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Partitioning of HNO3and particulate nitrate over Tokyo: Effect of vertical mixing
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title
Partitioning of HNO3and particulate nitrate over Tokyo: Effect of vertical mixing
(English)
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author
Takuma Miyakawa
object named as
T. Miyakawa
series ordinal
8
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Nobuhiro Moteki
object named as
N. Moteki
series ordinal
9
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Douglas Worsnop
series ordinal
10
object named as
D. R. Worsnop
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author name string
Y. Morino
series ordinal
1
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Y. Kondo
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2
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N. Takegawa
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3
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Y. Miyazaki
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4
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K. Kita
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5
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Y. Komazaki
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6
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M. Fukuda
series ordinal
7
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language of work or name
English
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publication date
2006
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published in
Journal of Geophysical Research
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volume
111
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issue
D15
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cites work
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An Analysis of Four Models Predicting the Partitioning of Semivolatile Inorganic Aerosol Components
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The effect of metastable equilibrium states on the partitioning of nitrate between the gas and aerosol phases
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Performance of an aircraft instrument for the measurement of NOy
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Temporal variations of elemental carbon in Tokyo
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Partitioning of nitrate and ammonium between the gas and particulate phases during the 1997 IMADA-AVER study in Mexico City
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Variability in ammonium nitrate formation and nitric acid depletion with altitude and location over California
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Modeling the diurnal variation of nitrate during the Pittsburgh Air Quality Study
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Removal of NOxand NOyin Asian outflow plumes: Aircraft measurements over the western Pacific in January 2002
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Seasonal and diurnal variations of submicron organic aerosol in Tokyo observed using the Aerodyne aerosol mass spectrometer
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Effect of sulfate aerosol on tropospheric NOxand ozone budgets: Model simulations and TOPSE evidence
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The NH4+-NO3−-Cl−-SO42−-H2O aerosol system and its gas phase precursors at a pasture site in the Amazon Basin: How relevant are mineral cations and soluble organic acids?
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Mass and Thermal Accommodation during Gas-Liquid Condensation of Water
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Temperature dependence of the uptake coefficients of nitric acid, hydrochloric acid and nitrogen oxide (N2O5) by water droplets
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Identifiers
DOI
10.1029/2005JD006887
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ADS bibcode
2006JGRD..11115215M
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