Rates and Mechanisms of Mineral Carbonation in Peridotite: Natural Processes and Recipes for Enhanced, in situ CO 2 Capture and Storage
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May 2011 |
In situ carbonation of peridotite for CO2 storage
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November 2008 |
Permanent storage of carbon dioxide in geological reservoirs by mineral carbonation
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November 2009 |
Accelerated Carbonation of Brucite in Mine Tailings for Carbon Sequestration
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July 2012 |
Rapid carbon mineralization for permanent disposal of anthropogenic carbon dioxide emissions
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June 2016 |
Basalt- CO2–H2O interactions and variability in carbonate mineralization rates
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February 2009 |
Mineralization of basalts in the CO2–H2O–H2S system
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August 2013 |
Ex Situ Aqueous Mineral Carbonation
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April 2007 |
Chemical and morphological changes during olivine carbonation for CO2 storage in the presence of NaCl and NaHCO3
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January 2014 |
Optimized Carbonation of Magnesium Silicate Mineral for CO 2 Storage
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February 2015 |
Quantitative Review of Olivine Carbonation Kinetics: Reactivity Trends, Mechanistic Insights, and Research Frontiers
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July 2019 |
Quantifying kinetics of mineralization of carbon dioxide by olivine under moderate conditions
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March 2019 |
A compilation of rate parameters of water-mineral interaction kinetics for application to geochemical modeling
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January 2004 |
Experimental determination of the solubility product of magnesite at 50 to 200°C
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June 2011 |
The change in solubility of calcium carbonate with temperature and carbon dioxide content
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November 1959 |
Water-gas shift reaction: finding the mechanistic boundary
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January 1995 |
Investigating the Application of Enzyme Carbonic Anhydrase for CO 2 Sequestration Purposes
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January 2007 |
Periplasmic expression of carbonic anhydrase in Escherichia coli : A new biocatalyst for CO 2 hydration
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March 2013 |
Tuning the dissolution kinetics of wollastonite via chelating agents for CO2 sequestration with integrated synthesis of precipitated calcium carbonates
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January 2013 |
Carbon Sequestration via Aqueous Olivine Mineral Carbonation: Role of Passivating Layer Formation
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August 2006 |
Influence of amorphous silica layer formation on the dissolution rate of olivine at 90°C and elevated pCO2
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May 2011 |
The Carbonation of Wollastonite: A Model Reaction to Test Natural and Biomimetic Catalysts for Enhanced CO2 Sequestration
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May 2018 |
Forsterite dissolution and magnesite precipitation at conditions relevant for deep saline aquifer storage and sequestration of carbon dioxide
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April 2005 |
Directed precipitation of hydrated and anhydrous magnesium carbonates for carbon storage
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January 2014 |
A Review of CO2 Capture by Absorption and Adsorption
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January 2012 |
Amine Scrubbing for CO2 Capture
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September 2009 |
New Amines for CO 2 Capture. I. Mechanisms of Amine Degradation in the Presence of CO 2
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October 2009 |
CO 2 -Induced Degradation of Amine-Containing Adsorbents: Reaction Products and Pathways
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August 2012 |
Amine degradation in CO2 capture. I. A review
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September 2012 |
New Amines for CO 2 Capture. IV. Degradation, Corrosion, and Quantitative Structure Property Relationship Model
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April 2012 |
Measurement of Nitrosamine and Nitramine Formation from NO x Reactions with Amines during Amine-Based Carbon Dioxide Capture for Postcombustion Carbon Sequestration
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August 2012 |
Controlling Nitrosamines, Nitramines, and Amines in Amine-Based CO 2 Capture Systems with Continuous Ultraviolet and Ozone Treatment of Washwater
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July 2015 |
Influence of Dissolved Metals on N -Nitrosamine Formation under Amine-based CO 2 Capture Conditions
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September 2015 |
Thermal degradation of amines for CO2 capture
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May 2012 |
Corrosion and polarization behavior of carbon steel in MEA-based CO2 capture process
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October 2008 |
Corrosion of Carbon Steel in MDEA-Based CO 2 Capture Plants Under Regenerator Conditions: Effects of O 2 and Heat-Stable Salts
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January 2015 |
Effects of flue gas composition on carbon steel (1020) corrosion in MEA-based CO2 capture process
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November 2013 |
Corrosion Behavior of Carbon Steel in the CO 2 Absorption Process Using Aqueous Amine Solutions
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October 1999 |
Corrosion in MEA units for CO2 capture: Pilot plant studies
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February 2009 |
Removal of carbon dioxide by absorption in mixed amines: modelling of absorption in aqueous MDEA/MEA and AMP/MEA solutions
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November 2001 |
Pilot Plant Studies of the CO 2 Capture Performance of Aqueous MEA and Mixed MEA/MDEA Solvents at the University of Regina CO 2 Capture Technology Development Plant and the Boundary Dam CO 2 Capture Demonstration Plant
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April 2006 |
Integrated absorption-mineralisation for low-energy CO2 capture and sequestration
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September 2018 |
Energy-efficient chemical regeneration of AMP using calcium hydroxide for operating carbon dioxide capture process
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March 2018 |
