<compilation>
 <compilers>Pirketta Scharlin</compilers>
 <dataset>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>-1</exponent>
    <number>2.45e-01</number>
    <property>Molality (2)</property>
    <sigfigs>3</sigfigs>
    <significand>2.45</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>7.41e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>7.41</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.024e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.024</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>3.03e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>3.03</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>1</exponent>
    <number>4e+01</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>1</sigfigs>
    <significand>4</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>1</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>-1</exponent>
    <number>4.95e-01</number>
    <property>Molality (2)</property>
    <sigfigs>3</sigfigs>
    <significand>4.95</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>7.14e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>7.14</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.053e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.053</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.92e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.92</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>1</exponent>
    <number>8e+01</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>1</sigfigs>
    <significand>8</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>2</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>-1</exponent>
    <number>7.51e-01</number>
    <property>Molality (2)</property>
    <sigfigs>3</sigfigs>
    <significand>7.51</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>6.92e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>6.92</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.082e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.082</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.83e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.83</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>2</exponent>
    <number>1.2e+02</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>2</sigfigs>
    <significand>1.2</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>3</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>0</exponent>
    <number>1.014e+00</number>
    <property>Molality (2)</property>
    <sigfigs>4</sigfigs>
    <significand>1.014</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>6.92e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>6.92</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.111e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.111</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.83e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.83</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>2</exponent>
    <number>1.6e+02</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>2</sigfigs>
    <significand>1.6</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>4</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>0</exponent>
    <number>1.280e+00</number>
    <property>Molality (2)</property>
    <sigfigs>4</sigfigs>
    <significand>1.280</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>6.65e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>6.65</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.141e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.141</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.72e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.72</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>2</exponent>
    <number>2e+02</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>1</sigfigs>
    <significand>2</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>5</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>0</exponent>
    <number>1.563e+00</number>
    <property>Molality (2)</property>
    <sigfigs>4</sigfigs>
    <significand>1.563</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>6.58e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>6.58</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.165e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.165</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.69e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.69</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>2</exponent>
    <number>2.4e+02</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>2</sigfigs>
    <significand>2.4</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>6</pntnum>
   <supplemental></supplemental>
  </points>
  <points>
   <conditions>
    <exponent>2</exponent>
    <number>2.981e+02</number>
    <property>Ambient temperature</property>
    <sigfigs>4</sigfigs>
    <significand>2.981</significand>
    <unit>$\pu{K}$</unit>
   </conditions>
   <data>
    <exponent>0</exponent>
    <number>1.835e+00</number>
    <property>Molality (2)</property>
    <sigfigs>4</sigfigs>
    <significand>1.835</significand>
    <unit>mol/kg</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>6.53e-01</number>
    <property>Ostwald coefficient</property>
    <sigfigs>3</sigfigs>
    <significand>6.53</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>3</exponent>
    <number>1.199e+03</number>
    <property>Mass density</property>
    <sigfigs>4</sigfigs>
    <significand>1.199</significand>
    <unit>g/L</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.67e-02</number>
    <property>Amount concentration (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.67</significand>
    <unit>mol/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <data>
    <exponent>2</exponent>
    <number>2.8e+02</number>
    <property>Mass concentration (m/v) (1)</property>
    <sigfigs>2</sigfigs>
    <significand>2.8</significand>
    <unit>g/dm&lt;sup&gt;3&lt;/sup&gt;</unit>
   </data>
   <pntnum>7</pntnum>
   <supplemental></supplemental>
  </points>
  <series>1</series>
 </dataset>
 <keywords>Solubility, Solubility data series</keywords>
 <method>The apparatus is a combination of previous designs [1,2]. It was modified to achieve a more accurate determination of the volume of the absorbent liquid. The apparatus measures the volume of absorbed gas as the volume of mercury that must be supplied to the system in order to restore the initial pressure.&lt;br/&gt;The raw solubility data obtained are gas/ liquid volume ratios. A detailed description of apparatus, method and procedure is given in [3].</method>
 <publisher>The International Union of Pure and Applied Chemistry</publisher>
 <reference>
  <citation>Vázquez, G.; Chenlo, F.; Pereira, G.; Peaguda, J.; J. Chem. Eng. Data 1994, 39, 639.</citation>
  <pubtype>paper</pubtype>
  <url>https://doi.org/10.1021/je00016a002</url>
 </reference>
 <sources>
  <citation>Vázquez, G.; Chenlo, F.; Pereira, G.; Peaguda, J.; An. Quim. 1994, 90, 324-28.</citation>
  <pubtype>paper</pubtype>
 </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>Commercial, purity 99.5 mole%</sample>
 </substances>
 <substances>
  <casrn>7681-11-0</casrn>
  <constituent>2</constituent>
  <formula>KI</formula>
  <inchi>InChI=1S/HI.K/h1H;/q;+1/p-1</inchi>
  <inchikey>NLKNQRATVPKPDG-UHFFFAOYSA-M</inchikey>
  <molweight>166.003</molweight>
  <name>Potassium iodide</name>
  <sample>Merck. Grade not given.</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 Potassium iodide and Water</system>
 <title>Solubility data from IUPAC SDS Volume 62 (page ?) - Carbon dioxide with Potassium iodide and Water</title>
</compilation>