Comparison of Approaches for Measuring the Mass Accommodation Coefficient for the Condensation of Water and Sensitivities to Uncertainties in Thermophysical Properties
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Jonathan P. Reid | Rachael E. H. Miles | Ilona Riipinen | I. Riipinen | J. Reid | R. Miles | R. E. H. Miles
[1] E. Davis,et al. Analysis of mass transfer between a sequence of drops and a surroundings gas , 1997 .
[2] R. C. Cohen,et al. On the evaporation of ammonium sulfate solution , 2009, Proceedings of the National Academy of Sciences.
[3] D. Worsnop,et al. Uptake of H217O(g) and D2O(g) by Aqueous Sulfuric Acid Droplets , 2004 .
[4] J. Seinfeld,et al. Modification of aerosol mass and size distribution due to aqueous‐phase SO2 oxidation in clouds: Comparisons of several models , 2003 .
[5] Ulrich Pöschl,et al. An amorphous solid state of biogenic secondary organic aerosol particles , 2010, Nature.
[6] D. R. Worsnop,et al. Mass and Thermal Accommodation Coefficients of H2O(g) on Liquid Water as a Function of Temperature , 2001 .
[7] M. Mozurkewich,et al. Aerosol Growth and the Condensation Coefficient for Water: A Review , 1986 .
[8] George Thodos,et al. Generalized treatment of self-diffusivity for the gaseous and liquid states of fluids , 1983 .
[9] Joel L. Plawsky,et al. Transport Phenomena Fundamentals , 2020 .
[10] J. Barrett,et al. Kinetic evaporation and condensation rates and their coefficients , 1992 .
[11] C. Chan,et al. Mass transfer effects on the hygroscopic growth of ammonium sulfate particles with a water-insoluble coating , 2007 .
[12] Jonathan P. Reid,et al. Measurements of the timescales for the mass transfer of water in glassy aerosol at low relative humidity and ambient temperature , 2011 .
[13] C. Chan,et al. Mass transfer effects in hygroscopic measurements of aerosol particles , 2005 .
[14] A. Nenes,et al. Water Vapor Depletion in the DMT Continuous-Flow CCN Chamber: Effects on Supersaturation and Droplet Growth , 2011 .
[15] Jonathan P. Reid,et al. Time-Resolved Measurements of the Evaporation of Volatile Components from Single Aerosol Droplets , 2012 .
[16] S. Ghan,et al. Kinetic limitations on cloud droplet formation and impact on cloud albedo , 2001 .
[17] Spyros N. Pandis,et al. The effect of organic coatings on the cloud condensation nuclei activation of inorganic atmospheric aerosol , 1998 .
[18] P. Wagner. A constant-angle Mie scattering method (CAMS) for investigation of particle formation processes , 1985 .
[19] T. Allen,et al. Measurement of droplet interfacial phenomena by light‐scattering techniques , 1988 .
[20] A. Nenes,et al. A coupled observation - modeling approach for studying activation kinetics from measurements of CCN activity , 2012 .
[21] Edward A. Mason,et al. Approximate Formula for the Thermal Conductivity of Gas Mixtures , 1958 .
[22] Jonathan P Reid,et al. Comparing the mechanism of water condensation and evaporation in glassy aerosol , 2012, Proceedings of the National Academy of Sciences.
[23] Laura Mitchem,et al. Measurements of mass and heat transfer at a liquid water surface during condensation or evaporation of a subnanometer thickness layer of water. , 2010, Physical review letters.
[24] D. Donaldson,et al. Enhanced Uptake of PAHs by Organic-Coated Aqueous Surfaces , 2003 .
[25] E. A. Mason,et al. TEMPERATURE DEPENDENCE OF GASEOUS DIFFUSION COEFFICIENTS , 1980 .
[26] R. C. Cohen,et al. Effect of Surface Active Ions on the Rate of Water Evaporation , 2010 .
[27] Y. Rudich,et al. Kinetic model framework for aerosol and cloud surface chemistry and gas-particle interactions – Part 1: General equations, parameters, and terminology , 2005 .
