铀酰
化学
溶解度
砷酸盐
溶解
水溶液
降水
焓
无机化学
热力学
物理化学
砷
有机化学
物理
离子
气象学
作者
Isabel Meza,Jorge Gonzalez-Estrella,Peter C. Burns,Virginia Rodriguez,Carmen A Velasco,Ginger E Sigmon,Jennifer E S Szymanowski,Tori Z. Forbes,Lindsey M Applegate,Abdul-Mehdi S Ali,Peter Lichtner,José M. Cerrato
标识
DOI:10.1021/acs.est.2c06648
摘要
We investigated the aqueous solubility and thermodynamic properties of two meta-autunite group uranyl arsenate solids (UAs). The measured solubility products (log Ksp) obtained in dissolution and precipitation experiments at equilibrium pH 2 and 3 for NaUAs and KUAs ranged from -23.50 to -22.96 and -23.87 to -23.38, respectively. The secondary phases (UO2)(H2AsO4)2(H2O)(s) and trögerite, (UO2)3(AsO4)2·12H2O(s), were identified by powder X-ray diffraction in the reacted solids of KUA precipitation experiments (pH 2) and NaUAs dissolution and precipitation experiments (pH 3), respectively. The identification of these secondary phases in reacted solids suggest that H3O+ co-occurring with Na or K in the interlayer region can influence the solubilities of uranyl arsenate solids. The standard-state enthalpy of formation from the elements (ΔHf-el) of NaUAs is -3025 ± 22 kJ mol-1 and for KUAs is -3000 ± 28 kJ mol-1 derived from measurements by drop solution calorimetry, consistent with values reported in other studies for uranyl phosphate solids. This work provides novel thermodynamic information for reactive transport models to interpret and predict the influence of uranyl arsenate solids on soluble concentrations of U and As in contaminated waters affected by mining legacy and other anthropogenic activities.
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