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多种有机化合物的气液分配系数:在水和十六烷中的亨利定律常数。

Air-liquid partition coefficient for a diverse set of organic compounds: Henry's Law Constant in water and hexadecane.

作者信息

Hilal Said H, Ayyampalayam Saravanaraj N, Carreira Lionel A

机构信息

Ecosystems Research Division, National Exposure Research Laboratory, U.S. Environmental Protection Agency, 960 College Station Road, Athens, Georgia 30605, USA.

出版信息

Environ Sci Technol. 2008 Dec 15;42(24):9231-6. doi: 10.1021/es8005783.

Abstract

The SPARC vapor pressure and activity coefficient models were coupled to successfully estimate Henry's Law Constant (HLC) in water and in hexadecane for a wide range of organic compounds without modification to, or additional parametrization of, either SPARC model. The vapor pressure model quantifies the solute-solute intermolecular interactions in the pure liquid phase, whereas the activity coefficient model quantifies the solute-solvent and solvent-solvent (in addition to the solute-solute) interactions upon placing solute, i, in solvent, j. These intermolecular interactions are factored into dispersion, induction, dipole-dipole, and H-bonding components upon moving a solute molecule from the gas to the liquid phase. The SPARC HLC calculator so produced was tested and validated on the largest experimental HLC data set to date: 1356 organic solutes, spanning a wide range of functional groups, dipolarities and H-bonding capabilities, such as PAHs, PCBs,VOCs, amides, pesticides, and pharmaceuticals. The rms deviation errors for the calculated versus experimental log HLCs for 1222 compounds in water and 563 in hexadecane were 0.456 and 0.192 log [(mol/L)/(mol/L)] units, respectively, spanning a range of more than 13 and 20 log HLC dimensionless units for the compounds in water and hexadecane, respectively. The SPARC calculator web version is available for public use, free of charge, and can be accessed at http://sparc.chem.uga.edu.

摘要

SPARC蒸气压和活度系数模型相结合,成功地估算了多种有机化合物在水和十六烷中的亨利定律常数(HLC),且无需对任何一个SPARC模型进行修改或额外参数化。蒸气压模型量化了纯液相中溶质-溶质分子间的相互作用,而活度系数模型则量化了将溶质i置于溶剂j中时溶质-溶剂和溶剂-溶剂(除溶质-溶质外)的相互作用。当溶质分子从气相转移到液相时,这些分子间相互作用被分解为色散、诱导、偶极-偶极和氢键成分。由此产生的SPARC HLC计算器在迄今为止最大的实验HLC数据集上进行了测试和验证:1356种有机溶质,涵盖了广泛的官能团、偶极性质和氢键能力,如多环芳烃、多氯联苯、挥发性有机化合物、酰胺、农药和药物。水中1222种化合物和十六烷中563种化合物的计算log HLC与实验log HLC的均方根偏差误差分别为0.456和0.192 log [(mol/L)/(mol/L)]单位,水中化合物的log HLC无量纲单位范围超过13,十六烷中化合物的log HLC无量纲单位范围超过20。SPARC计算器网络版可供公众免费使用,可通过http://sparc.chem.uga.edu访问。

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