放射性废水处理中吸附铀的优势藻种筛选 |
摘要点击 1811 全文点击 850 投稿时间:2015-10-22 修订日期:2015-12-17 |
查看HTML全文
查看全文 查看/发表评论 下载PDF阅读器 |
中文关键词 放射性废水 铀 生物吸附 微藻 藻种筛选 |
英文关键词 radioactive wastewater uranium biosorption microalgae selection of microalgal species |
|
中文摘要 |
随着核工业的发展,含铀放射性废水的产生量越来越大,必须进行妥善处理与处置.微藻吸附技术是近年来放射性废水处理领域的研究热点,而获得吸附铀的优势藻种则是该技术得以研究和应用的基础.从工程应用的角度出发确定了筛选原则,并针对11株备选藻种进行了优势藻种筛选工作.栅藻LX1对铀的吸附容量最大,为40.7 mg·g-1; 在mBG11培养基(模拟城镇污水处理厂污染物排放一级A标准的氮磷浓度限值)中的生物质产量较高,为0.32 g·L-1; 生长进入稳定期后的沉降性能较好,沉降率为45.3%.综上,在本研究范围内,栅藻LX1为放射性废水处理中吸附铀的优势藻种. |
英文摘要 |
The amount of radioactive wastewater discharge was increasing year by year, with the quick development of nuclear industry. Therefore, the proper treatment and disposal of radioactive wastewater are essentially important for environmental safety and human health. Microalgal biosorption of nuclide has drawn much attention in the area of radioactive wastewater treatment recently, and the selection of a proper microalgal species for uranium biosorption is the basis for the research and application of this technology. The selection principle was set up from the view of practical application, and 11 species of microalgae were prepared for the selection work. Scenedesmus sp. LX1 has the highest biosorption capacity of 40.7 mg·g-1 for uranium; and its biomass production in mBG11 medium (simulating the nitrogen and phosphorus limits in the first-class A discharge standard of pollutants for municipal wastewater treatment plant) was 0.32 g·L-1, which was relatively high among the 11 microalgal species; when grown into stable phase it also showed a good precipitation capability with the precipitation ratio of 45.3%. Above all, in our selection range of the 11 microalgal species, Scenedesmus sp. LX1 could be considered as the suitable species for uranium biosorption in radioactive wastewater treatment. |
|
|
|