Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 108 checked references that resolve
resolves10.1021/cr020653tThe Tropospheric Chemistry of Sea Salt: A Molecular-Level View of the Chemistry of NaCl and NaBr
resolves10.1029/97GL03195Bromine, iodine, and chlorine in single aerosol particles at Cape Grim
resolves10.1029/GM152Sea Salt Aerosol Production: Mechanisms, Methods, Measurements and Models—A Critical Review
resolves10.1029/90GL02595The reaction of gaseous N<sub>2</sub>O<sub>5</sub> with solid NaCl at 298 K: Estimated lower limit to the reaction probability and its potential role in tropospheric and stratospheric chemistry
resolves10.1007/BF00696784Determination of heterogeneous reaction probability using deposition profile measurement in an annular reactor: Application to the N2O5/H2O reaction
resolves10.1021/jp9503829Heterogeneous Kinetics of N<sub>2</sub>O<sub>5</sub>Uptake on Salt, with a Systematic Study of the Role of Surface Presentation (for N<sub>2</sub>O<sub>5</sub>and HNO<sub>3</sub>)
resolves10.1021/j100035a026Heterogeneous Reactions of HNO3(g) + NaCl(s) .fwdarw. HCl(g) + NaNO3(s) and N2O5(g) + NaCl(s) .fwdarw. ClNO2(g) + NaNO3(s)
resolves10.1039/b311209hCorrelations in the chemical composition of rural background atmospheric aerosol in the UK determined in real time using time-of-flight mass spectrometry
resolves10.1021/es020551kQuantitative Time-Resolved Monitoring of Nitrate Formation in Sea Salt Particles Using a CCSEM/EDX Single Particle Analysis
resolves10.1016/j.atmosenv.2006.09.054Conversion of sea salt aerosol to NaNO3 and the production of HCl: Analysis of temporal behavior of aerosol chloride/nitrate and gaseous HCl/HNO3 concentrations with AIM
resolves10.5194/acp-3-335-2003Fluxes of nitrates between snow surfaces and the atmosphere in the European high Arctic
resolves10.1029/2000JD900413Phase transitions of sea‐salt/water mixtures at low temperatures: Implications for ozone chemistry in the polar marine boundary layer
resolves10.1029/1999GL900077Evidence of NO
<sub>
<i>x</i>
</sub>
production within or upon ice particles in the Greenland snowpack
resolves10.1029/2001GL013531Snowpack photochemical production of HONO: A major source of OH in the Arctic boundary layer in springtime
resolves10.1029/1999GL011286Release of NO<i><sub>x</sub></i> from sunlight‐irradiated midlatitude snow
resolves10.1029/1999GL010885Speciation and rate of photochemical NO and NO<sub>2</sub> production in Antarctic snow
resolves10.1016/j.atmosenv.2004.04.039South Pole <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si26.gif" overflow="scroll"><mml:msub><mml:mrow><mml:mi>NO</mml:mi></mml:mrow><mml:mrow><mml:mi>x</mml:mi></mml:mrow></mml:msub></mml:math> Chemistry: an assessment of factors controlling variability and absolute levels
resolves10.1021/jp055037qKinetics of NO and NO
<sub>2</sub>
Evolution from Illuminated Frozen Nitrate Solutions
resolves10.1021/jp0142942Monotonic Increase of Nitrite Yields in the Photolysis of Nitrate in Ice and Water between 238 and 294 K
resolves10.1021/jp0349132Quantum Yields of Hydroxyl Radical and Nitrogen Dioxide from the Photolysis of Nitrate on Ice
resolves10.1021/jp804622zDirect Observation of OH Radicals Ejected from Water Ice Surface in the Photoirradiation of Nitrate Adsorbed on Ice at 100 K
resolves10.1021/jp072596jRelease of Oxygen Atoms and Nitric Oxide Molecules from the Ultraviolet Photodissociation of Nitrate Adsorbed on Water Ice Films at 100 K
resolves10.1007/BF00115783Absolute OH quantum yields in the laser photolysis of nitrate, nitrite and dissolved H2O2 at 308 and 351 nm in the temperature range 278?353 K
resolves10.1021/j100333a022Product quantum yields for the 305-nm photodecomposition of nitrate in aqueous solution
resolves10.1039/B618565GOn the photolysis of simple anions and neutral molecules as sources of O
