Articles | Volume 11, issue 18
https://doi.org/10.5194/acp-11-9971-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
https://doi.org/10.5194/acp-11-9971-2011
© Author(s) 2011. This work is distributed under
the Creative Commons Attribution 3.0 License.
the Creative Commons Attribution 3.0 License.
Modeling interfacial liquid layers on environmental ices
M. H. Kuo
Department of Chemical Engineering, Columbia University, New York, New York 10027, USA
S. G. Moussa
Department of Chemical Engineering, Columbia University, New York, New York 10027, USA
V. F. McNeill
Department of Chemical Engineering, Columbia University, New York, New York 10027, USA
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Cited
35 citations as recorded by crossref.
- Total reflection infrared spectroscopy of water-ice and frozen aqueous NaCl solutions R. Walker et al. 10.1063/1.4841835
- Nitrate Concentration near the Surface of Frozen Aqueous Solutions H. Marrocco & R. Michelsen 10.1021/jp508244u
- Nitric acid-induced surface disordering on ice S. Moussa et al. 10.1039/c3cp50487e
- Air–snowpack exchange of bromine, ozone and mercury in the springtime Arctic simulated by the 1-D model PHANTAS – Part 1: In-snow bromine activation and its impact on ozone K. Toyota et al. 10.5194/acp-14-4101-2014
- A Pinch of Salt Is All It Takes: Chemistry at the Frozen Water Surface T. Kahan et al. 10.1021/ar5000715
- Organics in environmental ices: sources, chemistry, and impacts V. McNeill et al. 10.5194/acp-12-9653-2012
- Can We Model Snow Photochemistry? Problems with the Current Approaches F. Domine et al. 10.1021/jp3123314
- Correction to “Development of a Mechanism for Nitrate Photochemistry in Snow” H. Jacobi 10.1021/jp209750d
- Rate Acceleration of the Heterogeneous Reaction of Ozone with a Model Alkene at the Air–Ice Interface at Low Temperatures D. Ray et al. 10.1021/es304812t
- How does deposition of gas phase species affect pH at frozen salty interfaces? S. Wren & D. Donaldson 10.5194/acp-12-10065-2012
- Use of the freeze salting-out method for reducing dosage of salting-out agent and salinity in wastewater from carmine production C. Fan et al. 10.1016/j.desal.2020.114475
- Modelling the physical multiphase interactions of HNO<sub>3</sub> between snow and air on the Antarctic Plateau (Dome C) and coast (Halley) H. Chan et al. 10.5194/acp-18-1507-2018
- The quasi-liquid layer of ice revisited: the role of temperature gradients and tip chemistry in AFM studies J. Gelman Constantin et al. 10.5194/acp-18-14965-2018
- Isotope Fractionation of Nitrate During Volatilization in Snow: A Field Investigation in Antarctica G. Shi et al. 10.1029/2019GL081968
- Proglacial icings as records of winter hydrological processes A. Chesnokova et al. 10.5194/tc-14-4145-2020
- Anhydrosugars as tracers in the Earth system L. Suciu et al. 10.1007/s10533-019-00622-0
- Nitrate photolysis in ice and snow: A critical review of its multiphase chemistry C. Blaszczak-Boxe & A. Saiz-Lopez 10.1016/j.atmosenv.2018.09.002
- Structure of the Ice–Clathrate Interface A. Nguyen et al. 10.1021/jp511749q
- Using Singlet Molecular Oxygen to Probe the Solute and Temperature Dependence of Liquid-Like Regions in/on Ice J. Bower & C. Anastasio 10.1021/jp404071y
- Halogen activation via interactions with environmental ice and snow in the polar lower troposphere and other regions J. Abbatt et al. 10.5194/acp-12-6237-2012
- Laboratory Study of pH at the Air–Ice Interface S. Wren & D. Donaldson 10.1021/jp3021936
- Accelerated dissolution of iron oxides in ice D. Jeong et al. 10.5194/acp-12-11125-2012
- Physical Characterization of Frozen Aqueous Solutions Containing Sodium Chloride and Humic Acid at Environmentally Relevant Temperatures S. Chakraborty & T. Kahan 10.1021/acsearthspacechem.9b00319
- Chemical Morphology of Frozen Mixed Nitrate–Salt Solutions K. Morenz & D. Donaldson 10.1021/acs.jpca.6b12608
- A review of air–ice chemical and physical interactions (AICI): liquids, quasi-liquids, and solids in snow T. Bartels-Rausch et al. 10.5194/acp-14-1587-2014
- Spectroscopic Properties of Anisole at the Air–Ice Interface: A Combined Experimental–Computational Approach J. Malongwe et al. 10.1021/acs.langmuir.6b01187
- Physical Characterization of Frozen Saltwater Solutions Using Raman Microscopy P. Malley et al. 10.1021/acsearthspacechem.8b00045
- Photochemical chlorine and bromine activation from artificial saline snow S. Wren et al. 10.5194/acp-13-9789-2013
- Adsorption of Acetic Acid on Ice Studied by Ambient-Pressure XPS and Partial-Electron-Yield NEXAFS Spectroscopy at 230–240 K A. Křepelová et al. 10.1021/jp3102332
- Methanesulfonic acid (MSA) migration in polar ice: data synthesis and theory M. Osman et al. 10.5194/tc-11-2439-2017
- Modeling chemistry in and above snow at Summit, Greenland – Part 1: Model description and results J. Thomas et al. 10.5194/acp-11-4899-2011
- Investigation of the formation behaviors of CO2 hydrate in porous media below the freezing point X. Zhang et al. 10.1002/ep.13953
- Mercury photochemistry in snow and implications for Arctic ecosystems E. Mann et al. 10.1139/er-2014-0006
- Influence of AFM Tip Temperature on THF Hydrate Stability: Theoretical Model and Numerical Simulation L. Peng et al. 10.1155/2019/1694169
- Clumping of frozen par-fried foods: Lessons from frosting on structured surfaces R. van der Sman 10.1016/j.foostr.2018.06.001
30 citations as recorded by crossref.
