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Mobilisation of Radionuclides by Ligands Produced by Bacteria from the Deep Subsurface

机译:通过细菌来自深层地下产生的配体调动放射性核素

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Microbial processes can influence retention of radionuclides directly or indirectly in several different ways. Many microorganisms produce various kinds of ligands or chelating compounds to increase the bioavailability of essential elements needed for metabolism. These ligands are not always highly specific, and several of them will also mobilise other elements such as heavy metals and radionuclides. Three bacterial species (Shewanellaputrefaciens, Pseudomonas fluorescens and Pseudomonas stutzerii), isolated from the deep subsurface, and four radionuclides, ~(59)Fe(III), ~(147)Pm(III), ~(234)Th(lV) and ~(241)Am(TII), were selected for this study. The microbes were cultured in the laboratory, separated from their exudates by centrifugation, and the supernatants were collected. The supernatants were mixed with radionuclide and solid phase (TiO_2 or SiO_2). The pH ranged from 7.5-9.0. All three bacterial species produced ligands that were able to complex up to 90% of the radionuclides in competition with the solid phases. High performance liquid chromatography analysis detected four Fe-complexing substances in the supernatant from P. fluorescens and two peaks and one peak, respectively, from P. stutzerii and S. putrefaciens. All substances eluted from the column varied in retention times, indicating that the microbes studied produced several metabolites that have different chelating abilities.
机译:微生物过程可以以几种不同的方式直接或间接地影响放射性核素的保留。许多微生物产生各种配体或螯合化合物,以增加代谢所需的必需元素的生物利用度。这些配体并不总是具有高度特异性的,其中几个也将调动其他元素,如重金属和放射性核素。三种细菌种类(Shewanellaputrefaciens,假单胞菌荧光素和假单胞菌斯图里西氏菌),与深层地下分离,四种放射性核素,〜(59)Fe(III),〜(147)PM(III),〜(234)TH(LV)和〜(241)AM(TII),被选中本研究。将微生物在实验室中培养,通过离心分离出渗出物,收集上清液。将上清液与放射性核素和固相(TiO_2或SiO_2)混合。 pH值从7.5-9.0。所有三种细菌种类产生配体,该配体能够与固相竞争中的高达90%的放射性核素复合。高效液相色谱分析分别检测到来自P.荧光的上清液中的四种Fe络合物质,分别从P. Stutzerii和S. Putrefacians分别从p.荧光囊和两个峰和一个峰值。从柱中洗脱的所有物质在保留时间内变化,表明微生物研究产生了几种具有不同螯合能力的代谢物。

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