Department of Environmental Sciences, College of the Coast and Environment, Louisiana State University, Baton Rouge, Louisiana, USA.
Environ Toxicol Chem. 2017 Sep;36(9):2274-2280. doi: 10.1002/etc.3784. Epub 2017 Apr 4.
Salinity has been reported to influence the water solubility of organic chemicals entering marine ecosystems. However, limited data are available on salinity impacts for chemicals potentially entering seawater. Impacts on water solubility would correspondingly impact chemical sorption as well as overall bioavailability and exposure estimates used in the regulatory assessment. The pesticides atrazine, fipronil, bifenthrin, and cypermethrin, as well as the crude oil constituent dibenzothiophene together with 3 of its alkyl derivatives, all have different polarities and were selected as model compounds to demonstrate the impact of salinity on their solubility and partitioning behavior. The n-octanol/water partition coefficient (K ) was measured in both distilled-deionized water and artificial seawater (3.2%). All compounds had diminished solubility and increased K values in artificial seawater compared with distilled-deionized water. A linear correlation curve estimated salinity may increase the log K value by 2.6%/1 log unit increase in distilled water (R = 0.97). Salinity appears to generally decrease the water solubility and increase the partitioning potential. Environmental fate estimates based on these parameters indicate elevated chemical sorption to sediment, overall bioavailability, and toxicity in artificial seawater. These dramatic differences suggest that salinity should be taken into account when exposure estimates are made for marine organisms. Environ Toxicol Chem 2017;36:2274-2280. © 2017 SETAC.
盐度被报道会影响进入海洋生态系统的有机化学品的水溶性。然而,对于可能进入海水的化学品,关于盐度影响的数据有限。对水溶性的影响相应地会影响化学物质的吸附以及在监管评估中使用的总体生物有效性和暴露估计。莠去津、氟虫腈、联苯菊酯和氯菊酯等农药以及原油成分二苯并噻吩及其 3 种烷基衍生物,都具有不同的极性,被选为模型化合物,以证明盐度对它们的溶解度和分配行为的影响。在蒸馏水和人工海水中(3.2%)都测量了正辛醇/水分配系数(K )。与蒸馏水相比,所有化合物在人工海水中的溶解度降低,K 值增加。一条估计盐度的线性相关曲线表明,在蒸馏水中,盐度每增加 1 个对数单位,log K 值可能增加 2.6%(R = 0.97)。盐度似乎普遍降低了水的溶解度,增加了分配潜力。基于这些参数的环境归宿估计表明,在人工海水中,化学物质对沉积物的吸附、总体生物有效性和毒性增加。这些显著差异表明,在对海洋生物进行暴露估计时,应考虑盐度。Environ Toxicol Chem 2017;36:2274-2280. © 2017 SETAC.