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An XAS study of the binding and reduction of Au(III) by hop biomass

机译:啤酒花生物量结合和还原Au(III)的XAS研究

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Previous studies have shown that hop biomass is capable of adsorbing significant amounts of Au(Ill) from aqueous solutions. Hop biomass was chemically modified to determine the contributions that the different functional groups on the biomass have on the binding and reduction of Au(III). Previously, performed batch studies showed that Au(Ill) binding is fast, occurring within the first 5 min of contact and in a pH dependent manner. However, esterified hop biomass behaved in a pH independent manner and the binding was found not to change with changing pH. However, the hydrolyzed biomass had a similar Au(III) binding to the native hops biomass, showing a pH dependent binding trend. X-ray absorption spectroscopy (XAS) analysis, XANES (X-ray absorption near edge structure), and EXAFS (extended X-ray absorption fine structure) were used to determine the oxidation state, coordination environment, and the average radii of the gold nanoparticles bound to the hops biomass. The XAS data confirmed the presence of Au(0) in both the native and chemically modified hop biomasses. XANES fittings show that the Au(Ill) was reduced to Arr(0) by approximately 81%, 70%, and 83% on the native, esterified, and hydrolyzed hop biomass, respectively. In addition, the calculation of the particle radius was also in agreement with the results of previously performed transmission electron microscopy studies. The average particle could only be calculated for the native and esterified hops biomass, which showed average particle radii of 17.3 angstrom and 9.2 angstrom, respectively. (c) 2005 Elsevier B.V. All fights reserved.
机译:先前的研究表明,啤酒花生物质能够从水溶液中吸附大量的Au(III)。对啤酒花生物质进行化学修饰,以确定生物质上不同官能团对Au(III)结合和还原的贡献。以前,进行的批量研究表明,Au(III)的结合是快速的,在接触的前5分钟内以pH依赖的方式发生。但是,酯化啤酒花生物量的行为与pH无关,并且发现结合不会随pH的变化而改变。然而,水解的生物质具有与天然啤酒花生物质相似的Au(III)结合,显示出pH依赖性的结合趋势。 X射线吸收光谱(XAS)分析,XANES(近边缘结构的X射线吸收)和EXAFS(扩展X射线吸收精细结构)用于确定金的氧化态,配位环境和平均半径与啤酒花生物量结合的纳米颗粒。 XAS数据证实了天然和化学修饰的啤酒花生物量中都存在Au(0)。 XANES拟合表明,在天然,酯化和水解啤酒花生物量上,Au(III)分别降低了Arr(0)约81%,70%和83%。另外,粒子半径的计算也与先前进行的透射电子显微镜研究的结果一致。只能计算天然和酯化啤酒花生物量的平均颗粒,它们的平均颗粒半径分别为17.3埃和9.2埃。 (c)2005 Elsevier B.V.版权所有。

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