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通过测量的气相转移系数来确定低挥发性化合物的亨利定律常数。

Determination of the Henry's law constants of low-volatility compounds via the measured air-phase transfer coefficients.

机构信息

Department of Environmental Engineering, Chung Yuan Christian University, Chung-Li 32023, Taiwan.

Graduate Institute of Environmental Engineering, National Central University, Chung-Li 32001, Taiwan.

出版信息

Water Res. 2017 Sep 1;120:238-244. doi: 10.1016/j.watres.2017.04.074. Epub 2017 May 1.

Abstract

Accurate Henry's law constants (H) are unavailable for the majority of organic pollutants, especially those having a low volatility. A novel kinetics-based experimental method is introduced to determine H for a wide range of low-H compounds. The method consists of measuring independently the water-to-air transfer coefficient (K) and the associated air-phase transfer coefficient (k) of a low-H chemical (solute) in water when K ≅ kH prevails according to the two-film theory. The k for a solute is obtained via a developed gas-dynamic equation that relates k to the solute molecular weight and the solute-vapor escaping efficiency (β) through a boundary air layer. The value of β is only a function of the in situ air turbulence level, independent of the chemical species. Thus, the required β for solutes can be estimated from the evaporative rates of pure volatile liquids under the same ambient setting. By relating the estimated k with the measured K of a low-H solute, the solute H is established. The H values of 45 low-H chemicals, including many complex pesticides, in the range of ∼10 to ∼10 have thus been determined. The accountability of the method is underscored by the consistency of the measured and credible literature H values for a number of the low-H compounds studied.

摘要

准确的亨利定律常数(H)对于大多数有机污染物,尤其是那些挥发性较低的污染物,是无法获得的。本文介绍了一种新的基于动力学的实验方法,用于确定广泛的低 H 化合物的 H。该方法包括根据双膜理论,当 K ≅ kH 占主导地位时,独立测量低 H 化学物质(溶质)在水中的水-气转移系数(K)和相关的气相转移系数(k)。通过发展一种气体动力学方程,将 k 与溶质分子量和溶质蒸汽逸出效率(β)相关联,从而获得溶质的 k。β 值仅取决于当地空气湍流水平,与化学物质无关。因此,对于溶质,可以根据相同环境条件下纯挥发性液体的蒸发速率来估算所需的β。通过将估算的 k 与低 H 溶质的测量 K 相关联,可以确定溶质的 H。因此,已经确定了 45 种低 H 化学品的 H 值,包括许多复杂的农药,范围约为 10 到 10。对于研究的一些低 H 化合物,该方法的可追溯性是通过测量值和可靠文献值的一致性来强调的。

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