{"compilation": {"title": "Solubility data from IUPAC SDS Volume 60 (page ?) - Tetrachloromethane with Water", "publisher": "The International Union of Pure and Applied Chemistry", "keywords": "Solubility, Solubility data series", "compilers": "Ari L. Horvath", "sources": [{"citation": "Munz, C. D.; Ph.D. Dissertation, Stanford University, Stanford, CA 1985, 306 pp.", "pubtype": "thesis"}], "system": "Tetrachloromethane with Water", "substances": [{"constituent": 2, "name": "Water", "formula": "H2O", "molweight": 18.0153, "casrn": "7732-18-5", "inchi": "InChI=1S/H2O/h1H2", "inchikey": "XLYOFNOQVPJJNP-UHFFFAOYSA-N", "sample": "0.25 mg total organic carbon per liter and 0.75 mg COD per liter."}, {"constituent": 1, "name": "Tetrachloromethane", "formula": "CCl4", "molweight": 153.823, "casrn": "56-23-5", "inchi": "InChI=1S/CCl4/c2-1(3,4)5", "inchikey": "VZGDMQKNWNREIO-UHFFFAOYSA-N", "sample": "Aldrich Chemicals Co., WI, > 99.5% pure."}], "method": "The multiple equilibrium technique with direct aqueous injection into a gas chromatograph was used to determine the dimensionless Henry's law constant. A known volume of liquid and gas was introduced into a syringe and allowed to equilibrate. The ratio of gas to liquid volume was maintained constant. While vapor samples were injected direct into a gas chromatograph, the liquid samples were pre-concentrated by liquid-liquid extraction before analysis. The experiments were carried out in duplicates.", "dataset": [{"series": 1, "points": [{"pntnum": 1, "conditions": [{"property": "Ambient temperature", "number": "2.0e+01", "significand": "2.0", "exponent": "1", "sigfigs": "2", "unit": "&deg;C"}], "data": [], "supplemental": [{"property": "Percent mass fraction (1)", "number": "7.80e-02", "significand": "7.80", "exponent": "-2", "sigfigs": "3", "unit": "1"}, {"property": "Mole fraction - Liquid (1)", "number": "9.145e-05", "significand": "9.145", "exponent": "-5", "sigfigs": "4", "unit": "1"}, {"property": "Henry's Law Solubility Coefficient", "number": "9.80e-01", "significand": "9.80", "exponent": "-1", "sigfigs": "3", "unit": "m<sup>3</sup> atm mol<sup>-1</sup>"}]}]}]}}