[28] Hongqin Liu,et al. Accurate correlations for the self-diffusion coefficients of CO2, CH4, C2H4, H2O, and D2O over wide ranges of temperature and pressure , 1995 .
[29] Jinyue Yan,et al. Viscosities, thermal conductivities and diffusion coefficients of CO2 mixtures:Review of experimental data and theoretical models , 2011 .
[30] J. Straub,et al. Analysis of the evaporation coefficient and the condensation coefficient of water , 2001 .
[31] Jonathan P Reid,et al. Ultrasensitive absorption spectroscopy of optically-trapped aerosol droplets. , 2008, The journal of physical chemistry. A.
[32] R. Reid,et al. The Properties of Gases and Liquids , 1977 .
[33] Alexander L. Lindsay,et al. Thermal Conductivity of Gas Mixtures , 1950 .
[34] E. James Davis,et al. The Airborne Microparticle , 2002 .
[35] Hanna Vehkamäki,et al. Thermodynamics and kinetics of atmospheric aerosol particle formation and growth. , 2012, Chemical Society reviews.
[36] V. Vesovic,et al. Calculation of the transport and relaxation properties of dilute water vapor. , 2009, The Journal of chemical physics.
[37] Radim Mareš,et al. New International Formulation for the Viscosity of H2O , 2009 .
[38] R. Shaw,et al. Experimental determination of the thermal accommodation and condensation coefficients of water , 1999 .
[39] V. S. Vaidhyanathan,et al. Transport phenomena , 2005, Experientia.
[40] E. Lemmon,et al. Viscosity and Thermal Conductivity Equations for Nitrogen, Oxygen, Argon, and Air , 2004 .
[41] J. H. Seinfeld,et al. Kinetic limitations on droplet formation in clouds , 1997, Nature.
[42] J. Hudson,et al. Droplet Spectral Broadening in Marine Stratus , 1997 .
[43] Daniel R Burnham,et al. Retrieval of the complex refractive index of aerosol droplets from optical tweezers measurements. , 2012, Physical chemistry chemical physics : PCCP.
[44] K. Kobe. The properties of gases and liquids , 1959 .
[45] J. Smith,et al. Mapping the Operation of the DMT Continuous Flow CCN Counter , 2006 .
[46] E. Korin,et al. The molar enthalpies of solution and solubilities of ammonium, sodium and potassium oxalates in water , 2004 .
[47] I. Riipinen,et al. Organic condensation: a vital link connecting aerosol formation to cloud condensation nuclei (CCN) concentrations , 2011 .
[48] J. Barrett,et al. Growth rates for liquid drops , 1988 .
[49] Claudia Marcolli,et al. Do atmospheric aerosols form glasses , 2008 .
[50] J. Coakley,et al. Climate Forcing by Anthropogenic Aerosols , 1992, Science.
[51] J. Seinfeld,et al. Atmospheric Chemistry and Physics: From Air Pollution to Climate Change , 1997 .
[52] J. Seinfeld,et al. A theoretical analysis of cloud condensation nucleus (CCN) instruments , 2001 .
[53] A. Nenes,et al. CCN spectra, hygroscopicity, and droplet activation kinetics of secondary organic aerosol resulting from the 2010 Deepwater Horizon oil spill. , 2012, Environmental science & technology.
[54] Charles E. Kolb,et al. An overview of current issues in the uptake of atmospheric trace gases by aerosols and clouds , 2010 .
[55] 宁北芳,et al. 疟原虫var基因转换速率变化导致抗原变异[英]/Paul H, Robert P, Christodoulou Z, et al//Proc Natl Acad Sci U S A , 2005 .
[56] E. Gilliland. Diffusion Coefficients in Gaseous Systems , 1934 .
[57] J. Seinfeld,et al. Can chemical effects on cloud droplet number rival the first indirect effect? , 2002 .
[58] Robert A. Millikan. The General Law of Fall of a Small Spherical Body through a Gas, and its Bearing upon the Nature of Molecular Reflection from Surfaces , 1980 .
