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Using XRF and ICP-OES in Biosorption Studies

机译:在生物吸附研究中使用XRF和ICP-OES

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摘要

In this work, a method of recalculation of results of X-ray fluorescence (XRF) technique to Inductively Coupled Plasma-Optical Emission Spectroscopy (ICP-OES) method was elaborated for biosorption studies. Equations that calibrate XRF to ICP-OES were determined, as a biosorbent strawberry, blackcurrant and raspberry seeds after supercritical CO2 extraction were used. ICP-OES showed a better precision and lower detection limits than XRF. The latter technique is cheaper, requires minimal sample preparation and gives faster results. Linear regression of the data gave almost 1:1 correlations without additional correction (for Cu r2 = 0.9998, Mn r2 = 0.807, Zn r2 = 0.979). Calibration and quantification of intensities of XRF was obtained using ICP-OES measurements after samples digestion with HNO3 in a microwave system. High positive correlations were estimated for Cu, Mn, Zn. It was demonstrated that XRF technique can be used together with other well established techniques (ICP-OES) to produce quantitative data from biosorption studies. Elaboration of cheap and quick analytical methodology is an important aspect in development of new processes and products based on biosorption process.
机译:在这项工作中,阐述了一种将X射线荧光(XRF)技术的结果重新计算为电感耦合等离子体发射光谱(ICP-OES)方法的方法,用于生物吸附研究。确定了将XRF校正为ICP-OES的方程式,因为使用了超临界CO2萃取后的生物吸附性草莓,黑加仑子和覆盆子种子。 ICP-OES比XRF具有更高的精度和更低的检测限。后一种技术更便宜,需要最少的样品制备,并且结果更快。数据的线性回归得到几乎1:1的相关性,而无需进行其他校正(对于Cu r 2 = 0.9998,Mn r 2 = 0.807,Zn r 2 = 0.979)。在微波系统中用HNO3消解样品后,使用ICP-OES测量获得XRF强度的校准和定量。估计铜,锰,锌具有高正相关性。结果表明,XRF技术可与其他完善的技术(ICP-OES)结合使用,以从生物吸附研究中获得定量数据。制定廉价,快速的分析方法是基于生物吸附过程开发新过程和产品的重要方面。

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