Single Process for CO 2 Capture and Mineralization in Various Alkanolamines Using Calcium Chloride
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December 2016 |
Coupling a sterically hindered amine-based absorption and coal fly ash triggered amine regeneration: A high energy-saving process for CO2 absorption and sequestration
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August 2019 |
Kinetics of Carbon Dioxide Removal by Aqueous Alkaline Amino Acid Salts
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November 2010 |
Kinetics of the reaction of CO2 with aqueous potassium salt of taurine and glycine
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January 2003 |
Solubility of carbon dioxide in aqueous solutions of amino acid salts
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May 2009 |
Characterization of potassium glycinate for carbon dioxide absorption purposes
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December 2007 |
Amino Acids as Carbon Capture Solvents: Chemical Kinetics and Mechanism of the Glycine + CO 2 Reaction
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June 2013 |
A kinetic study of CO2 capture with potassium carbonate solutions promoted with various amino acids: Glycine, sarcosine and proline
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January 2014 |
Conceptual Design of a Novel CO 2 Capture Process Based on Precipitating Amino Acid Solvents
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August 2013 |
New Process Concepts for CO2 Capture based on Precipitating Amino Acids
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January 2013 |
Precipitation regime for selected amino acid salts for CO2 capture from flue gases
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February 2009 |
Analysis of Process Configurations for CO 2 Capture by Precipitating Amino Acid Solvents
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January 2014 |
Dissolution kinetics of fosteritic olivine at 90–150°C including effects of the presence of CO2
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September 2006 |
Olivine dissolution rates: A critical review
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November 2018 |
Impact of alkalinity sources on the life-cycle energy efficiency of mineral carbonation technologies
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January 2012 |
mineral sequestration: physically activated dissolution of serpentine and pH swing process
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November 2004 |
Post-processing pathways in carbon capture and storage by mineral carbonation (CCSM) towards the introduction of carbon neutral materials
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January 2012 |
Effect of process parameters on the CaCO3 production in the single process for carbon capture and mineralization
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February 2017 |
Simultaneous shift reaction and carbon dioxide separation for the direct production of hydrogen
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December 1994 |
Integrated CO 2 Capture, Conversion, and Storage To Produce Calcium Carbonate Using an Amine Looping Strategy
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September 2018 |
Novel aqueous amine looping approach for the direct capture, conversion and storage of CO 2 to produce magnesium carbonate
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January 2020 |
Direct Nanoscale Observations of CO 2 Sequestration during Brucite [Mg(OH) 2 ] Dissolution
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April 2012 |
Magnesite growth rates as a function of temperature and saturation state
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October 2009 |
The Link Between Mineral Dissolution/Precipitation Kinetics and Solution Chemistry
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January 2009 |
Sustainable Hydrogen Production
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August 2004 |
Sustainable energy: A review of gasification technologies
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September 2012 |
The progress in water gas shift and steam reforming hydrogen production technologies – A review
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October 2014 |
Role of water-gas-shift reaction in Fischer–Tropsch synthesis on iron catalysts: A review
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October 2016 |
Performance of water gas shift reaction catalysts: A review
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October 2018 |
Aqueous catalyst systems for the water-gas shift reaction. 1. Comparative catalyst studies
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September 1983 |
Aqueous catalyst systems for the water-gas shift reaction. 2. Mechanism of basic catalysis
- Elliott, Douglas C.; Hallen, Richard T.; Sealock, L. John
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Industrial & Engineering Chemistry Product Research and Development, Vol. 22, Issue 3
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September 1983 |
Hydrogen production from water and CO via alkali metal formate salts
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October 1996 |
Sorption-enhanced water gas shift reaction by sodium-promoted calcium oxides
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June 2010 |
Selection of CO2 chemisorbent for fuel-cell grade H2 production by sorption-enhanced water gas shift reaction
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April 2009 |
Robust, high reactivity and enhanced capacity carbon dioxide removal agents for hydrogen production applications
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January 2008 |
Adsorption-enhanced steam–methane reforming
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September 2000 |
Hydrogen rich fuel gas production by gasification of wet biomass using a CO2 sorbent
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May 2009 |
Sorption-Enhanced Hydrogen Production: A Review
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September 2008 |
Reversible Chemisorbents for Carbon Dioxide and Their Potential Applications
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November 2008 |
Hydrogen Production Using Sorption-Enhanced Reaction
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November 2001 |
Carbon Capture by Sorption-Enhanced Water−Gas Shift Reaction Process using Hydrotalcite-Based Material
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May 2009 |
Sorption-enhanced reaction process with reactive regeneration
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September 2002 |
Hydrogen Production in Steam Gasification of Biomass with CaO as a CO 2 Absorbent
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May 2008 |
Effect of H2O on Mg(OH)2 carbonation pathways for combined CO2 capture and storage
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August 2013 |
