Direct CO2 Capture by Alkali-Dissolved Cellulose and Sequestration in Building Materials and Artificial Reef Structures

被引:23
|
作者
Reyes, Guillermo [1 ]
Vega-Coloma, Mabel [2 ]
Antonova, Anna [3 ]
Ajdary, Rubina [1 ]
Jonveaux, Solene [4 ]
Flanigan, Colleen [5 ]
Lautenbacher, Nathalie [6 ]
Rojas, Orlando J. [1 ,7 ,8 ]
机构
[1] Aalto Univ, Sch Chem Engn, Dept Bioprod & Biosyst, Biobased Colloids & Mat, FI-00076 Espoo, Finland
[2] Univ Bio Bio, Dept Ingn Maderas, Av Collao 1202,Casilla 5-C, Concepcion 4081112, Chile
[3] Aalto Univ, Dept Civil Engn, Rakentajanaukio 4 A, Otaniemi 02150, Espoo, Finland
[4] Univ Sherbrooke, 2500 Blvd Univ, Sherbrooke, PQ J1K 2R1, Canada
[5] Zoe Living Sea Sculpture Cozumel, Av Rafael E Melgar, San Miguel De Cozumel 77688, Mexico
[6] Aalto Univ, Dept Design, Otaniementie 14, Otaniemi 02150, Espoo, Finland
[7] Univ British Columbia, Bioprod Inst, Dept Chem & Biol Engn, Dept Chem, 2360 East Mall, Vancouver, BC V6T 1Z3, Canada
[8] Univ British Columbia, Dept Wood Sci, 2360 East Mall, Vancouver, BC V6T 1Z3, Canada
基金
加拿大创新基金会; 芬兰科学院;
关键词
additive manufacture; alkali cellulose; building materials; CO2; sequestration; mineralization; CALCIUM-CARBONATE; DISSOLUTION; VATERITE; SPECTROSCOPY; COMPOSITES; MECHANISM; ARAGONITE; SOLVENTS; DIOXIDE; CEMENTS;
D O I
10.1002/adma.202209327
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Current carbon capture and utilization (CCU) technologies require high energy input and costly catalysts. Here, an effective pathway is offered that addresses climate action by atmospheric CO2 sequestration. Industrially relevant highly reactive alkali cellulose solutions are used as CO2 absorption media. The latter lead to mineralized cellulose materials (MCM) at a tailorable cellulose-to-mineral ratio, forming organic-inorganic viscous systems (viscosity from 10(2) to 10(7) mPa s and storage modulus from 10 to 10(5) Pa). CO2 absorption and conversion into calcium carbonate and associated minerals translate to maximum absorption of 6.5 gCO(2) g(cellulose)(-1), tracking inversely with cellulose loading. Cellulose lean gels are easily converted into dry powders, shown as a functional component of ceramic glazes and cementitious composites. Meanwhile, cellulose-rich gels are moldable and extrudable, yielding stone-like structures tested as artificial substrates for coral reef restoration. Life Cycle Assessment (LCA) suggests new CCU opportunities for building materials, as demonstrated in underwater deployment for coral reef ecosystem restoration.
引用
收藏
页数:12
相关论文
共 22 条
  • [1] Direct Air Capture and Sequestration of CO2 by Accelerated Indirect Aqueous Mineral Carbonation under Ambient Conditions
    Ragipani, Raghavendra
    Sreenivasan, Keerthana
    Anex, Robert P.
    Zhai, Hang
    Wang, Bu
    ACS SUSTAINABLE CHEMISTRY & ENGINEERING, 2022, 10 (24) : 7852 - 7861
  • [2] Mechanism of direct CO2 sequestration by alkali metal K-activated steel slag
    Sun, Rong
    Wang, Xu-chao
    Xu, Wei-cheng
    Wei, Ru-fei
    Lei, Jie
    Long, Hong-ming
    JOURNAL OF IRON AND STEEL RESEARCH INTERNATIONAL, 2024,
  • [3] Amine-Functionalized Cellulose as Promising Materials for Direct CO2 Capture: A Review
    Akaya, Hicham
    Lamnini, Soukaina
    Sehaqui, Houssine
    Jacquemin, Johan
    ACS APPLIED MATERIALS & INTERFACES, 2025, 17 (11) : 16380 - 16395
  • [4] Advancements in Cellulose-Based Materials for CO2 Capture and Conversion
    Patra, Niranjan
    Ramesh, Prathipati
    Talu, Stefan
    POLYMERS, 2025, 17 (07)
  • [5] Reducing carbonation degradation and enabling CO2 sequestration in alkali-activated slag using cellulose nanofibers
    Nair, Nithya
    Ashraf, Warda
    CEMENT & CONCRETE COMPOSITES, 2024, 153
  • [6] N-methyldiethanolamine (MDEA) as an effective CO2 absorbent for direct air capture (DAC) in cement-based materials
    Kopitha, Kirushnapillai
    Elakneswaran, Yogarajah
    Kitagaki, Ryoma
    Saito, Ryosuke
    Tsujino, Masato
    Nishida, Akira
    Senboku, Hisanori
    Hiroyoshi, Naoki
    CHEMICAL ENGINEERING JOURNAL, 2023, 475
  • [7] Materials for Direct Air Capture and Integrated CO2 Conversion: Advancement, Challenges, and Prospects
    Zanatta, Marcileia
    ACS MATERIALS AU, 2023, 3 (06): : 576 - 583
  • [8] FGD-Gypsum Waste to Capture CO2 and to Recycle in Building Materials: Optimal Reaction Yield and Preliminary Mechanical Properties
    Moreno, Virginia
    Gonzalez-Arias, Judith
    Ruiz-Martinez, Jaime D.
    Balart-Gimeno, Rafael
    Baena-Moreno, Francisco Manuel
    Leiva, Carlos
    MATERIALS, 2024, 17 (15)
  • [9] Biomass/Biochar carbon materials for CO2 capture and sequestration by cyclic adsorption processes: A review and prospects for future directions
    Karimi, Mohsen
    Shirzad, Mohammad
    Silva, Jose A. C.
    Rodrigues, Alirio E.
    JOURNAL OF CO2 UTILIZATION, 2022, 57
  • [10] Impacts of hydration degree of steel slag on its subsequent CO2 capture behaviors and mechanical performances of prepared building materials
    Wang, Xue
    Wei, Xinlei
    Ni, Wen
    CONSTRUCTION AND BUILDING MATERIALS, 2024, 416