q. Wang
Abigail González-Díaz
X.J. Zhang
Carolina Font-Palma
Explore further
Open the scid.ai AI chat with a ready-made request: it will find papers on a similar topic and help build a literature review.
Find similar papers in the chat
Make a presentation
100%