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首页> 外文期刊>Environmental Science & Technology >Sorption of uranyl cations onto inactivated cells of alfalfa biomass investigated using chemical modification, ICP-OES, and XAS
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Sorption of uranyl cations onto inactivated cells of alfalfa biomass investigated using chemical modification, ICP-OES, and XAS

机译:使用化学修饰,ICP-OES和XAS研究了铀酰阳离子对苜蓿生物量失活细胞的吸附

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摘要

Studies have shown that biomaterials have the capacity to adsorb heavy metals and metal oxo-cations from aqueous solution. In addition, previous studies have shown that biomaterials have the ability to bind uranyl cations from solution with capacities that are comparable to or greater than some commercially available synthetic ion-exchange resins. By using chemical modification, inductively coupled plasma optical emission spectroscopy (ICP-OES), and X-ray absorption spectroscopy (XAS), we have found that the primary functional group on alfalfa biomass responsible for the binding of uranyl cations from aqueous solution is the carboxyl functionality. Batch pH dependency experiments show a direct relationship between the increase in binding and the increase in pH (up to pH 4.5). XAS experiments showed that the major ligand involved in the binding of uranyl cations from aqueous solution was either a nitrogen or oxygen ligand with coordination numbers ranging from 6 to 10 +/- 1.
机译:研究表明,生物材料具有从水溶液中吸附重金属和金属氧代阳离子的能力。此外,先前的研究表明,生物材料具有与溶液中的铀酰阳离子结合的能力,其容量可与某些市售合成离子交换树脂相比或更高。通过使用化学修饰,电感耦合等离子体发射光谱(ICP-OES)和X射线吸收光谱(XAS),我们发现苜蓿生物量上负责与水溶液中的铀酰阳离子结合的主要官能团是羧基官能度。批处理pH依赖性实验表明,结合力的增加和pH值的增加(最高pH值为4.5)之间存在直接关系。 XAS实验表明,参与水溶液中铀酰阳离子结合的主要配体是配体数为6到10 +/- 1的氮或氧配体。

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