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The aqueous solubility of trichloroethene (TCE) and tetrachloroethene (PCE) as a function of temperature

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APPLIED GEOCHEMISTRY
卷 15, 期 4, 页码 501-512

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PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/S0883-2927(99)00058-X

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Using a flexible Au bag autoclave and a precision high-pressure liquid chromatography pump to control pressure, the liquid-liquid aqueous solubilities of TCE and PCE were measured as a Function of temperature from 294 to 434 K (at constant pressure). The results were used to calculate the partial molal thermodynamic quantities of the organic liquid aqueous dissolution reactions: Delta (G) over bar(soln), Delta (H) over bar(soln) and Delta (C) over bar (soln). Calculated values for these quantities at 298 K for TCE are: Delta (G) over bar(soln) = 11.282 (+/-0.003) kJ/mol, Delta (H) over bar(soln) = -3.35 (+/-0.07) kJ/mol, Delta (S) over bar = -49.07 (+/-0.24) J/mol K, and Delta (C) over bar(soln) = 385.2 (+/-3.4) J/mol K. Calculated values for these quantities at 298 K for PCE are: Delta (G) over bar(soln) =15.80 (+/-0.04) kJ/mol, Delta (H) over bar(soln) = -1.79 (+/-0.58) kJ/mol, Delta (S) over bar(soln) = -59.00 (+/-1.96) J/mol K and Delta (C) over bar(p soln) = 354.6 (+/-8.6) J/mol K. These thermodynamic quantities may be used to calculate the solubility of TCE and PCE at any temperature of interest. In the absence of direct measurements over this temperature range, the Henry's Law constants for TCE and PCE have been estimated using the measured aqueous solubilities and calculated vapor pressures. (C) 2000 Published by Elsevier Science Ltd. All rights reserved.

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