Scalable synthesis of KNaTiO3-based high-temperature CO2 capture material from high titanium slag: CO2 uptake, kinetics, regenerability and mechanism study. Issue 49 (July 2021)
- Record Type:
- Journal Article
- Title:
- Scalable synthesis of KNaTiO3-based high-temperature CO2 capture material from high titanium slag: CO2 uptake, kinetics, regenerability and mechanism study. Issue 49 (July 2021)
- Main Title:
- Scalable synthesis of KNaTiO3-based high-temperature CO2 capture material from high titanium slag: CO2 uptake, kinetics, regenerability and mechanism study
- Authors:
- Fan, Wenqi
Gao, Wanlin
Huang, Liang
Lu, Shijian
Song, Chunfeng
Reina, Tomas Ramirez
Louis, Benoit
Wang, Qiang - Abstract:
- Graphical abstract: Highlights: Direct synthesis of KNaTiO3 -based CO2 sorbent from high titanium slag is proposed. KNaTiO3 -HTS-3 possesses a high carbonation conversion even after 100 cycles. The CO2 uptake of HTS-derived KNaTiO3 is much less dependent on CO2 concentration. KNaTiO3 -HTS-3 possesses fast sorption rate, low activation energy and low cost. Abstract: KNaTiO3 is a novel type of solid CO2 sorbents with strong sorption capacity and excellent regenerability at high temperatures. However, the expensive titanium precursor hampers its implementation for industrial applications. Herein, advanced KNaTiO3 based CO2 sorbents were first fabricated directly from high titanate slag (HTS). Elemental mapping analysis reveals high dispersion of KNaTiO3 and the crystal structure of KNaTiO3 in KNaTiO3 -HTS-3 almost unchanged even after 15 cycles. The carbonation conversion of KNaTiO3 -HTS-3 preserved a highly commendable value even after 100 sorption/desorption cycles, outperforming pure KNaTiO3 . In addition, this sorbent exhibited faster sorption rate at 700 °C. Dynamic simulation demonstrated that the sorption constants k1 and k2 are higher and the activation energy is lower than those of conventional high-temperature sorbents. The CO2 sorption capacity of KNaTiO3 -HTS-3 only met a slight decrease from 15.7 to 14.6 wt% with the decreasing CO2 concentration from 100 to 10 vol%. Compared with traditional high temperature CO2 sorbents, KNaTiO3 -HTS-3 shows a slower breakthroughGraphical abstract: Highlights: Direct synthesis of KNaTiO3 -based CO2 sorbent from high titanium slag is proposed. KNaTiO3 -HTS-3 possesses a high carbonation conversion even after 100 cycles. The CO2 uptake of HTS-derived KNaTiO3 is much less dependent on CO2 concentration. KNaTiO3 -HTS-3 possesses fast sorption rate, low activation energy and low cost. Abstract: KNaTiO3 is a novel type of solid CO2 sorbents with strong sorption capacity and excellent regenerability at high temperatures. However, the expensive titanium precursor hampers its implementation for industrial applications. Herein, advanced KNaTiO3 based CO2 sorbents were first fabricated directly from high titanate slag (HTS). Elemental mapping analysis reveals high dispersion of KNaTiO3 and the crystal structure of KNaTiO3 in KNaTiO3 -HTS-3 almost unchanged even after 15 cycles. The carbonation conversion of KNaTiO3 -HTS-3 preserved a highly commendable value even after 100 sorption/desorption cycles, outperforming pure KNaTiO3 . In addition, this sorbent exhibited faster sorption rate at 700 °C. Dynamic simulation demonstrated that the sorption constants k1 and k2 are higher and the activation energy is lower than those of conventional high-temperature sorbents. The CO2 sorption capacity of KNaTiO3 -HTS-3 only met a slight decrease from 15.7 to 14.6 wt% with the decreasing CO2 concentration from 100 to 10 vol%. Compared with traditional high temperature CO2 sorbents, KNaTiO3 -HTS-3 shows a slower breakthrough time. The reaction mechanism process for the promising sorbent is proposed. The HTS-derived KNaTiO3 -based high-temperature CO2 sorbent has outstanding CO2 uptake, excellent regenerability, fast reaction kinetics as well as low cost, offering bright prospects in practical applications. … (more)
- Is Part Of:
- Journal of CO₂ utilization. Issue 49(2021)
- Journal:
- Journal of CO₂ utilization
- Issue:
- Issue 49(2021)
- Issue Display:
- Volume 49, Issue 49 (2021)
- Year:
- 2021
- Volume:
- 49
- Issue:
- 49
- Issue Sort Value:
- 2021-0049-0049-0000
- Page Start:
- Page End:
- Publication Date:
- 2021-07
- Subjects:
- KNaTiO3 -- High titanium slag -- Pre-combustion CO2 capture -- Low CO2 partial pressure
Carbon dioxide -- Periodicals
Carbon dioxide -- Environmental aspects -- Periodicals
Carbon dioxide mitigation -- Periodicals
Carbon dioxide
Carbon dioxide -- Environmental aspects
Carbon dioxide mitigation
Periodicals
628.53205 - Journal URLs:
- http://www.sciencedirect.com/science/journal/22129820 ↗
http://www.sciencedirect.com/ ↗ - DOI:
- 10.1016/j.jcou.2021.101578 ↗
- Languages:
- English
- ISSNs:
- 2212-9820
- Deposit Type:
- Legaldeposit
- View Content:
- Available online (eLD content is only available in our Reading Rooms) ↗
- Physical Locations:
- British Library DSC - BLDSS-3PM
British Library STI - ELD Digital store - Ingest File:
- 17266.xml