The Carbonation of Wollastonite: A Model Reaction to Test Natural and Biomimetic Catalysts for Enhanced CO2 Sequestration

被引:50
作者
Di Lorenzo, Fulvio [1 ]
Ruiz-Agudo, Cristina [2 ]
Ibanez-Velasco, Aurelia [1 ]
Gil-San Millan, Rodrigo [3 ]
Navarro, Jorge A. R. [3 ]
Ruiz-Agudo, Encarnacion [1 ]
Rodriguez-Navarro, Carlos [1 ]
机构
[1] Univ Granada, Dept Mineral & Petrol, E-18071 Granada, Spain
[2] Univ Konstanz, Dept Phys Chem, D-78457 Constance, Germany
[3] Univ Granada, Dept Inorgan Chem, E-18071 Granada, Spain
关键词
carbonation; wollastonite; catalysts; carbonic anhydrase; MOFs; carbon capture and storage; METAL-ORGANIC FRAMEWORKS; CARBONIC-ANHYDRASE; MINERAL CARBONATION; INCONGRUENT DISSOLUTION; LAYER FORMATION; REACTION-RATES; DIOXIDE; KINETICS; SURFACE; GROWTH;
D O I
10.3390/min8050209
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
One of the most promising strategies for the safe and permanent disposal of anthropogenic CO2 is its conversion into carbonate minerals via the carbonation of calcium and magnesium silicates. However, the mechanism of such a reaction is not well constrained, and its slow kinetics is a handicap for the implementation of silicate mineral carbonation as an effective method for CO2 capture and storage (CCS). Here, we studied the different steps of wollastonite (CaSiO3) carbonation (silicate dissolution carbonate precipitation) as a model CCS system for the screening of natural and biomimetic catalysts for this reaction. Tested catalysts included carbonic anhydrase (CA), a natural enzyme that catalyzes the reversible hydration of CO2(aq), and biomimetic metal-organic frameworks (MOFs). Our results show that dissolution is the rate-limiting step for wollastonite carbonation. The overall reaction progresses anisotropically along different [hkl] directions via a pseudomorphic interface-coupled dissolution-precipitation mechanism, leading to partial passivation via secondary surface precipitation of amorphous silica and calcite, which in both cases is anisotropic (i.e., (hkl)-specific). CA accelerates the final carbonate precipitation step but hinders the overall carbonation of wollastonite. Remarkably, one of the tested Zr-based MOFs accelerates the dissolution of the silicate. The use of MOFs for enhanced silicate dissolution alone or in combination with other natural or biomimetic catalysts for accelerated carbonation could represent a potentially effective strategy for enhanced mineral CCS.
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页数:26
相关论文
共 92 条
[1]   Forsteritic olivine: Effect of crystallographic direction on dissolution kinetics [J].
Awad, A ;
van Groos, AFK ;
Guggenheim, S .
GEOCHIMICA ET COSMOCHIMICA ACTA, 2000, 64 (10) :1765-1772
[2]   A review on carbon dioxide mineral carbonation through pH-swing process [J].
Azdarpour, Amin ;
Asadullah, Mohammad ;
Mohammadian, Erfan ;
Hamidi, Hossein ;
Junin, Radzuan ;
Karaei, Mohammad Afkhami .
CHEMICAL ENGINEERING JOURNAL, 2015, 279 :615-630
[3]   SURVEY STUDY OF KINETICS OF WOLLASTONITE DISSOLUTION IN H2O-CO2 AND BUFFERED SYSTEMS AT 25 DEGREES [J].
BAILEY, A ;
REESMAN, AL .
AMERICAN JOURNAL OF SCIENCE, 1971, 271 (05) :464-&
[4]   Carbon sequestration via aqueous olivine mineral carbonation:: Role of passivating layer formation [J].
Bearat, Hamdallah ;
McKelvy, Michael J. ;
Chizmeshya, Andrew V. G. ;
Gormley, Deirdre ;
Nunez, Ryan ;
Carpenter, R. W. ;
Squires, Kyle ;
Wolf, George H. .
ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2006, 40 (15) :4802-4808
[5]   THE CARBONATE-SILICATE GEOCHEMICAL CYCLE AND ITS EFFECT ON ATMOSPHERIC CARBON-DIOXIDE OVER THE PAST 100 MILLION YEARS [J].
BERNER, RA ;
LASAGA, AC ;
GARRELS, RM .
AMERICAN JOURNAL OF SCIENCE, 1983, 283 (07) :641-683
[6]   The long-term carbon cycle, fossil fuels and atmospheric composition [J].
Berner, RA .
NATURE, 2003, 426 (6964) :323-326
[7]   Nickel nanoparticles catalyse reversible hydration of carbon dioxide for mineralization carbon capture and storage [J].
Bhaduri, Gaurav A. ;
Siller, Lidija .
CATALYSIS SCIENCE & TECHNOLOGY, 2013, 3 (05) :1234-1239
[8]   Development of integrated system for biomimetic CO2 sequestration using the enzyme carbonic anhydrase [J].
Bond, GM ;
Stringer, J ;
Brandvold, DK ;
Simsek, FA ;
Medina, MG ;
Egeland, G .
ENERGY & FUELS, 2001, 15 (02) :309-316
[9]   THE EFFECT OF SILICATE WEATHERING ON GLOBAL TEMPERATURE AND ATMOSPHERIC CO2 [J].
BRADY, PV .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1991, 96 (B11) :18101-18106
[10]  
Brantley SL, 2008, Kinetics of Water-Rock Interaction, DOI DOI 10.1007/978-0-387-73563-4