<sup>−</sup>
/OH, SO
<sub>x</sub>
<sup>−</sup>
and Cl in aqueous solution
resolves10.1016/j.atmosres.2004.04.009Concentrations of nitrous acid, nitric acid, nitrite and nitrate in the gas and aerosol phase at a site in the emission zone during ESCOMPTE 2001 experiment
resolves10.1021/ac00097a012Continuous Automated Measurement of the Soluble Fraction of Atmospheric Particulate Matter
resolves10.1023/A:1006297819663The Influence of NaBr/NaCl Ratio on the Br--Catalysed Production of Halogenated Radicals
resolves10.1021/jp063165oBr<sub>2</sub> Production from the Heterogeneous Reaction of Gas-Phase OH with Aqueous Salt Solutions: Impacts of Acidity, Halide Concentration, and Organic Surfactants
resolves10.1080/014423599229910Heterogeneous chemistry in the troposphere: Experimental approaches and applications to the chemistry of sea salt particles
resolves10.1021/j100879a004The Pulse Radiolysis of Deaerated Aqueous Bromide Solutions<sup>1</sup>
resolves10.1039/f19736901597Some simple, highly reactive, inorganic chlorine derivatives in aqueous solution. Their formation using pulses of radiation and their role in the mechanism of the Fricke dosimeter
resolves10.1021/j100647a006Oxidation of aqueous bromide ions by hydroxyl radicals. Pulse radiolytic investigation
resolves10.1021/es00056a009Bromate Formation during Ozonization of Bromide-Containing Waters: Interaction of Ozone and Hydroxyl Radical Reactions
resolves10.1021/es970477jAdvanced Oxidation of Bromide-Containing Waters: Bromate Formation Mechanisms
resolves10.1021/jp102072tRelease of Gas-Phase Halogens by Photolytic Generation of OH in Frozen Halide−Nitrate Solutions: An Active Halogen Formation Mechanism?
resolves10.1021/jp109560jNitrate Ion Photolysis in Thin Water Films in the Presence of Bromide Ions
resolves10.5194/acp-11-4899-2011Modeling chemistry in and above snow at Summit, Greenland – Part 1: Model description and results
resolves10.1038/334138a0Ozone destruction and photochemical reactions at polar sunrise in the lower Arctic atmosphere
resolves10.1029/1999GL010836Sunrise ozone destruction found in the sub‐tropical marine boundary layer
resolves10.1029/1999GL010943Mid‐latitude marine boundary‐layer ozone destruction at visible sunrise observed at Cape Grim, Tasmania, 41°S
resolves10.1021/es025793zImpact of Chlorine Emissions from Sea-Salt Aerosol on Coastal Urban Ozone
resolves10.1021/es050787zAtmospheric Chlorine Chemistry in Southeast Texas: Impacts on Ozone Formation and Control
resolves10.1029/2001JD000867Modeling Cl
<sub>2</sub>
formation from aqueous NaCl particles: Evidence for interfacial reactions and importance of Cl
<sub>2</sub>
decomposition in alkaline solution
resolves10.1029/2007GL029761Reactive chlorine in the marine boundary layer in the outflow of polluted continental air: A model study
resolves10.1029/92JD01923Aqueous‐phase chemical processes in deliquescent sea‐salt aerosols: A mechanism that couples the atmospheric cycles of S and sea salt
resolves10.1038/28584Unexpectedly high concentrations of molecular chlorine in coastal air
resolves10.1029/98JD01384A general circulation model based calculation of HCl and ClNO<sub>2</sub> production from sea salt dechlorination: Reactive Chlorine Emissions Inventory
resolves10.1029/95JD03793Model study indicating halogen activation and ozone destruction in polluted air masses transported to the sea
resolves10.5194/acp-6-3571-2006Importance of the surface reaction OH + Cl
<sup>−</sup>
on sea salt aerosol for the chemistry of the marine boundary layer – a model study
resolves10.1038/ngeo177High levels of nitryl chloride in the polluted subtropical marine boundary layer
resolves10.1039/b806613bEnhanced surface photochemistry in chloride–nitrate ion mixtures
