首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Adsorption of uranyl tricarbonate and calcium uranyl carbonate onto gamma-alumina
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Adsorption of uranyl tricarbonate and calcium uranyl carbonate onto gamma-alumina

机译:将三丙烯酸盐和碳酸钙的吸附吸附γ-氧化铝

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摘要

The uranyl tricarbonate moiety, exemplified by UO2(CO3)3(4-), CaUO2(CO3)(3)(2-), and Ca2UO2(CO3)(3)(aq), is potentially expected to consist of mobile uranyl(VI) species in the aquifer of a deep geological repository for spent nuclear fuel. Time-resolved laser fluorescence spectroscopy (TRLFS) for the U(VI) surface speciation on gamma-alumina was utilized to investigate the effect of various uranyl tricarbonate species on U(VI) adsorption. Under the prevailing carbonate conditions, the emission bands of the species of U(VI) adsorbed onto y-alumina were found at 467.6 +/- 0.1,487.1 +/- 0.1,507.5 +/- 0.1,530.0 +/- 0.1, and 552.8 +/- 0.2 nm and were blueshifted compared with those of the U(VI)-hydroxo surface complexes. The shift to the shorter wavelengths was attributed to the spectral feature of bis- and/or tris-carbonato U(VI) complexes found in aqueous uranyl(VI) species and uranium (VI) minerals with two to three carbonate ions. The results obtained from attenuated total reflectance-Fourier transform infrared (ATR-FTIR) spectroscopy have confirmed the formation of U(VI)-carbonato surface complexation on y-alumina in a bidentate manner. Based on identical spectroscopic properties, which were observed independently of the presence or absence of calcium ions in the uranyl tricarbonate system, a similar manner of U(VI) tricarbonate adsorption can be assumed, regardless of the absence or presence of calcium. According to the results from this work and comparison with previous studies, U(VI)-carbonato surface complexation tends to be favorable on mineral surfaces with a higher point of zero charge (pH(PZC)) such as alumina. Regarding the retention of U(VI) in the aquifer, the results presented in this work provide new insight and interpretation of U(VI) adsorption in carbonate-rich groundwater.
机译:三碳酸甲酯部分由UO 2(CO 3)3(4-),CAUO 2(CO 3)(3)(3)(2-)和CCO 2(2-)(3)(3)(3)(3)(3)(3)(3)(3))包括预期由移动铀酰( vi)在核燃料深层地质储存库的含水层中的种类。用于γ-氧化铝的U(VI)表面物质的时间分辨激光荧光光谱(TRLF)研究了各种铀酰三甘油物种对U(VI)吸附的影响。在普遍的碳酸盐条件下,吸附在Y-氧化铝上的U(VI)的发射带以467.6 +/- 0.1,487.1 +/- 0.1,507.5 +/- 0.1,530.0 +/- 0.1,和552.8 +/- 0.2nm,与U(VI) - 羟基表面配合物的表面复合物相比,Blueshift。较短波长的转变归因于在铀酰(VI)种类水溶液(VI)物种和铀(VI)矿物中发现的双和/或Tris-Colary-u(VI)复合物的光谱特征,其具有两至三个碳酸酯离子。从减弱的总反射率 - 傅里叶变换红外(ATR-FTIR)光谱获得的结果证实了在y-氧化铝上以双齿的方式形成U(VI) - 甘露甘油表面络合。基于相同的光谱性质,独立于叔烷基三烷酸酯体系中的钙离子的存在或不存在,可以假设与钙的不存在或存在无论钙,相似的U(VI)三碳酸酯吸附的方式。根据这项工作的结果和与先前研究的比较,U(VI) - 甘露聚糖表面络合趋于有利的矿物表面,其具有较高的零电荷(pH(PH(PHC)),例如氧化铝。关于含水层中的U(vi)的保留,本作工作中提出的结果为富含碳酸盐的地下水中的U(vi)吸附提供了新的洞察力和解释。

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