水浮莲
环境化学
氚
微观世界
Stratiotes公司
水生植物
铜绿微囊藻
污染
废水
水生生态系统
蓝藻
鱼腥藻
生物
环境科学
化学
生态学
水生植物
环境工程
细菌
核物理学
物理
遗传学
作者
Jin-long Lai,Zhanguo Li,Mengwei Han,Huang Yan,Hai-ling Xi,Xuegang Luo
出处
期刊:Water Research
[Elsevier]
日期:2024-02-01
卷期号:250: 121013-121013
被引量:1
标识
DOI:10.1016/j.watres.2023.121013
摘要
The ecological risk of tritiated wastewater into the environment has attracted much attention. Assessing the ecological risk of tritium-containing pollution is crucial by studying low-activity tritium exposure's environmental and biological effects on freshwater micro-environment and the enrichment potential of organically bound tritium (OBT) in microalgae and aquatic plants. The impact of tritium-contaminated wastewater on the microenvironment of freshwater systems was analyzed using microcosm experiments to simulate tritium pollution in freshwater systems. Low activity tritium pollution (105 Bq/L) induced differences in microbial abundance, with Proteobacteria, Bacteroidota, and Desulfobacterota occupying important ecological niches in the water system. Low activity tritium (105–107 Bq/L) did not affect the growth of microalgae and aquatic plants, but OBT was significantly enriched in microalgae and two aquatic plants (Pistia stratiotes, Spirodela polyrrhiza), with the enrichment coefficients of 2.08–3.39 and 1.71–2.13, respectively. At the transcriptional level, low-activity tritium (105 Bq/L) has the risk of interfering with gene expression in aquatic plants. Four dominant cyanobacterial strains (Leptolyngbya sp., Synechococcus elongatus, Nostoc sp., and Anabaena sp.) were isolated and demonstrated good environmental adaptability to tritium pollution. Environmental factors can modify the tritium accumulation potential in cyanobacteria and microalgae, theoretically enhancing food chain transfer.
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