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白米和糙米中砷的形态及定位

Speciation and localization of arsenic in white and brown rice grains.

作者信息

Meharg Andrew A, Lombi Enzo, Williams Paul N, Scheckel Kirk G, Feldmann Joerg, Raab Andrea, Zhu Yongguan, Islam Rafiql

机构信息

XOR (Sector 20), Advanced Photon Source, Argonne National Laboratory, USA.

出版信息

Environ Sci Technol. 2008 Feb 15;42(4):1051-7. doi: 10.1021/es702212p.

Abstract

Synchrotron-based X-ray fluorescence (S-XRF) was utilized to locate arsenic (As) in polished (white) and unpolished (brown) rice grains from the United States, China, and Bangladesh. In white rice As was generally dispersed throughout the grain, the bulk of which constitutes the endosperm. In brown rice As was found to be preferentially localized at the surface, in the region corresponding to the pericarp and aleurone layer. Copper, iron, manganese, and zinc localization followed that of arsenic in brown rice, while the location for cadmium and nickel was distinctly different, showing relatively even distribution throughout the endosperm. The localization of As in the outer grain of brown rice was confirmed by laser ablation ICP-MS. Arsenic speciation of all grains using spatially resolved X-ray absorption near edge structure (micro-XANES) and bulk extraction followed by anion exchange HPLC-ICP-MS revealed the presence of mainly inorganic As and dimethylarsinic acid (DMA). However, the two techniques indicated different proportions of inorganic:organic As species. A wider survey of whole grain speciation of white (n=39) and brown (n=45) rice samples from numerous sources (field collected, supermarket survey, and pot trials) showed that brown rice had a higher proportion of inorganic arsenic present than white rice. Furthermore, the percentage of DMA present in the grain increased along with total grain arsenic.

摘要

基于同步加速器的X射线荧光光谱法(S-XRF)被用于定位来自美国、中国和孟加拉国的精米(白色)和糙米(棕色)中的砷(As)。在精米中,砷通常分散在整个米粒中,其中大部分是胚乳。在糙米中,砷被发现优先定位在表面,即在对应于果皮和糊粉层的区域。糙米中铜、铁、锰和锌的定位与砷的定位一致,而镉和镍的定位明显不同,在整个胚乳中分布相对均匀。激光烧蚀电感耦合等离子体质谱法(laser ablation ICP-MS)证实了糙米外层颗粒中砷的定位。使用空间分辨X射线吸收近边结构(micro-XANES)和大量萃取后阴离子交换高效液相色谱-电感耦合等离子体质谱法(anion exchange HPLC-ICP-MS)对所有谷物进行砷形态分析,结果显示主要存在无机砷和二甲基砷酸(DMA)。然而,这两种技术显示出无机砷与有机砷形态的比例不同。对来自众多来源(田间采集、超市调查和盆栽试验)的39份精米和45份糙米样本进行的全谷物形态更广泛调查表明,糙米中无机砷的比例高于精米。此外,谷物中DMA的百分比随着谷物总砷含量的增加而增加。

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