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环境因素对淡水微藻挥发亚硒酸盐的影响。

Effects of environmental factors on selenite volatilization by freshwater microalgae.

作者信息

Zhang Gaoxiang, Chen Xiaoling, Li Feili, Que Weiyan, Qian Junjie, Fang Jingjing, Ding Tianzheng

机构信息

College of Environment, Zhejiang University of Technology, Hangzhou 310032, China.

College of Environment, Zhejiang University of Technology, Hangzhou 310032, China.

出版信息

Sci Total Environ. 2023 Jan 1;854:158539. doi: 10.1016/j.scitotenv.2022.158539. Epub 2022 Sep 6.

DOI:10.1016/j.scitotenv.2022.158539
PMID:36075407
Abstract

The accumulation and volatilization of Se by algae in surface water are important parts of the biogeochemical cycle of selenium but are also variable and complex. Experiments with 5-8 day of exposure under various temperatures, solution pH values, lighting regimes, and different initial Se concentrations were carried out to study the change in Se accumulation and volatilization behavior of algae. The study showed that algae accumulated and volatilized more Se under harsher environments, such as a lower pH, a shorter lighting time, and a higher Se load. The maximum average daily volatilization rate of Se was 234 ± 23 μg Se (g algae·d), much greater than the values of previous studies. Therefore, in some Se-polluted water environments, when the pH of lakes is acidic, Se emissions to the atmosphere are much higher than currently estimated. Both the accumulation rate (R) and volatilization rate (R) of Se by algae were significantly negatively correlated with final pH, final OD, and residual Se in solution (C). Moreover, multiple linear regression equations were used to estimate the rates of Se accumulation and volatilization. This study provides theoretical basis data to quantify the contribution of selenium metabolism by algae to selenium biogeochemistry and a technical reference for the treatment of Se-containing wastewater.

摘要

地表水中藻类对硒的积累和挥发是硒生物地球化学循环的重要组成部分,但过程多变且复杂。开展了在不同温度、溶液pH值、光照条件及不同初始硒浓度下暴露5 - 8天的实验,以研究藻类对硒的积累和挥发行为变化。研究表明,在更恶劣的环境下,如较低的pH值、较短的光照时间和较高的硒负荷,藻类积累和挥发的硒更多。硒的最大日均挥发率为234±23μg硒/(g藻类·天),远高于以往研究的值。因此,在一些受硒污染的水环境中,当湖泊pH值呈酸性时,向大气中的硒排放量远高于目前的估计值。藻类对硒的积累率(R)和挥发率(R)均与溶液最终pH值、最终OD值及溶液中残留硒(C)显著负相关。此外,使用多元线性回归方程来估算硒的积累和挥发速率。本研究为量化藻类硒代谢对硒生物地球化学的贡献提供了理论基础数据,并为含硒废水处理提供了技术参考。

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Heliyon. 2024 Feb 11;10(4):e26023. doi: 10.1016/j.heliyon.2024.e26023. eCollection 2024 Feb 29.