Sino-French Institute of Nuclear Engineering and Technology, Sun Yat-sen University, Zhuhai, 519082, China.
Sino-French Institute of Nuclear Engineering and Technology, Sun Yat-sen University, Zhuhai, 519082, China.
J Environ Radioact. 2020 Dec;225:106446. doi: 10.1016/j.jenvrad.2020.106446. Epub 2020 Oct 13.
Micaceous minerals are the natural materials that can block radioactive strontium (Sr) released in the environment, and their adsorption capacity and mechanism are highly divergent owing to the different properties of micas. In this work, we comparatively studied the adsorption of Sr(II) on three typical micas, muscovite, biotite and phlogopite. The effects of pH, contact time, ionic strength, and background electrolyte were evaluated. It was found that phlogopite and muscovite had the largest solid-liquid distribution coefficient (K) for a reaction time of 48 h under acidic and alkaline conditions, respectively. Under alkaline conditions, as the reaction time increased to 44 days, phlogopite and muscovite showed the highest and lowest K, respectively. The K for Sr(II) adsorption on biotite and phlogopite increased with increasing pH but decreased with increasing pH for muscovite. X-ray diffraction analysis revealed that the interlayer weathering of phlogopite (a new diffraction peak appeared at 2-theta of ~6.1°) occurred along with the adsorption of Sr(II) below pH 9.0 under 0.01 mol/L NaCl. Furthermore, the adsorption of Sr(II) was significantly inhibited in the presence of 10 and 10 mol/L Cs, resulting in similar adsorption capacity for phlogopite and muscovite at pH ~4.1. Consequently, the difference in Sr(II) adsorption on muscovite, biotite and phlogopite mainly came from the synergistic process of adsorption and weathering, which induced the differences in availability of interlayer sites among micas over a certain time.
云母矿物是可以吸附环境中释放的放射性锶(Sr)的天然物质,由于云母性质的不同,其吸附能力和机制存在很大差异。在这项工作中,我们比较研究了 Sr(II)在三种典型云母矿物(白云母、黑云母和金云母)上的吸附。评估了 pH 值、接触时间、离子强度和背景电解质的影响。结果表明,在酸性和碱性条件下,反应 48 小时时,金云母和白云母的固液分配系数(K)最大。在碱性条件下,随着反应时间增加到 44 天,金云母和白云母的 K 分别达到最大和最小。Sr(II)在黑云母和金云母上的吸附 K 随 pH 值的增加而增加,但在白云母上则随 pH 值的增加而降低。X 射线衍射分析表明,在 0.01 mol/L NaCl 条件下,pH 值低于 9.0 时,金云母的层间风化(在 2-theta 约 6.1°处出现新的衍射峰)伴随着 Sr(II)的吸附。此外,在 10 和 10 mol/L Cs 的存在下,Sr(II)的吸附受到显著抑制,导致 pH 值约为 4.1 时金云母和白云母的吸附容量相似。因此,白云母、黑云母和金云母对 Sr(II)吸附的差异主要来自于吸附和风化的协同过程,这导致了云母在一定时间内层间位点可用性的差异。