Experimental Design and Data Analysis for Accurate Estimation of Reaction Kinetics and Conversion for Carbon Mineralization
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April 2014 |
Thermal decomposition of calcite: Mechanisms of formation and textural evolution of CaO nanocrystals
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April 2009 |
Homogeneous catalysis of the water gas shift reaction by ruthenium and other metal carbonyls. Studies in alkaline solutions
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September 1979 |
Homogeneous catalysis of the water gas shift reaction using iron pentacarbonyl
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January 1980 |
Isolation of intermediates in the water gas shift reactions catalyzed by [Ru(bpy)2(CO)Cl]+ and [Ru(bpy)2(CO)2]2+
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April 1986 |
Homogeneous catalysis of the water-gas shift reaction
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March 1988 |
Chrysotile dissolution rates: Implications for carbon sequestration
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August 2013 |
Effect of Secondary Phase Formation on the Carbonation of Olivine
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August 2010 |
Grazing-incidence X-ray Absorption and Emission Spectroscopy
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January 2002 |
In Situ Determination of Interfacial Energies between Heterogeneously Nucleated CaCO 3 and Quartz Substrates: Thermodynamics of CO 2 Mineral Trapping
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June 2012 |
Environmental Chemistry at Vapor/Water Interfaces: Insights from Vibrational Sum Frequency Generation Spectroscopy
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May 2012 |
Using “Tender” X-ray Ambient Pressure X-Ray Photoelectron Spectroscopy as A Direct Probe of Solid-Liquid Interface
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May 2015 |
Simulation of Ca 2+ and Mg 2+ Solvation Using Polarizable Atomic Multipole Potential
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September 2006 |
Room Temperature Magnesite Precipitation
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October 2017 |
Polymorphism of CaCO3, precipitated in a constant-composition environment
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August 1998 |
Continuous Preparation of Calcite, Aragonite and Vaterite, and of Magnesium-Substituted Amorphous Calcium Carbonate (Mg-ACC)
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July 2008 |
Precipitation of Calcium Carbonate in Confinement
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December 2004 |
Oriented Crystallization of Vaterite in Collagenous Matrices
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June 1998 |
Solvothermal growth of vaterite in the presence of ethylene glycol, 1,2-propanediol and glycerin
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March 2002 |
Sonochemical synthesis of aragonite-type calcium carbonate with different morphologies
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January 2004 |
Synthesis of Aragonite Nanofilament Networks by Mesoscale Self-Assembly and Transformation in Reverse Microemulsions
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December 2003 |
Templated Crystallisation of Calcium and Strontium Carbonates on Centred Rectangular Self-Assembled Monolayer Substrates
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September 1998 |
Synthesis of Stable Aragonite Superstructures by a Biomimetic Crystallization Pathway
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September 2005 |
Control of crystal phase switching and orientation by soluble mollusc-shell proteins
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May 1996 |
Control of Aragonite or Calcite Polymorphism by Mollusk Shell Macromolecules
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January 1996 |
Molecular Construction of Oriented Inorganic Materials: Controlled Nucleation of Calcite and Aragonite under Compressed Langmuir Monolayers
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March 1994 |
Template-directed synthesis of aragonite under supramolecular hydrogen-bonded langmuir monolayers
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February 1997 |
The transformation of nesquehonite into hydromagnesite
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December 1973 |
Precipitation in the Mg-carbonate system—effects of temperature and CO2 pressure
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February 2008 |
Stability of Carbonates in the System MgO-CO 2 -H 2 O
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September 1965 |
Temperature- and pH-Dependent Morphology and FT−IR Analysis of Magnesium Carbonate Hydrates
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July 2006 |
Aqueous Carbonation of Natural Brucite: Relevance to CO 2 Sequestration
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January 2010 |
Dolomitic lime: thermal decomposition of nesquehonite
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November 2004 |
The crystallization of magnesite from aqueous solution
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January 1973 |
Investigation of the Different Carbonate Phases and Their Formation Kinetics during Mg(OH) 2 Slurry Carbonation
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November 2014 |
Pore-Size-Dependent Calcium Carbonate Precipitation Controlled by Surface Chemistry
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May 2014 |
Development of combined microstructure and structure characterization facility for in situ and operando studies at the Advanced Photon Source
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June 2018 |
In Situ Angstrom-to-Micrometer Characterization of the Structural and Microstructural Changes in Kaolinite on Heating Using Ultrasmall-Angle, Small-Angle, and Wide-Angle X-ray Scattering (USAXS/SAXS/WAXS)
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October 2017 |
Connecting the Morphological and Crystal Structural Changes during the Conversion of Lithium Hydroxide Monohydrate to Lithium Carbonate Using Multi-Scale X-ray Scattering Measurements
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September 2017 |
CO2 chemistry: task-specific ionic liquids for CO2 capture/activation and subsequent conversion
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January 2011 |
CO2 capture and activation by superbase/polyethylene glycol and its subsequent conversion
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January 2011 |
Equimolar CO 2 Capture by N-Substituted Amino Acid Salts and Subsequent Conversion
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October 2012 |
Development of amino acid and amino acid-complex based solid sorbents for CO2 capture
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September 2013 |
Thermal degradation of amino acid salts in CO2 capture
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November 2013 |