resolves10.1021/es60098a004Response of commercial chemiluminescent nitric oxide-nitrogen dioxide analyzers to other nitrogen-containing compounds
resolves10.1016/S1352-2310(02)00125-5Molecular halogens before and during ozone depletion events in the Arctic at polar sunrise: concentrations and sources
resolves10.1021/jp9847179Equilibrium Partial Pressures, Thermodynamic Properties of Aqueous and Solid Phases, and Cl<sub>2</sub> Production from Aqueous HCl and HNO<sub>3</sub> and Their Mixtures
resolves10.1021/j100029a039A Thermodynamic Model of the System HCl-HNO3-H2SO4-H2O, Including Solubilities of HBr, from <200 to 328 K
resolves10.1029/1998GL900078Bromine activation in the troposphere by the dark reaction of O<sub>3</sub> with seawater ice
resolves10.1088/1748-9326/3/4/045007Release of gas-phase halogens from sodium halide substrates: heterogeneous oxidation of frozen solutions and desiccated salts by hydroxyl radicals
resolves10.1007/s10311-008-0176-8Suppression of inhibition of substrate photodegradation by scavengers of hydroxyl radicals: the solvent-cage effect of bromide on nitrate photolysis
resolves10.1021/j100344a021Kinetic study of the autocatalytic nitric acid-bromide reaction and its reverse, the nitrous acid-bromine reaction
resolves10.1021/ic00103a040Equilibrium, Kinetic, and UV-Spectral Characteristics of Aqueous Bromine Chloride, Bromine, and Chlorine Species
resolves10.1021/jp056426nNew Experimental and Theoretical Approach to the Heterogeneous Hydrolysis of NO<sub>2</sub>: Key Role of Molecular Nitric Acid and Its Complexes
resolves10.1021/jp001471aFTIR Studies of the Reaction of Gaseous NO with HNO<sub>3</sub> on Porous Glass: Implications for Conversion of HNO<sub>3</sub> to Photochemically Active NO<i><sub>x</sub></i> in the Atmosphere
resolves10.1021/jp012330rReaction of Gaseous Nitric Oxide with Nitric Acid on Silica Surfaces in the Presence of Water at Room Temperature
resolves10.1021/es020828gLaboratory Studies of Potential Mechanisms of Renoxification of Tropospheric Nitric Acid
resolves10.1021/jp205842wDoes Nitric Acid Dissociate at the Aqueous Solution Surface?
resolves10.1021/jp9908956Sum Frequency Generation of O−H Vibrations on the Surface of H<sub>2</sub>O/HNO<sub>3</sub>Solutions and Liquid HNO<sub>3</sub>
resolves10.1021/jp0686994Nonlinear Vibrational Spectroscopic Studies of the Adsorption and Speciation of Nitric Acid at the Vapor/Acid Solution Interface
resolves10.1021/jp808533yDepth-Dependent Dissociation of Nitric Acid at an Aqueous Surface: Car−Parrinello Molecular Dynamics
resolves10.1021/jp075054aTheoretical Study of the Dissociation of Nitric Acid at a Model Aqueous Surface
The 14 references without a DOI — listed, not checked
no DOI — not checkedref1/cit1
no DOI — not checkedref7/cit7
no DOI — not checkedThe CRC Handbook of Chemistry and Physics
no DOI — not checkedCulkin, F.,The Major Constituents of Seawater. In Chemical Oceanography, I: 121–61;Academic Press:London, 1965; p712.
no DOI — not checkedThe Origin of Nitrous and Nitric Acid in the Atmosphere
no DOI — not checkedref39/cit39
no DOI — not checkedref46/cit46
no DOI — not checkedSutton, H. C.; Adams, G. E.; Boag, J. W.; Michael, B. D.Pulse Radiolysis;Academic Press:London, 1965; pp61–81.
no DOI — not checkedref72/cit72
no DOI — not checkedref76/cit76
no DOI — not checkedref85/cit85
no DOI — not checkedref93/cit93
no DOI — not checkedPrinciples of Instrumental Analysis
no DOI — not checkedSander, S. P.; Friedl, R. R.; Ravishankara, A. R.; Golden, D. M.; Kolb, C. E.; Kurylo, M. J.; Molina, M. J.; Moortgat, G. K.; Finlayson-Pitts, B. J.; Wine, P. H.; Huie, R. E.; Orkin, V. L.,Chemical kinetics and photochemical data for use in atmospheric studies, Evaluation No. 15;JPL Publication 06-2, 2006.
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