Evaluation of quantitative synchrotron radiation micro-X-ray fluorescence in rice grain

被引:0
|
作者
Limmer, Matt A. [1 ]
Webb, Samuel M. [2 ]
Seyfferth, Angelia L. [1 ]
机构
[1] Univ Delaware, Dept Plant & Soil Sci, Newark, DE 19716 USA
[2] SLAC Natl Accelerator Lab, Stanford Synchrotron Radiat Lightsource, Menlo Pk, CA 94025 USA
基金
美国国家科学基金会; 美国食品与农业研究所;
关键词
arsenic; metal(loid)s; rice bran; rice grain; synchrotron radiation microprobe X-ray fluorescence; SR-mu XRF; ORYZA-SATIVA L; PLASMA-MASS SPECTROMETRY; PHYTIC ACID CONTENT; TRACE-ELEMENTS; LOCALIZATION; SPECIATION; IRON; ACCUMULATION; CADMIUM; ROOTS;
D O I
10.1107/S1600577523000747
中图分类号
TH7 [仪器、仪表];
学科分类号
0804 ; 080401 ; 081102 ;
摘要
Concentrations of nutrients and contaminants in rice grain affect human health, specifically through the localization and chemical form of elements. Methods to spatially quantify the concentration and speciation of elements are needed to protect human health and characterize elemental homeostasis in plants. Here, an evaluation was carried out using quantitative synchrotron radiation microprobe X-ray fluorescence (SR-mXRF) imaging by comparing average rice grain concentrations of As, Cu, K, Mn, P, S and Zn measured with rice grain concentrations from acid digestion and ICP-MS analysis for 50 grain samples. Better agreement was found between the two methods for high-Z elements. Regression fits between the two methods allowed quantitative concentration maps of the measured elements. These maps revealed that most elements were concentrated in the bran, although S and Zn permeated into the endosperm. Arsenic was highest in the ovular vascular trace (OVT), with concentrations approaching 100 mg kg(-1) in the OVT of a grain from a rice plant grown in Ascontaminated soil. Quantitative SR-mXRF is a useful approach for comparison across multiple studies but requires careful consideration of sample preparation and beamline characteristics.
引用
收藏
页码:407 / 416
页数:10
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