- Total reflection infrared spectroscopy of water-ice and frozen aqueous NaCl solutions R. Walker et al. 10.1063/1.4841835
- Nitrate Concentration near the Surface of Frozen Aqueous Solutions H. Marrocco & R. Michelsen 10.1021/jp508244u
- Nitric acid-induced surface disordering on ice S. Moussa et al. 10.1039/c3cp50487e
- Air–snowpack exchange of bromine, ozone and mercury in the springtime Arctic simulated by the 1-D model PHANTAS – Part 1: In-snow bromine activation and its impact on ozone K. Toyota et al. 10.5194/acp-14-4101-2014
- A Pinch of Salt Is All It Takes: Chemistry at the Frozen Water Surface T. Kahan et al. 10.1021/ar5000715
- Organics in environmental ices: sources, chemistry, and impacts V. McNeill et al. 10.5194/acp-12-9653-2012
- Can We Model Snow Photochemistry? Problems with the Current Approaches F. Domine et al. 10.1021/jp3123314
- Correction to “Development of a Mechanism for Nitrate Photochemistry in Snow” H. Jacobi 10.1021/jp209750d
- Rate Acceleration of the Heterogeneous Reaction of Ozone with a Model Alkene at the Air–Ice Interface at Low Temperatures D. Ray et al. 10.1021/es304812t
- How does deposition of gas phase species affect pH at frozen salty interfaces? S. Wren & D. Donaldson 10.5194/acp-12-10065-2012
- Use of the freeze salting-out method for reducing dosage of salting-out agent and salinity in wastewater from carmine production C. Fan et al. 10.1016/j.desal.2020.114475
- Modelling the physical multiphase interactions of HNO<sub>3</sub> between snow and air on the Antarctic Plateau (Dome C) and coast (Halley) H. Chan et al. 10.5194/acp-18-1507-2018
- The quasi-liquid layer of ice revisited: the role of temperature gradients and tip chemistry in AFM studies J. Gelman Constantin et al. 10.5194/acp-18-14965-2018
- Isotope Fractionation of Nitrate During Volatilization in Snow: A Field Investigation in Antarctica G. Shi et al. 10.1029/2019GL081968
- Proglacial icings as records of winter hydrological processes A. Chesnokova et al. 10.5194/tc-14-4145-2020
- Anhydrosugars as tracers in the Earth system L. Suciu et al. 10.1007/s10533-019-00622-0
- Nitrate photolysis in ice and snow: A critical review of its multiphase chemistry C. Blaszczak-Boxe & A. Saiz-Lopez 10.1016/j.atmosenv.2018.09.002
- Structure of the Ice–Clathrate Interface A. Nguyen et al. 10.1021/jp511749q
- Using Singlet Molecular Oxygen to Probe the Solute and Temperature Dependence of Liquid-Like Regions in/on Ice J. Bower & C. Anastasio 10.1021/jp404071y
- Halogen activation via interactions with environmental ice and snow in the polar lower troposphere and other regions J. Abbatt et al. 10.5194/acp-12-6237-2012
- Laboratory Study of pH at the Air–Ice Interface S. Wren & D. Donaldson 10.1021/jp3021936
- Accelerated dissolution of iron oxides in ice D. Jeong et al. 10.5194/acp-12-11125-2012
- Physical Characterization of Frozen Aqueous Solutions Containing Sodium Chloride and Humic Acid at Environmentally Relevant Temperatures S. Chakraborty & T. Kahan 10.1021/acsearthspacechem.9b00319
- Chemical Morphology of Frozen Mixed Nitrate–Salt Solutions K. Morenz & D. Donaldson 10.1021/acs.jpca.6b12608
- A review of air–ice chemical and physical interactions (AICI): liquids, quasi-liquids, and solids in snow T. Bartels-Rausch et al. 10.5194/acp-14-1587-2014
- Spectroscopic Properties of Anisole at the Air–Ice Interface: A Combined Experimental–Computational Approach J. Malongwe et al. 10.1021/acs.langmuir.6b01187
- Physical Characterization of Frozen Saltwater Solutions Using Raman Microscopy P. Malley et al. 10.1021/acsearthspacechem.8b00045
- Photochemical chlorine and bromine activation from artificial saline snow S. Wren et al. 10.5194/acp-13-9789-2013
- Adsorption of Acetic Acid on Ice Studied by Ambient-Pressure XPS and Partial-Electron-Yield NEXAFS Spectroscopy at 230–240 K A. Křepelová et al. 10.1021/jp3102332
- Methanesulfonic acid (MSA) migration in polar ice: data synthesis and theory M. Osman et al. 10.5194/tc-11-2439-2017
5 citations as recorded by crossref.
- Modeling chemistry in and above snow at Summit, Greenland – Part 1: Model description and results J. Thomas et al. 10.5194/acp-11-4899-2011
- Investigation of the formation behaviors of CO2 hydrate in porous media below the freezing point X. Zhang et al. 10.1002/ep.13953
- Mercury photochemistry in snow and implications for Arctic ecosystems E. Mann et al. 10.1139/er-2014-0006
- Influence of AFM Tip Temperature on THF Hydrate Stability: Theoretical Model and Numerical Simulation L. Peng et al. 10.1155/2019/1694169
- Clumping of frozen par-fried foods: Lessons from frosting on structured surfaces R. van der Sman 10.1016/j.foostr.2018.06.001
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