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不同钾浓度培养条件对栖热茵TibetanG6菌株吸附铯的影响 被引量:1
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作者 王海雷 孔凡晶 郑绵平 《中国科学(C辑)》 CSCD 北大核心 2005年第6期513-518,共6页
研究了不同钾离子浓度培养体系下栖热菌TibetanG6菌株(Thermus sp.TibetanG6)对铯的吸附规律以及pH和钠离子对吸附的影响.结果表明,不同钾离子浓度培养条件在TibetanG6菌株对铯的吸附过程中扮演了重要的角色,由培养基中不加钾而诱导... 研究了不同钾离子浓度培养体系下栖热菌TibetanG6菌株(Thermus sp.TibetanG6)对铯的吸附规律以及pH和钠离子对吸附的影响.结果表明,不同钾离子浓度培养条件在TibetanG6菌株对铯的吸附过程中扮演了重要的角色,由培养基中不加钾而诱导的钾缺失细胞对铯的吸附量(24 h)明显高于正常培养基中加过量钾产生的钾过量体系中的吸附量.在不同的钾离子细胞中,pH和钠离子对菌体吸附铯产生了不同的影响.菌体的红外光谱分析也表明:菌株TibetanG6细胞对铯的吸附是一个动态平衡过程.最后对pH和钠离子对铯吸附的作用机制进行了讨论. 展开更多
关键词 栖热菌(Thermus sp.tibetang6) 生物吸附 pH 钾离子体系 红外光谱
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The effects of K^+ growth conditions on the accumulation of cesium by the bacterium Thermus sp. TibetanG6 被引量:3
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作者 WANG Hailei1,2,3, KONG Fanjing1,2,3 & ZHENG Mianping1,2,3 1. R&D Center for Saline Lake and Epithermal Deposits, Chinese Academy of Geological Sciences, Beijing 100037, China 2. Key Open Laboratory of Saline Lake Resources and Environment, Chinese Academy of Geological Sciences, Beijing 100037, China 3. Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China 《Science China(Life Sciences)》 SCIE CAS 2006年第2期123-129,共7页
The accumulation of cesium by the bacterium Thermus sp. TibetanG6 was examined under different K+ growth conditions. The effects of external pH and Na+ on the accumulation of ce-sium were also studied, and the mechani... The accumulation of cesium by the bacterium Thermus sp. TibetanG6 was examined under different K+ growth conditions. The effects of external pH and Na+ on the accumulation of ce-sium were also studied, and the mechanism involved was discussed. K+ regimes played an important role in the accumulation of cesium by the strain TibetanG6. The quantity of cesium accumulated (24 h) was much higher in K+-deficient regime than that in K+-sufficient regime. The pH and Na+ had different effects on the accumulation of cesium in the two K+ regimes. IR spectra analyses indicated that the biosorption is a process of homeostasis with cesium initially accumulated on the cell wall. 展开更多
关键词 THERMUS sp. tibetang6 cesium bioaccumulation K+-growth condition pH sodium IR spectroscopy.
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