[59] Timo Vesala,et al. Condensation of water vapor: Experimental determination of mass and thermal accommodation coefficients , 2006 .
[60] J. Sengers,et al. Improved International Formulations for the Viscosity and Thermal Conductivity of Water Substance , 1986 .
[61] Edward A. Mason,et al. Gaseous Diffusion Coefficients , 1972 .
[62] J. Hudson,et al. Comparisons of cloud microphysics with cloud condensation nuclei spectra over the summertime Southern Ocean , 1998 .
[63] Timo Vesala,et al. Commentary on cloud modelling and the mass accommodation coefficient of water , 2005 .
[64] B. C. Garrett,et al. Molecular simulations of the transport of molecules across the liquid/vapor interface of water. , 2006, Chemical reviews.
[65] R. C. Cohen,et al. Interpreting the H/D Isotope Fractionation of Liquid Water during Evaporation without Condensation , 2007 .
[66] P. Tsilingiris. Thermophysical and transport properties of humid air at temperature range between 0 and 100 °C , 2008 .
[67] R. C. Cohen,et al. Determination of the evaporation coefficient of D 2 O , 2008 .
[68] W. Wagner,et al. New International Skeleton Tables for the Thermodynamic Properties of Ordinary Water Substance , 1988 .
[69] E. Korin,et al. The molar enthalpies of solution and vapour pressures of saturated aqueous solutions of some ammonium salts , 2003 .
[70] Rosenfeld,et al. Suppression of rain and snow by urban and industrial air pollution , 2000, Science.
[71] N. Matubayasi,et al. Self-diffusion of supercritical water in extremely low-density region. , 2006, The Journal of chemical physics.
[72] R. C. Millard,et al. An index of refraction algorithm for seawater over temperature, pressure, salinity, density, and wavelength , 1990 .
[73] U. Pöschl,et al. Kinetic multi-layer model of gas-particle interactions in aerosols and clouds (KM-GAP): linking condensation, evaporation and chemical reactions of organics, oxidants and water , 2011 .
[74] J. Giddings,et al. Diffusion of halogenated hydrocarbons in helium. The effect of structure on collision cross sections , 1969 .
[75] Ting-chia Huang,et al. Measurements of diffusion coefficients by the method of gas chromatography , 1972 .
[76] R. C. Cohen,et al. Isotope fractionation of water during evaporation without condensation. , 2005, The journal of physical chemistry. B.
[77] X. Qu,et al. Non-isothermal droplet evaporation and condensation in the near-continuum regime , 2001 .
[78] Timo Vesala,et al. Mass and thermal accommodation during gas-liquid condensation of water. , 2004, Physical review letters.
[79] Charles E. Kolb,et al. Mass accommodation coefficient of water vapor on liquid water , 2004 .
[80] Y. S. Touloukian. Thermophysical properties of matter , 1970 .
[81] Claudia Marcolli,et al. Exploring the complexity of aerosol particle properties and processes using single particle techniques. , 2012, Chemical Society reviews.
[82] P. Jungwirth,et al. Molecular Dynamics study of ice-vapor interactions via the quasi-liquid layer , 2009 .
[83] P. Wagner. Aerosol Growth by Condensation , 1982 .
[84] V. Vaida,et al. The influence of organic films at the air-aqueous boundary on atmospheric processes. , 2006, Chemical reviews.
[85] P. Wagner. Energy balance during condensational drop growth , 1991 .
[86] C. F. Curtiss,et al. Molecular Theory Of Gases And Liquids , 1954 .
[87] R. Charlson,et al. The effects of atmospheric organics on aqueous droplet evaporation , 1997 .
[88] J. Klett,et al. Microphysics of Clouds and Precipitation , 1978, Nature.
[89] Wolfgang Wagner,et al. International Equations for the Saturation Properties of Ordinary Water Substance , 1987 .
[90] J. Thornton,et al. N(2)O(5) reaction on submicron sea salt aerosol: kinetics, products, and the effect of surface active organics. , 2005, The journal of physical chemistry. A.
