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Effective Elimination and Biodegradation of Polycyclic Aromatic Hydrocarbons from Seawater through the Formation of Magnetic Microfibres

机译:通过磁性微纤维形成从海水中的多环芳烃的有效消除和生物降解

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摘要

Supramolecular aggregates formed between polycyclic aromatic hydrocarbons and either naphthalene or perylene-derived diimides have been anchored in magnetite magnetic nanoparticles. The high affinity and stability of these aggregates allow them to capture and confine these extremely carcinogenic contaminants in a reduced space. In some cases, the high cohesion of these aggregates leads to the formation of magnetic microfibres of several microns in length, which can be isolated from the solution by the direct action of a magnet. Here we show a practical application of bioremediation aimed at the environmental decontamination of naphthalene, a very profuse contaminant, based on the uptake, sequestration, and acceleration of the biodegradation of the formed supramolecular aggregate, by the direct action of a bacterium of the lineage Roseobacter (biocompatible with nanostructured receptors and very widespread in marine environments) without providing more toxicity to the environment.
机译:在多环芳烃和萘或萘或丙氨酸衍生的二酰亚胺之间形成的超分子聚集体已锚固在磁铁矿磁性纳米粒子中。这些聚集体的高亲和力和稳定性允许它们捕获并限制这些极其致癌污染物在降低的空间中。在一些情况下,这些聚集体的高凝聚力导致形成几微米的磁性微纤维的长度,其可以通过磁体的直接作用从溶液中分离。在这里,我们展示了旨在对萘对萘的环境净化的生物修复的实际应用,基于所形成的超分子聚集体的生物降解的摄取,螯合和加速度,通过谱系的直接作用(与纳米结构受体中的生物相容,在海洋环境中非常普遍),而不为环境提供更多毒性。

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