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首页> 外文期刊>Journal of Raman Spectroscopy: An International Journal for Original Work in All Aspects of Raman Spectroscopy, Including Higher Order Processes, and Also Brillouin- and Rayleigh Scattering >Raman spectroscopic study of the hydrogen-arsenate mineral pharmacolite Ca(AsO_3OH)·2H_2O—implications for aquifer and sediment remediation
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Raman spectroscopic study of the hydrogen-arsenate mineral pharmacolite Ca(AsO_3OH)·2H_2O—implications for aquifer and sediment remediation

机译:砷酸氢矿物药石Ca(AsO_3OH)·2H_2O的拉曼光谱研究—对含水层和沉积物修复的意义

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摘要

The removal of arsenate anions from aqueous media, sediments and wasted soils is of environmental significance. The reaction of gypsum with the arsenate anion results in pharmacolite mineral formation, together with related minerals. Raman and infrared (IR) spectroscopy have been used to study the mineral pharmacolite Ca(AsO_3OH)· 2H_2O. The mineral is characterised by an intense Raman band at 865 cm~(?1) assigned to the ν_1 (AsO_3)~(2?) symmetric stretching mode. The equivalent IR band is found at 864 cm~(?1). The low-intensity Raman bands in the range from 844 to 886 cm~(?1) provide evidence for ν_3 (AsO_3) antisymmetric stretching vibrations. A series of overlapping bands in the 300-450 cm~(?1) region are attributed to ν_2 and ν_4 (AsO_3) bending modes. Prominent Raman bands at around 3187 cm~(?1) are assigned to the OH stretching vibrations of hydrogen-bonded water molecules and the two sharp bands at 3425 and 3526 cm~(?1) to the OH stretching vibrations of only weakly hydrogen-bonded hydroxyls in (AsO_3OH)~(2?) units.
机译:从水性介质,沉积物和浪费的土壤中去除砷酸根阴离子具有环境意义。石膏与砷酸根阴离子的反应会导致形成药石矿物质以及相关矿物质。拉曼光谱和红外光谱已用于研究矿物药理石Ca(AsO_3OH)·2H_2O。矿物的特征是在865 cm〜(?1)处分配给ν_1(AsO_3)〜(2?)对称拉伸模式的强烈拉曼带。等效红外波段在864 cm〜(?1)。在844至886 cm〜(?1)范围内的低强度拉曼带提供了ν_3(AsO_3)反对称拉伸振动的证据。 300-450 cm〜(?1)区域中的一系列重叠带归因于ν_2和ν_4(AsO_3)弯曲模式。大约3187 cm〜(?1)处的突出拉曼谱带被分配给氢键水分子的OH拉伸振动,而3425和3526 cm〜(?1)处的两个尖锐带分别被赋予弱氢-的OH拉伸振动(AsO_3OH)〜(2?)单元键合的羟基。

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