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首页> 外文期刊>Environmental Science and Pollution Research >Amplified solubilization effects of inherent dissolved organic matter releasing from less-humified sediment on phenanthrene sorption
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Amplified solubilization effects of inherent dissolved organic matter releasing from less-humified sediment on phenanthrene sorption

机译:较少腐泥沉积物释放的固有溶解有机物对菲吸附的增溶作用

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摘要

Soil/sediment organic matter (SOM) releasing with inherent dissolved organic matter (DOM) formed in solution was confirmed both in rhizosphere sediment (S) and uncultivated sediment (P) water systems, and correlations between SOM characteristics subject to sediment's humification degree and its releasing effects on phenanthrene sorption were emphasized. The sequential SOM releasing evidenced by fluorescence and H-1-NMR profiles coupled with aqueous DOM solubilization was found to make sorption kinetics atypical and sorption capacity reduced, by comparing sorption results among sediments of different pretreatments. More importantly, the tested S was proved less humified with inherent DOM rich in microbial sources than P, and DOM affinity to phenanthrene was thus weakened (K-doc values of 2.02-3.63 x 10(4) L kg(-1)), while the inhibitive effects of SOM releasing on sorption were strengthened, ascribing to the enlarged alterations of sediment characters, and particularly the amplified solubilization effects resulted from the larger proportion of soluble SOM and lower critical micelle concentration (5.66 mg L-1) of DOM. Moreover, relative contribution of DOM solubilization to the releasing effects enhanced from 0.67 for P to 0.78 for S relative to alterations of sediment characters. Consequently, mobility and exposure risk of polycyclic aromatic hydrocarbons would be enhanced in a plant-soil/sediment-water system.
机译:在根际沉积物(S)和非耕作沉积物(P)的水系统中都证实了溶液中形成的土壤/沉积物有机物(SOM)与固有溶解性有机物(DOM)一起释放,并且受沉积物的腐化度影响的SOM特征与其之间的相关性强调了对菲吸附的释放作用。通过比较不同预处理沉积物之间的吸附结果,发现荧光和H-1-NMR谱结合水相DOM增溶证明SOM连续释放,使吸附动力学非典型,吸附能力降低。更重要的是,事实证明,与富含磷源的微生物相比,富含微生物来源的固有DOM对腐殖质的抑制作用要弱于磷,因此DOM对菲的亲和力会减弱(K-doc值2.02-3.63 x 10(4)L kg(-1))而SOM释放对吸附的抑制作用增强,归因于沉积物特征的变化,尤其是溶解性SOM的比例更大和DOM的临界胶束浓度较低(5.66 mg L-1)导致了增溶作用的增强。而且,相对于沉积物特征的变化,DOM增溶对释放作用的相对贡献从P的0.67增加到S的0.78。因此,在植物-土壤/沉积物-水系统中,多环芳烃的流动性和暴露风险将得到提高。

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