<compilation>
 <compilers>Gabor Jancso</compilers>
 <dataset>
  <points>
   <conditions>
    <exponent>1</exponent>
    <number>2.5e+01</number>
    <property>Ambient temperature</property>
    <sigfigs>2</sigfigs>
    <significand>2.5</significand>
    <unit>&amp;deg;C</unit>
   </conditions>
   <data>
    <exponent>-3</exponent>
    <number>2.460e-03</number>
    <property>Mole fraction - Liquid (1)</property>
    <sigfigs>4</sigfigs>
    <significand>2.460</significand>
    <unit>1</unit>
   </data>
   <data>
    <exponent>-1</exponent>
    <number>4.386e-01</number>
    <property>Relative mass - solution (1)</property>
    <sigfigs>4</sigfigs>
    <significand>4.386</significand>
    <unit>g/kg</unit>
   </data>
   <data>
    <exponent>-2</exponent>
    <number>2.19e-02</number>
    <property>Molality (1)</property>
    <sigfigs>3</sigfigs>
    <significand>2.19</significand>
    <unit>mol/kg</unit>
   </data>
   <pntnum>1</pntnum>
   <supplemental></supplemental>
  </points>
  <series>1</series>
 </dataset>
 <keywords>Solubility, Solubility data series</keywords>
 <method>Between 25 and 100 mL of chlorobenzene and 1 to 2 mL $\ce{D2O}$ were introduced into a flask and shaken for about 90 min. The water bath temperature was maintained within ±0.05 °C. Then, a sample was taken and the dissolved $\ce{D2O}$ content was determined by a modified Karl Fischer titration as described in [1]. The original report was unavailable, but the method and the results have been described in sufficient detail in [1]. The solubility of $\ce{H2O}$ in chlorobenzene was also determined and found to be 0.00250 ± 0.00003 mol $\ce{H2O}$/ 100 g solution from three separate experiments.</method>
 <publisher>The International Union of Pure and Applied Chemistry</publisher>
 <reference>
  <citation>Eidinoff, M. L. In "Production of Heavy Water", National Nuclear Energy Series Division III-Vol. 4F, Murphy, G. M.; Urey, H. C.; Kirshenbaum, I.; Eds.; McGraw-Hill: New York, 1955; Part II, Chapter 7, pp 129-44.</citation>
  <pubtype>chapter</pubtype>
 </reference>
 <sources>
  <citation>Hutchinson, C. A.; Lyon, A. M.; Columbia University Report A-745, July 1, 1943.</citation>
  <pubtype>report</pubtype>
 </sources>
 <substances>
  <casrn>108-90-7</casrn>
  <constituent>1</constituent>
  <formula>C6H5C1</formula>
  <inchi>InChI=1S/C6H5Cl/c7-6-4-2-1-3-5-6/h1-5H</inchi>
  <inchikey>MVPPADPHJFYWMZ-UHFFFAOYSA-N</inchikey>
  <molweight>112.557</molweight>
  <name>Chlorobenzene</name>
  <sample>Chlorobenzene was carefully purified and dried before use. Source and method not given.</sample>
 </substances>
 <substances>
  <casrn>7732-18-5</casrn>
  <constituent>2</constituent>
  <formula>H2O</formula>
  <inchi>InChI=1S/H2O/h1H2</inchi>
  <inchikey>XLYOFNOQVPJJNP-UHFFFAOYSA-N</inchikey>
  <molweight>18.0153</molweight>
  <name>Water</name>
  <sample>Source not specified.</sample>
 </substances>
 <system>Chlorobenzene with Water</system>
 <title>Solubility data from IUPAC SDS Volume 20 (page 182) - Chlorobenzene with Water</title>
</compilation>