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X-ray Absorption Near-Edge Structure Analysis of Arsenic Species for Application to Biological Environmental Samples

机译:砷在生物环境样品中的X射线吸收近缘结构分析

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Arsenic is an element that is ubiquitous in the environment and is known to form compounds with toxic, even carcinogenic properties. Arsenic toxicity is a function of its chemical form (species). Identification of arsenic species is necessary to accurately determine the transformation and fate of arsenicals as well as the actual risk posed by arsenic contamination. We report X-ray absorption near-edge structure (XANES) measurements of 16 biologically important arsenic compounds. Solid and aqueous standards were studied for differences in XANES spectral features, white line positions, stability during exposure to the beam, and stability between two beam exposures separated by 48 h. Samples containing As(III) (11870.0-11871.7 ± 0.5 eV) and As(V) (11872.6-11875.3 ± 0.5 eV) were easily distinguished by white line energies and could be further subdivided into a total of seven groups. Valuable examples include As(III)-sulfur compounds (11870.0 ± 0.5 eV), arsenobetaine and arsenocholine (11872.6 ± 0.5 eV), and a dimethyl arsinyl riboside (11873.3 ± 0.5 eV). A growing number of environmental and biological studies use X-ray absorption spectroscopy (XAS) results to complement their more traditional analyses. Results provided here are intended to help make XAS more accessible to new users interested in the study of arsenic in the environment.
机译:砷是环境中普遍存在的元素,已知会形成具有毒性甚至致癌性的化合物。砷毒性是其化学形式(物种)的函数。鉴定砷的种类对于准确确定砷的转化和命运以及砷污染造成的实际风险是必不可少的。我们报告16生物重要砷化合物的X射线吸收近边缘结构(XANES)测量。研究了固体和水标准品在XANES光谱特征,白线位置,光束照射期间的稳定性以及两次相隔48小时的光束照射之间的稳定性方面的差异。包含As(III)(11870.0-11871.7±0.5 eV)和As(V)(11872.6-11875.3±0.5 eV)的样品可以通过白线能量轻松区分,并且可以进一步细分为七个组。有价值的例子包括As(III)-硫化合物(11870.0±0.5 eV),砷甜菜碱和砷胆碱(11872.6±0.5 eV)和二甲基a啶核糖核苷(11873.3±0.5 eV)。越来越多的环境和生物学研究使用X射线吸收光谱(XAS)结果来补充其更传统的分析。这里提供的结果旨在帮助对环境中砷研究感兴趣的新用户更容易使用XAS。

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