<compilation>
 <compilers>Pirketta Scharlin</compilers>
 <dataset>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.9815e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
    <significand>2.9815</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
    <exponent>0</exponent>
    <number>0e+00</number>
    <property>Amount concentration (2)</property>
    <sigfigs>0</sigfigs>
    <significand>0</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </conditions>
   <data>
    <exponent>-1</exponent>
    <number>8.290e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>4</sigfigs>
    <significand>8.290</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>7.595e-01</number>
    <property>Bunsen Coefficient</property>
    <sigfigs>4</sigfigs>
    <significand>7.595</significand>
    <unit>$\pu{cm3(g) cm-3(l) atm-1}$</unit>
   </data>
   <pntnum>1</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.9815e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>5</sigfigs>
    <significand>2.9815</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <conditions>
    <exponent>0</exponent>
    <number>1.482e+00</number>
    <property>Amount concentration (2)</property>
    <sigfigs>4</sigfigs>
    <significand>1.482</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </conditions>
   <data>
    <exponent>-1</exponent>
    <number>8.634e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>4</sigfigs>
    <significand>8.634</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>7.910e-01</number>
    <property>Bunsen Coefficient</property>
    <sigfigs>4</sigfigs>
    <significand>7.910</significand>
    <unit>$\pu{cm3(g) cm-3(l) atm-1}$</unit>
   </data>
   <pntnum>2</pntnum>
   <supplemental></supplemental>
  </points>
  <series>1</series>
 </dataset>
 <keywords>Solubility, Solubility data series</keywords>
 <method>Solution was made up by weight. Concentration of solution was verified by measuring the density. (Density was not reported in the paper.) A measured volume of gas was brought into contact with a measured quantity of gas-free solvent. Equilibrium was established by agitation using a magnetic stirrer. The volume of remaining gas was measured. The amount of gas absorbed was estimated from change in volume of gas. Details in original paper.</method>
 <publisher>The International Union of Pure and Applied Chemistry</publisher>
 <sources>
  <citation>Onda, K.; Sada, E.; Kobayashi, T.; Kito, S.; Ito, K.; J. Chem. Eng. Jpn. 1970, 3, 18-24.</citation>
  <pubtype>paper</pubtype>
  <url>https://doi.org/10.1252/jcej.3.18</url>
 </sources>
 <substances>
  <casrn>124-38-9</casrn>
  <constituent>1</constituent>
  <formula>CO2</formula>
  <inchi>InChI=1S/CO2/c2-1-3</inchi>
  <inchikey>CURLTUGMZLYLDI-UHFFFAOYSA-N</inchikey>
  <molweight>44.0095</molweight>
  <name>Carbon dioxide</name>
  <sample>From commercial cylinder. Purity 99.8%.</sample>
 </substances>
 <substances>
  <casrn>7697-37-2</casrn>
  <constituent>2</constituent>
  <formula>HNO3</formula>
  <inchi>InChI=1S/HNO3/c2-1(3)4/h(H,2,3,4)</inchi>
  <inchikey>GRYLNZFGIOXLOG-UHFFFAOYSA-N</inchikey>
  <molweight>63.0128</molweight>
  <name>Nitric acid</name>
  <sample>Analytical grade.</sample>
 </substances>
 <substances>
  <casrn>7732-18-5</casrn>
  <constituent>3</constituent>
  <formula>H2O</formula>
  <inchi>InChI=1S/H2O/h1H2</inchi>
  <inchikey>XLYOFNOQVPJJNP-UHFFFAOYSA-N</inchikey>
  <molweight>18.0153</molweight>
  <name>Water</name>
  <sample>Distilled and degassed.</sample>
 </substances>
 <system>Carbon dioxide with Nitric acid and Water</system>
 <title>Solubility data from IUPAC SDS Volume 62 (page ?) - Carbon dioxide with Nitric acid and Water</title>
</compilation>