Giannakopoulou F, Haidouti C, Chronopoulou A, Gasparatos D
Agricultural University of Athens, General and Agriculture Meteorology Laboratory, Iera Odos 75, 11855 Athens, Greece.
J Hazard Mater. 2007 Nov 19;149(3):553-6. doi: 10.1016/j.jhazmat.2007.06.109. Epub 2007 Jul 5.
In the present study we investigated the sorption behavior of Cs in four different soils (sandyloam, loam, clayloam and clay) by using batch experiment. Cs sorption characteristics of the studied soils were examined at 4 mgL(-1) Cs concentration, at various pH levels, at room temperature and with 0.01 M CaCl(2) as a background electrolyte. Among different soils the decrease of k(d) (distribution coefficient) of cesium, at all pH levels, followed the sequence sandyloam > loam > clayloam > clay, indicating that the particle size fractions and especially the clay content plays predominant role on sorption of Cs. The effect of pH on cesium sorption displays a similar pattern for all soils, depending on soil type. At acid pH levels less cesium was sorbed, due to a greater competition with other cations for available sorption sites. The maximum sorption of Cs was observed at pH 8, where the negative charge density on the surface of the absorbents was the highest. For all soils was observed significantly lower Cs sorption at pH 10.
在本研究中,我们通过批次实验研究了铯在四种不同土壤(砂壤土、壤土、粘壤土和粘土)中的吸附行为。在4 mgL(-1) 的铯浓度、不同pH水平、室温以及以0.01 M氯化钙作为背景电解质的条件下,考察了所研究土壤的铯吸附特性。在所有pH水平下,不同土壤中铯的分配系数(kd)降低顺序为砂壤土>壤土>粘壤土>粘土,这表明颗粒级分尤其是粘土含量对铯的吸附起主要作用。pH对铯吸附的影响在所有土壤中呈现相似模式,这取决于土壤类型。在酸性pH水平下,由于与其他阳离子对可用吸附位点的竞争更大,铯的吸附较少。在pH 8时观察到铯的最大吸附量,此时吸附剂表面的负电荷密度最高。在pH 10时,所有土壤中的铯吸附量均显著降低。