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首页> 外文期刊>Journal of Analytical Atomic Spectrometry >Application of handheld energy-dispersive X-ray fluorescence spectrometry to carbonate studies: opportunities and challenges
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Application of handheld energy-dispersive X-ray fluorescence spectrometry to carbonate studies: opportunities and challenges

机译:手持式能量色散X射线荧光光谱法在碳酸盐研究中的应用:机遇与挑战

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摘要

Technology development over the last few years has led to significant improvements in the quality and flexibility of portable instruments. Notably, handheld energy-dispersive X-ray fluorescence (ED-XRF) spectrometry has seen a bloom both in terms of technical development and applications, ranging from the field of mineral exploration to archaeology, environmental science, paleoclimatology and forensic science. However, the field of carbonate geoscience has not yet taken the capability and flexibility of this tool to its advantage. This study developed a methodology for the application of handheld XRF to carbonate studies. An assessment was made in terms of measurement time, sample preparation and weathering of outcrops. Correction equations are presented for elemental concentrations of Ca, Ti, Fe, Mn, Zn, Al, K, Mg, Ba, Sr, Rb and Si that were derived from calibration based on a series of carbonate lab standards. Weathering can pose a significant challenge for in situ measurements of carbonate outcrops, since weathering impacts on the concentrations of Ca, Mg, Ti and Al in carbonate rocks. Therefore, we advise that XRF be used on fresh rock chips that are hammered from carbonate outcrops to take advantage of making measurements in situ and at the same time ensuring reliable quantitative results. This method allows rapid and inexpensive geochemical characterization of carbonate, which opens opportunities for stratigraphic, sedimentological, paleoenvironmental and diagenetic studies in extensive study areas.
机译:过去几年的技术发展已大大提高了便携式仪器的质量和灵活性。值得注意的是,手持式能量色散X射线荧光(ED-XRF)光谱技术在技术开发和应用方面都蓬勃发展,从矿物勘探领域到考古学,环境科学,古气候学和法医学。但是,碳酸盐岩地球科学领域尚未利用该工具的功能和灵活性。这项研究开发了一种将手持式XRF应用于碳酸盐研究的方法。根据测量时间,样品制备和露头的风化进行了评估。根据一系列碳酸盐实验室标准,通过校准得出了Ca,Ti,Fe,Mn,Zn,Al,K,Mg,Ba,Sr,Rb和Si元素浓度的校正方程。风化对碳酸盐岩露头的原位测量可能构成重大挑战,因为风化影响碳酸盐岩中钙,镁,钛和铝的浓度。因此,我们建议将XRF用于由碳酸盐露头锤打的新鲜岩石碎屑,以充分利用原位测量的优势,同时确保可靠的定量结果。这种方法可以对碳酸盐进行快速而廉价的地球化学表征,这为在广泛的研究领域进行地层学,沉积学,古环境和成岩研究提供了机会。

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