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The role of sediment resuspension duration in release of PAHs

机译:沉积物重悬时间在多环芳烃释放中的作用

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摘要

Polycyclic aromatic hydrocarbons (PAHs) are ubiquitous environmental pollutants. Due to their low water solubility and high hydrophobicity, PAHs are rapidly sorbed onto particles and subsequently deposit in sediments once introduced into aquatic environment. In such a way, sediments become a huge sink for PAHs. During sediment resuspension, the potential exists for PAHs to be released from sediments into water. Sediment resuspension plays an important role in the transportation and fate of PAHs in the aquatic environment. In this study, release behavior of PAHs on Yangtze River sediment during resuspension was investigated using a particle entrainment simulator (PES). The role of resuspension duration on release of 16 PAHs was measured by resuspending sediment for 12 h at 0.2 and 0.5 N/m(2), respectively. Results indicated that PAH concentrations in TSS increase over time with more increase of phenanthrene and 4-ring PAHs. Comparing with 0.2 N/m(2) (30%), Sigma PAHs concentrations in TSS demonstrated remarkable increase during 0.5 N/m(2) resuspension (37%). Dissolved PAH concentrations increased throughout the duration with more increase of 2-3 ring PAHs (50%-88%). Dissolved PAH concentrations showed remarkable increase during 0.5 N/m(2) resuspension (50%). Moreover, PAH concentrations in overlying water throughout the duration of resuspension were higher than toxic effects threshold values in drinking water developed by WHO, which may cause toxic effect on ecosystem.
机译:多环芳烃(PAHs)是普遍存在的环境污染物。由于它们的低水溶性和高疏水性,PAHs迅速吸附到颗粒上,一旦引入水生环境,便会沉积在沉积物中。这样,沉积物成为PAHs的巨大汇。在沉积物重悬期间,PAHs有可能从沉积物中释放到水中。沉积物的重新悬浮在水生环境中多环芳烃的运输和命运中起着重要作用。在这项研究中,使用颗粒夹带模拟器(PES)研究了重悬浮过程中PAHs在长江沉积物上的释放行为。通过分别以0.2 N / m和0.5 N / m(2)悬浮沉淀物12 h来测量悬浮持续时间对释放16 PAHs的作用。结果表明,TSS中的PAH浓度随时间增加,同时菲和4环PAHs增加更多。与0.2 N / m(2)(30%)相比,TSS中的Sigma PAHs浓度在重新悬浮0.5 N / m(2)(37%)时显示出显着增加。在整个过程中,溶解的PAH浓度随着2-3个环PAH的增加而增加(50%-88%)。溶解的PAH浓度在0.5 N / m(2)重悬期间显示出显着增加(50%)。此外,整个悬浮过程中上覆水中的PAH浓度都高于WHO制定的饮用水中的毒性作用阈值,这可能对生态系统造成毒性作用。

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