[91] D. Worsnop,et al. Mass accommodation and chemical reactions at gas-liquid interfaces. , 2006, Chemical reviews.
[92] W. Marlow. Aerosol microphysics II. Chemical physics of microparticles. , 1982 .
[93] B. C. Garrett,et al. Molecular dynamics simulations of atmospheric oxidants at the air-water interface: solvation and accommodation of OH and O3. , 2005, The journal of physical chemistry. B.
[94] J. Voigtländer,et al. Mass accommodation coefficient of water: A combined computational fluid dynamics and experimental data analysis , 2007 .
[95] P. S. Epstein,et al. On the Resistance Experienced by Spheres in their Motion through Gases , 1924 .
[96] Maria Cristina Facchini,et al. The effect of physical and chemical aerosol properties on warm cloud droplet activation , 2005 .
[97] W. Massman. A review of the molecular diffusivities of H2O, CO2, CH4, CO, O3, SO2, NH3, N2O, NO, and NO2 in air O2 and N2 near STP , 1998 .
[98] E. J. Davis,et al. A history and state-of-the-art of accommodation coefficients , 2006 .
[99] J. Seinfeld,et al. Diffusion-Limited Versus Quasi-Equilibrium Aerosol Growth , 2012 .
[100] Janusz Wojtkowiak,et al. Simple Formulas for Thermophysical Properties of Liquid Water for Heat Transfer Calculations (from 0°C to 150°C) , 1998 .
[101] S. Takahama,et al. A molecular dynamics study of water mass accommodation on condensed phase water coated by fatty acid monolayers , 2011 .
[102] R. C. Cohen,et al. Raman thermometry measurements of free evaporation from liquid water droplets. , 2006, Journal of the American Chemical Society.
[103] Wolfgang Wagner,et al. International equations for the saturation properties of ordinary water substance. Revised according to the international temperature scale of 1990 , 1993 .
[104] S. Saxena,et al. Calculation of thermal conductivity of polar-nonpolar gas mixtures , 1968 .
[105] I. Tang,et al. Water activity measurements with single suspended droplets: The NaCl-H2O and KCl-H2O systems☆ , 1986 .
[106] M. Kulmala,et al. An analytical expression for the rate of binary condensational particle growth , 1993, Proceedings of the Royal Society of London. Series A: Mathematical and Physical Sciences.
[107] H. E. Howe. Industrial and Engineering Chemistry , 1942 .
[108] U. Pöschl,et al. Amorphous and crystalline aerosol particles interacting with water vapor: conceptual framework and experimental evidence for restructuring, phase transitions and kinetic limitations , 2009 .
[109] N. Chen,et al. New Generalized Equation for Gas Diffusion Coefficient. , 1962 .
[110] T. Vesala,et al. Condensation in the continuum regime , 1991 .
[111] I. Tang,et al. Simultaneous Determination of Refractive Index and Density of an Evaporating Aqueous Solution Droplet , 1991 .
[112] A. Nenes,et al. A Continuous-Flow Streamwise Thermal-Gradient CCN Chamber for Atmospheric Measurements , 2005 .
[113] M Zientara,et al. Temperature dependence of the evaporation coefficient of water in air and nitrogen under atmospheric pressure: study in water droplets. , 2008, The journal of physical chemistry. A.
[114] B. Luo,et al. Ultra-slow water diffusion in aqueous sucrose glasses. , 2011, Physical chemistry chemical physics : PCCP.
[115] A. Kalashnikov,et al. The viscosity and self-diffusion of rarefied steam: Refinement of reference data , 2008 .
[116] X. Qu,et al. Droplet evaporation and condensation in the near-continuum regime , 2001 .
[117] N. Matsunaga,et al. Prediction of the transport properties of gaseous H 2 O and its isotopes at high temperatures , 1983 .
[118] R. Byron Bird,et al. Calculation of the diffusion coefficient of dilute gases and of the self‐diffusion coefficient of dense gases , 1958 .