Determination of bromine, iodine, and other components in northern Hainan island soil

IF 1.1 4区 化学 Q3 SPECTROSCOPY Spectroscopy Letters Pub Date : 2023-04-29 DOI:10.1080/00387010.2023.2204900
Xiaoli Li, Zhao-shui Yu, Bin Liu, Xuemiao Du, Jinli Xu, Jinfeng Bai
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Abstract

Abstract The emergence of the integrated wavelength-dispersive and energy-dispersive Zetium X-ray fluorescence spectrometer technique offered new chances to analyze elemental distribution with minimal sample preparation in complex matrix geological samples-northern Hainan island soils. Wavelength-dispersive X-ray fluorescence was applied for the measurement of bromine in the northern Hainan island soil. To reduce the fluctuations of the low-bromine-content measurement results, a two-channel measurement of bromine was designed, and the average value of the two-channel measurements was used as the final result. The soil samples in northern Hainan Island were rich in iodine, with a content range of a few µg/g to more than 100 µg/g, and these were particularly suitable to be analyzed by energy-dispersive X-ray fluorescence spectrometer. The geological samples in northern Hainan Island were brown, purple, and brown-red soil containing kaolinite, ilmenite, rutile, anatase, and goethite. These soil samples were rich in titanium, aluminum, and iron. The titanium concentration in the northern Hainan Island soil was anomalously high (up to 15.05%), far exceeding the content range of the calibration curve. Owing to the empirical coefficient matrix correction method, unreliable or even unreasonable results were obtained for some elements. By systematically mitigating matrix effects through the development of custom reference materials and building matrix-matched measurement and calibration routines, the quantification of Vanadium, Barium, and major components in northern Hainan Island soil samples was optimized. The efficacy of the X-ray fluorescence spectrometer method was confirmed by comparison with inductively coupled plasma–optical emission spectroscopy analysis. This work demonstrates the capability of the integrated wavelength-dispersive and energy-dispersive Zetium X-ray fluorescence spectrometer technique for reliable quantitative elemental analysis of complex matrix geological samples.
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海南岛北部土壤中溴、碘等成分的测定
波长色散和能量色散集成的Zetium x射线荧光光谱仪技术的出现,为在复杂基质地质样品-海南岛北部土壤中以最小制样分析元素分布提供了新的机会。采用波长色散x射线荧光法测定了海南岛北部土壤中溴的含量。为了减少低溴含量测量结果的波动,设计了一种双通道的溴测量方法,并取两通道测量结果的平均值作为最终结果。海南岛北部土壤样品中碘含量丰富,含量范围从几µg/g到100µg/g以上,特别适合用能量色散x射线荧光光谱仪进行分析。海南岛北部地质样品为棕色、紫色和棕红色土壤,含高岭石、钛铁矿、金红石、锐钛矿和针铁矿。这些土壤样品富含钛、铝和铁。海南岛北部土壤中钛含量异常高(高达15.05%),远远超出了校准曲线的含量范围。由于采用经验系数矩阵修正法,对某些元素得到的结果不可靠甚至不合理。通过开发定制标准物质和建立基质匹配的测量和校准程序,系统地减轻基质效应,优化了海南岛北部土壤样品中钒、钡和主要成分的定量。通过与电感耦合等离子体发射光谱分析方法的比较,证实了x射线荧光光谱仪方法的有效性。这项工作证明了波长色散和能量色散集成Zetium x射线荧光光谱仪技术对复杂基质地质样品进行可靠定量分析的能力。
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来源期刊
Spectroscopy Letters
Spectroscopy Letters 物理-光谱学
CiteScore
2.90
自引率
5.90%
发文量
50
审稿时长
1.3 months
期刊介绍: Spectroscopy Letters provides vital coverage of all types of spectroscopy across all the disciplines where they are used—including novel work in fundamental spectroscopy, applications, diagnostics and instrumentation. The audience is intended to be all practicing spectroscopists across all scientific (and some engineering) disciplines, including: physics, chemistry, biology, instrumentation science, and pharmaceutical science.
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