Department of Environmental Engineering and Soil Environment Research Center, Chonbuk National University, 567 Baekje-daero, Deokjin-gu, Jeonju-si, Jeollabuk-do, 54896, Republic of Korea.
Systems Biotechnology Research Center, KIST Gangneung Institute of Natural Products, 679 Saimdang-ro, Gangneung-si, Gangwon-do, 25451, Republic of Korea.
Environ Geochem Health. 2019 Feb;41(1):149-157. doi: 10.1007/s10653-018-0174-0. Epub 2018 Aug 24.
The retention of radioactive cesium (Cs) in soil is significantly related to the types of clay minerals, while the weathering process affects the irreversible adsorption sites in clay minerals. In this study, the effect of weathering (exposure duration of Cs and repeated wetting and drying cycles) on fractionation of Cs in soils was investigated using fractionation analysis by the sequential extraction. The residual fraction of Cs increased slowly with exposure time but increased rapidly by repeated wetting and drying cycles. XRD analysis shows that a 1.43 nm of interlayer size for vermiculite is shortened to 1.00 nm, i.e., similar to that of illite. The change implies the potential that the structure of expandable clay minerals is transformed to the non-expandable structure by weathering process after Cs retention. Based on the result, the residual fraction of Cs, most stable form of Cs in the soil, reached relatively rapidly to a maximum. However, the process is much slower kinetically in the field because the bench-scale weathering process used in this study is more aggressive. This study implies that Cs fractionations in the soil are converted into a more stable fraction by weathering processes in the soil. Therefore, Cs removal should be conducted as soon as possible after accidental release of Cs in an environmental side.
土壤中放射性铯(Cs)的保留与粘土矿物的类型密切相关,而风化过程影响粘土矿物中不可逆吸附位。本研究采用连续提取法的分级分析,研究了风化(Cs 暴露时间和反复干湿循环)对土壤中 Cs 分级的影响。Cs 的残留部分随暴露时间缓慢增加,但通过反复干湿循环迅速增加。XRD 分析表明,蛭石的 1.43nm 层间尺寸缩短至 1.00nm,即类似于伊利石。这种变化意味着,在 Cs 保留后,风化过程可能会使可膨胀粘土矿物的结构转化为不可膨胀的结构。基于这一结果,土壤中 Cs 的残留部分(土壤中 Cs 最稳定的形式)迅速达到最大值。然而,由于本研究中使用的台架风化过程更为剧烈,因此在野外,这一过程的动力学速度要慢得多。本研究表明,土壤中的 Cs 分级在土壤风化过程中转化为更稳定的分级。因此,在环境侧 Cs 意外释放后,应尽快进行 Cs 去除。