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Radionuclide remediation using a bacterial biosorbent

机译:使用细菌生物吸附剂修复放射性核素

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A Pseudomonas strain, characterized as part of a project to develop a biosorbent for removal of toxic radionuclides from nuclear waste streams, was a potent accumulator of uranium (VI) and thorium (IV), with the metal sequestration process being unaffected by culture age, presence of carbon/energy source and metabolic inhibitor but sensitive to the composition of the growth medium. Further characterization of radionuclide biosorption using lyophilized biomass revealed rapid cation binding of > 90% within 1-10 min of contact and complete removal of U and Th was observed at initial concentrations up to 100 mg l(-1). Initial solution pH strongly affected radionuclide biosorption with an optimum at pH 4.0-5.0. High affinity, efficient and high capacity uranium and thorium binding was indicated, with maximum loading of 541 mg U g(-1) dry mass or 430 mg Th g(-1) dry mass. Good conformity of sorption data with the Langmuir model suggests monolayered U and Th binding. Sorption in presence of several interfering cations and anions indicates a specific U and Th binding by the biomass with significant antagonism offered only by iron (III). Transmission electron microscopy and energy dispersive X-ray fluorescence analysis of metal loaded biomass revealed intracellular U and Th sequestration. More than 90% of biomass-bound radionuclide was recovered using sodium or calcium carbonate. For continuous process application an immobilized biomass system was developed and tested with multiple cycles of sorption-desorption. Overall, the biosorbent appeared suitable for realistic bioremediation.
机译:假单胞菌菌株是开发用于从核废料流中去除有毒放射性核素的生物吸附剂项目的一部分,是有效的铀(VI)和th(IV)蓄积器,并且金属螯合过程不受培养年龄的影响,碳/能源和代谢抑制剂的存在,但对生长培养基的组成敏感。使用冻干的生物质对放射性核素生物吸附的进一步表征表明,在接触的1-10分钟内阳离子阳离子结合率> 90%,并且在初始浓度高达100 mg l(-1)时观察到U和Th的完全去除。初始溶液的pH值强烈影响放射性核素的生物吸附,最适pH值为4.0-5.0。指示了高亲和力,有效和高容量的铀和th结合,最大负载为541 mg U g(-1)干质量或430 mg Th g(-1)干质量。吸附数据与Langmuir模型的良好一致性表明单层U和Th结合。在几种干扰性阳离子和阴离子的存在下的吸附表明,生物质具有特定的U和Th结合,仅铁(III)具有明显的拮抗作用。金属负载的生物质的透射电子显微镜和能量色散X射线荧光分析显示细胞内U和Th螯合。使用碳酸钠或碳酸钙回收了90%以上的生物质结合的放射性核素。对于连续过程应用,开发了固定化的生物质系统,并通过多个吸附-解吸循环进行了测试。总体而言,生物吸附剂似乎适合现实的生物修复。

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