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首页> 外文期刊>Spectrochimica Acta, Part B. Atomic Spectroscopy >Application of X-ray fluorescence analytical techniques in phytoremediation and plant biology studies
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Application of X-ray fluorescence analytical techniques in phytoremediation and plant biology studies

机译:X射线荧光分析技术在植物修复和植物生物学研究中的应用

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Phytoremediation is an emerging technology that employs the use of higher plants for the clean-up of contaminated environments. Progress in the field is however handicapped by limited knowledge of the biological processes involved in plant metal uptake, translocation, tolerance and plant-microbe-soil interactions; therefore a better understanding of the basic biological mechanisms involved in plant/microbe/ soil/contaminant interactions would allow further optimization of phytoremediation technologies. In view of the needs of global environmental protection, it is important that in phytoremediation and plant biology studies the analytical procedures for elemental determination in plant tissues and soil should be fast and cheap, with simple sample preparation, and of adequate accuracy and reproducibility. The aim of this study was therefore to present the main characteristics, sample preparation protocols and applications of X-ray fluorescence-based analytical techniques (energy dispersive X-ray fluorescence spectrometry-EDXRF, total reflection X-ray fluorescence spectrometry-TXRF and micro-proton induced X-ray emission-micro-PIXE). Element concentrations in plant leaves from metal polluted and non-polluted sites, as well as standard reference materials, were analyzed by the mentioned techniques, and additionally by instrumental neutron activation analysis (1NAA) and atomic absorption spectrometry (AAS). The results were compared and critically evaluated in order to assess the performance and capability of X-ray fluorescence-based techniques in phytoremediation and plant biology studies. It is the EDXRF, which is recommended as suitable to be used in the analyses of a large number of samples, because it is multi-elemental, requires only simple preparation of sample material, and it is analytically comparable to the most frequently used instrumental chemical techniques. The TXRF is compatible to FAAS in sample preparation, but relative to MS it is fast, sensitive and multi-elemental. The micro-PIXE technique requires rather expensive instrumentation, but offers multi-elemental analysis on the tissue and cellular level.
机译:植物修复是一项新兴技术,利用高等植物来清理污染的环境。然而,由于对植物金属吸收,转运,耐受性以及植物-微生物-土壤相互作用所涉及的生物学过程的了解有限,因此该领域的进展受到阻碍。因此,对植物/微生物/土壤/污染物相互作用中涉及的基本生物学机制的更好理解将有助于进一步优化植物修复技术。考虑到全球环境保护的需求,重要的是在植物修复和植物生物学研究中,用于植物组织和土壤中元素测定的分析程序应快速,廉价,样品制备简单,准确度和可重复性都足够。因此,本研究的目的是介绍基于X射线荧光的分析技术(能量色散X射线荧光光谱法-EDXRF,全反射X射线荧光光谱法-TXRF和微型荧光光谱仪)的主要特征,样品制备方案和应用。质子诱导的X射线发射-微型PIXE)。通过上述技术,以及通过仪器中子活化分析(1NAA)和原子吸收光谱(AAS)分析了金属污染和非污染场所以及标准参考物质中植物叶片中的元素浓度。比较结果并进行严格评估,以评估基于X射线荧光的技术在植物修复和植物生物学研究中的性能和能力。它是EDXRF,被推荐适合用于大量样品的分析,因为它是多元素的,仅需简单地制备样品材料,并且在分析上可与最常用的仪器化学试剂相媲美。技术。 TXRF在样品制备中与FAAS兼容,但是相对于MS,它是快速,灵敏和多元素的。微型PIXE技术需要相当昂贵的仪器,但可以在组织和细胞水平上提供多元素分析。

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