Abstract
Nowadays, global warming is becoming more and more serious, while CO2capture technologies have emerged endlessly, with methods of solid-phase CO2capture for physical adsorption and liquid-phase CO2capture for chemical absorption. Biochar has been widely used to achieve CO2sequestration and emission reduction as a result of its wide range of precursor sources, strong adsorption, and rich surface functional groups. It reviews the existing post-combustion CO2capture solutions, focusing on the analysis of CO2capture technologies based on liquid-phase ammonia/monoethanolamine and solid-phase carbon-based materials. The former (liquid phase) is with limitation of capture efficiency as a result of strong volatility and thermal degradation, while the latter (solid phase) is accompanied by limited CO2/N2selectivity. The realization of synergy between the two would "learn from each other's strengths" to improve the CO2adsorption ability. The review puts forward the concept of "biochar-functionalized cross-linking synergistic ammonia CO2capture technology", which not only broadens the idea of multi-level utilization of biochar, significantly improving the liquid-phase (ammonia) CO2capture efficiency, but also has practical significance for the utilization of biomass waste and reduction of CO2emissions.
| Original language | English |
|---|---|
| Pages (from-to) | 2945-2970 |
| Number of pages | 26 |
| Journal | Energy and Fuels |
| Volume | 36 |
| Issue number | 6 |
| DOIs | |
| State | Published - 17 Mar 2022 |
| Externally published | Yes |
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