Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou, 730000, China; University of Chinese Academy of Sciences, Beijing, 100049, China.
Key Laboratory of Preclinical Study for New Drugs of Gansu Province, Institute of Physiology, School of Basic Medical Sciences, Lanzhou University, Lanzhou, 730000, China.
Chemosphere. 2022 Feb;288(Pt 1):132497. doi: 10.1016/j.chemosphere.2021.132497. Epub 2021 Oct 6.
The regulation effect of Aspergillus niger to the sorption behavior of U(VI) on kaolinite and illite was studied through investigating the enrichment of U(VI) on kaolinite-Aspergillus niger and illite-Aspergillus niger composites. Kaolinite- or illite-A. niger composites were prepared through co-culturation method. Results showed that U(VI) sorption on kaolinite and illite in different pH ranges could be attributed to ion exchange, outer-sphere complexes (OSCs), and inner-sphere complexes (ISCs), while only the ISCs on the bio-composites. Moreover, micro-spectroscopy tests revealed that U(VI) coordinate with phosphate, amide, and carboxyl groups on illite- and kaolinite- A. niger composites. X-ray photoelectron spectroscopy (XPS) further found that U(VI) was partly reduced to non-crystalline U(IV) by A. niger in the bio-composites, occurring as phosphate coordination polymers or biomass-associated monomers. The findings herein provide further insight into the immobilization and migration of uranium in environments.
通过研究 U(VI)在高岭石-黑曲霉和伊利石-黑曲霉复合材料上的富集来研究黑曲霉对 U(VI)在高岭石和伊利石上吸附行为的调节作用。采用共培养法制备了高岭石-或伊利石-黑曲霉复合材料。结果表明,不同 pH 值范围内高岭石和伊利石对 U(VI)的吸附可以归因于离子交换、外配位络合物(OSCs)和内配位络合物(ISCs),而仅在生物复合材料上存在 ISCs。此外,微观光谱测试表明,U(VI)与伊利石和高岭石-黑曲霉复合材料上的磷酸根、酰胺和羧基基团配位。X 射线光电子能谱(XPS)进一步发现,黑曲霉在生物复合材料中将部分 U(VI)还原为非晶态 U(IV),形成磷酸根配位聚合物或与生物质相关的单体。本研究结果为铀在环境中的固定和迁移提供了更深入的认识。