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JOURNAL OF HAZARDOUS MATERIALS (2006)
Life cycle evaluation of CO2 recovery and mineral sequestration alternatives
Hsien H. Khoo et al.
ENVIRONMENTAL PROGRESS (2006)
CO2 sequestration by direct gas-solid carbonation of air pollution control (APC) residues
Renato Baciocchi et al.
ENERGY & FUELS (2006)
Accelerated carbonation for treatment of MSWI bottom ash
S. Arickx et al.
JOURNAL OF HAZARDOUS MATERIALS (2006)
Verifying and quantifying carbon fixation in minerals from serpentine-rich mine tailings using the Rietveld method with X-ray powder diffraction data
Siobhan A. Wilson et al.
AMERICAN MINERALOGIST (2006)
CO2 sequestration with brine solution and fly ashes
Y Soong et al.
ENERGY CONVERSION AND MANAGEMENT (2006)
Carbon sequestration via aqueous olivine mineral carbonation:: Role of passivating layer formation
Hamdallah Bearat et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2006)
Effect of accelerated aging of MSWI bottom ash on the leaching mechanisms of copper and molybdenum
Joris J. Dijkstra et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2006)
Mechanisms of aqueous wollastonite carbonation as a possible CO2 sequestration process
Wouter J. J. Huijgen et al.
CHEMICAL ENGINEERING SCIENCE (2006)
Chemistry of aqueous mineral carbonation for carbon sequestration and explanation of experimental results
Zhong-Ying Chen et al.
ENVIRONMENTAL PROGRESS (2006)
Geochemical modeling of leaching from MSWI air-pollution-control residues
Thomas Astrup et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2006)
A study of silicon carbide synthesis from waste serpentine
T. W. Cheng et al.
CHEMOSPHERE (2006)
The effect of carbon dioxide on β-dicalcium silicate and Portland cement
O Shtepenko et al.
CHEMICAL ENGINEERING JOURNAL (2006)
Mechanical activation of olivine
RA Kleiv et al.
MINERALS ENGINEERING (2006)
Quantitative determination of phases in the alkali activation of fly ash.: Part I.: Potential ash reactivity
A Fernández-Jimenez et al.
FUEL (2006)
Carbon dioxide sequestration in municipal solid waste incinerator (MSWI) bottom ash
E Rendek et al.
JOURNAL OF HAZARDOUS MATERIALS (2006)
Dissolution kinetics of fosteritic olivine at 90-150 degrees C including effects of the presence of CO2
M. Haenchen et al.
GEOCHIMICA ET COSMOCHIMICA ACTA (2006)
Enhanced weathering: An effective and cheap tool to sequester CO2
R. D. Schuiling et al.
CLIMATIC CHANGE (2006)
Calcite precipitation by a high-pressure CO2 carbonation route
C Domingo et al.
JOURNAL OF SUPERCRITICAL FLUIDS (2006)
Demobilisation of critical contaminants in four typical waste-to-energy ashes by carbonation
M Todorovic et al.
WASTE MANAGEMENT (2006)
Mineral CO2 sequestration by steel slag carbonation
WJJ Huijgen et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2005)
Production of precipitated calcium carbonate from calcium silicates and carbon dioxide
S Teir et al.
ENERGY CONVERSION AND MANAGEMENT (2005)
Activation of magnesium rich minerals as carbonation feedstock materials for CO2 sequestration
MM Maroto-Valer et al.
FUEL PROCESSING TECHNOLOGY (2005)
Carbon sequestration using brine of adjusted pH to form mineral carbonates
ML Druckenmiller et al.
FUEL PROCESSING TECHNOLOGY (2005)
Development of a process for producing high-purity calcium carbonate (CaCO3) from waste cement using pressurized CO2
Y Katsuyama et al.
ENVIRONMENTAL PROGRESS (2005)
Chromium release from waste incineration air-pollution-control residues
T Astrup et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2005)
Forsterite dissolution and magnesite precipitation at conditions relevant for deep saline aquifer storage and sequestration of carbon dioxide
DE Giammar et al.
CHEMICAL GEOLOGY (2005)
Experimental determination of the effect of dissolved CO2 on the dissolution kinetics of Mg and Ca silicates at 25 °C
SV Golubev et al.
CHEMICAL GEOLOGY (2005)
Experimental evaluation of mixed fluid reactions between supercritical carbon dioxide and NaCl brine: Relevance to the integrity of a geologic carbon repository
JP Kaszuba et al.
CHEMICAL GEOLOGY (2005)
Carbonation reaction of lime, kinetics at ambient temperature
K Van Balen
CEMENT AND CONCRETE RESEARCH (2005)
Using CaO- and MgO-rich industrial waste streams for carbon sequestration
JK Stolaroff et al.
