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Binding Of Polycyclic Aromatic Hydrocarbons By Humic Acids Formed During Composting

机译:堆肥过程中形成的腐殖酸与多环芳烃结合

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Binding of two model polycyclic aromatic hydrocarbons (PAHs), phenanthrene and pyrene, by humic acids (HAs) isolated from an organic substrate at different stages of composting and a soil was investigated using a batch fluorescence quenching method and the modified Freundlich model. With respect to soil HA, the organic substrate HA fractions were characterized by larger binding affinities for both phenanthrene and pyrene. Further, isotherm deviation from linearity was larger for soil HA than for organic substrate HAs, indicating a larger heterogeneity of binding sites in the former. The composting process decreased the binding affinity and increased the heterogeneity of binding sites of HAs. The changes undergone by the HA fraction during composting may be expected to contribute to facilitate microbial accessibility to PAHs. The results obtained also suggest that bioremediation of PAH-contami-nated soils with matured compost, rather than with fresh organic amendments, may result in faster and more effective cleanup.
机译:使用分批荧光猝灭法和改进的Freundlich模型研究了在堆肥和土壤不同阶段从有机底物中分离的腐殖酸(HAs)与两种模型多环芳烃(PAHs)菲和pyr的结合。对于土壤HA,有机底物HA级分的特征是对菲和pyr的结合亲和力更大。此外,土壤HA的线性等温线偏离比有机底物HA更大,表明前者中结合位点的异质性更大。堆肥过程降低了结合亲和力,增加了HA结合位点的异质性。堆肥过程中HA组分所经历的变化可能有助于促进微生物对PAHs的可及性。获得的结果还表明,用成熟的堆肥而不是用新鲜的有机改良剂对PAH污染的土壤进行生物修复可能会导致更快,更有效的清除。

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