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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Insights into the uranium(vi) speciation with Pseudomonas fluorescens on a molecular level
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Insights into the uranium(vi) speciation with Pseudomonas fluorescens on a molecular level

机译:荧光假单胞菌对铀(vi)形态的洞察

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Microorganisms have great potential to bind and thus transport actinides in the environment. Thus microbes indigenous to designated nuclear waste disposal sites have to be investigated regarding their interaction mechanisms with soluble actinyl ions when assessing the safety of a planned repository. This paper presents results on the pH-dependent sorption of U(vi) onto Pseudomonas fluorescens isolated from the granitic rock aquifers at ?sp? Hard Rock Laboratory, Sweden. To characterize the U(vi) interaction on a molecular level, potentiometric titration in combination with time-resolved laser-induced fluorescence spectroscopy (TRLFS) were applied. This paper as a result is one of the very few sources which provide stability constants of U(vi) complexed by cell surface functional groups. In addition the bacteria-mediated liberation of inorganic phosphate in dependence on [U(vi)] at different pHs was studied to judge the influence of phosphate release on U(vi) mobilization. The results demonstrate that in the acidic pH range U(vi) is bound by the cells mainly via protonated phosphoryl and carboxylic sites. The complexation by carboxylic groups can be observed over a wide pH range up to around pH 7. At neutral pH fully deprotonated phosphoryl groups are mainly responsible for U(vi) binding. U(vi) can be bound by P. fluorescens with relatively high thermodynamic stability.
机译:微生物具有很大的潜力,可以在环境中结合act系元素。因此,在评估计划中的处置库的安全性时,必须对指定核废料处置场中固有的微生物与可溶性act离子的相互作用机理进行研究。本文介绍了从pH值对U(vi)吸附在从?sp?的花岗岩岩含水层分离的荧光假单胞菌上的结果。瑞典硬石实验室。为了在分子水平上表征U(vi)相互作用,应用了电位滴定法与时间分辨激光诱导荧光光谱法(TRLFS)结合使用。结果,本文是提供由细胞表面官能团复合的U(vi)稳定性常数的极少数来源之一。此外,还研究了在不同pH下依赖于[U(vi)]的细菌介导的无机磷酸盐的释放,以判断磷酸盐释放对​​U(vi)动员的影响。结果表明,在酸性pH范围内,U(vi)主要通过质子化的磷酰基和羧基位点被细胞结合。可以在高达约pH 7的宽pH范围内观察到羧基的络合。在中性pH下,完全去质子化的磷酰基主要负责U(vi)结合。 U(vi)可以被具有相对较高热力学稳定性的荧光假单胞菌束缚。

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