ENERGY CONVERSION AND MANAGEMENT (2005)
Carbonated serpentinite (listwanite) at Atlin, British Columbia: A geological analogue to carbon dioxide sequestration
LD Hansen et al.
CANADIAN MINERALOGIST (2005)
Carbonation of MSWI-bottom ash to decrease heavy metal leaching, in view of recycling
T Van Gerven et al.
WASTE MANAGEMENT (2005)
Characterization and preliminary assessment of a sorbent produced by accelerated mineral carbonation
OL Shtepenko et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2005)
The leaching behavior of incinerator bottom ash as affected by accelerated ageing
A Polettini et al.
JOURNAL OF HAZARDOUS MATERIALS (2004)
A review of accelerated carbonation technology in the treatment of cement-based materials and sequestration of CO2
M Fernández Bertos et al.
JOURNAL OF HAZARDOUS MATERIALS (2004)
Exploration of the role of heat activation in enhancing serpentine carbon sequestration reactions
MJ Mckelvy et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2004)
Effect of CO2 on leaching from a cement-stabilized MSWI fly ash
T Van Gerven et al.
CEMENT AND CONCRETE RESEARCH (2004)
Effect of liquid and supercritical carbon dioxide treatments on the leaching performance of a cement-stabilised waste form
L Van Ginneken et al.
JOURNAL OF SUPERCRITICAL FLUIDS (2004)
Development of a new CO2 sequestration process utilizing the carbonation of waste cement
A Iizuka et al.
INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH (2004)
CO2 mineral sequestration:: physically activated dissolution of serpentine and pH swing process
AHA Park et al.
CHEMICAL ENGINEERING SCIENCE (2004)
Hydrogen production from food waste in anaerobic mesophilic and thermophilic acidogenesis
HS Shin et al.
INTERNATIONAL JOURNAL OF HYDROGEN ENERGY (2004)
Steel slag - Its production, processing, characteristics, and cementitious properties
CJ Shi
JOURNAL OF MATERIALS IN CIVIL ENGINEERING (2004)
Investigation of accelerated carbonation for the stabilisation of MSW incinerator ashes and the sequestration of CO2
MF Bertos et al.
GREEN CHEMISTRY (2004)
Alkali ash material: A novel fly ash-based cement
H Rostami et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2003)
Carbon dioxide reaction processes in a model brine aquifer at 200 °C and 200 bars:: implications for geologic sequestration of carbon
JP Kaszuba et al.
APPLIED GEOCHEMISTRY (2003)
Characterization of flue gas cleaning residues from European solid waste incinerators:: Assessment of various Ca-based sorbent processes
F Bodénan et al.
CHEMOSPHERE (2003)
Carbonation of municipal solid waste incineration fly ash and the impact on metal mobility
H Ecke et al.
JOURNAL OF ENVIRONMENTAL ENGINEERING-ASCE (2003)
Management of municipal solid waste incineration residues
T Sabbas et al.
WASTE MANAGEMENT (2003)
Sequestration of metals in carbonated municipal solid waste incineration (MSWI) fly ash
H Ecke
WASTE MANAGEMENT (2003)
Short-term natural weathering of MSWI bottom ash as a function of particle size
JM Chimenos et al.
WASTE MANAGEMENT (2003)
Carbonation processes in municipal solid waste incinerator bottom ash and their effect on the leaching of copper and molybdenum
JA Meima et al.
APPLIED GEOCHEMISTRY (2002)
Production of extra pure silica from serpentinites
VV Velinskii et al.
JOURNAL OF MINING SCIENCE (2002)
Microstructural changes caused by carbonation of cement mortar
B Johannesson et al.
CEMENT AND CONCRETE RESEARCH (2001)
A new CO2 disposal process via artificial weathering of calcium silicate accelerated by acetic acid
M Kakizawa et al.
ENERGY (2001)
Preliminary investigations into the supercritical carbonation of cement pastes
NR Short et al.
JOURNAL OF MATERIALS SCIENCE (2001)
Products of steel slags an opportunity to save natural resources
H Motz et al.
WASTE MANAGEMENT (2001)
New building material from waste concrete by carbonation
S Teramura et al.
JOURNAL OF MATERIALS IN CIVIL ENGINEERING (2000)
Contribution of carbonate rock weathering to the atmospheric CO2 sink
Z Liu et al.
ENVIRONMENTAL GEOLOGY (2000)
Physical and chemical characteristics of blast furnace, basic oxygen furnace, and electric arc furnace steel industry slags
DM Proctor et al.
ENVIRONMENTAL SCIENCE & TECHNOLOGY (2000)