Title of article :
Solubility of volatile organic compounds in aqueous ammonia solution
Author/Authors :
Mikl?s G?rgényi، نويسنده , , Jo Dewulf، نويسنده , , Herman Van Langenhove، نويسنده , , Zolt?n Kir?ly، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2005
Abstract :
The Ostwald solubility coefficient, L of 17 volatile organic compounds (VOCs) from the gas phase into water and dilute aqueous ammonia solutions was determined by the equilibrium partitioning in closed system-solid phase micro extraction (EPICS-SPME) method at 303 K and at 0–2.5 mol dm−3 ammonia concentrations. Ammonia increased the solubility of all VOCs nearly linearly, but to a different extent. The difference in the solubility values in aqueous ammonia solutions (Lmix) compared to pure water (L) is explained on the basis of a Linear Solvation Energy Relationship (LSER) equation made applicable for solvent mixtures, image. sNH3-sH2O,aNH3-aH2O,bNH3-bH2O,vNH3-vH2O are the differences of solvent parameters, x is the mole fraction, image is the solute dipolarity–polarizability, image is the effective hydrogen bond acidity of the solute, image is the effective hydrogen bond basicity of the solute and Vx, the McGowan characteristic volume. The most significant term was v, the phase hydrophobicity. The solubility behavior was explained by the change in structure of the aqueous solution: the presence of ammonia reduces the cavity effect.
Keywords :
LSER , VOC , solubility , water , Aqueous ammonia
Journal title :
Chemosphere
Journal title :
Chemosphere