Saarikoski J, Viluksela M
Ecotoxicol Environ Saf. 1982 Dec;6(6):501-12. doi: 10.1016/0147-6513(82)90032-x.
The 96-hr LC50 values of 21 substituted phenols for the guppy (Poecilia reticulata) were determined at pH levels 6-8 and related to the lipophilicity defined as log P from the 1-octanol/water system, and to the delta pKa value (pKa of phenol-pKa). Log P was the more important parameter and exhibited a good correlation with log(1/LC50) at pH levels. The contribution of delta pKa when introduced as a second parameter into the regression equation was dependent on the pH of water: at pH 6 it was positive but turned negative as the pH was raised to 8. If the LC50 values were corrected for ionization using an empirically formulated relation between toxicity and pH, the resulting regression equation could be used to predict the toxicity at any pH from 6 to 8. When corrected for ionization, log BCF (the bioconcentration factor) of 8 phenols was highly correlated with log P but not with delta pKa. The regression of log BCF on log P sufficed to explain the regression of toxicity on lipophilicity.
测定了21种取代酚在pH值为6 - 8时对孔雀鱼(Poecilia reticulata)的96小时半数致死浓度(LC50)值,并将其与由1-辛醇/水体系定义的亲脂性(以log P表示)以及δpKa值(苯酚的pKa - pKa)相关联。Log P是更重要的参数,并且在不同pH值下与log(1/LC50)呈现出良好的相关性。当将δpKa作为第二个参数引入回归方程时,其贡献取决于水体的pH值:在pH 6时为正,但随着pH值升高至8时变为负。如果使用根据毒性与pH的经验公式关系对LC50值进行电离校正,则所得的回归方程可用于预测6至8之间任何pH值下的毒性。当进行电离校正时,8种酚的log生物浓缩因子(BCF)与log P高度相关,但与δpKa无关。log BCF对log P的回归足以解释毒性对亲脂性的回归。