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Comparative Evaluation of Adsorption of Rare-Earth Elements in Some Soil Types

机译:一些土壤类型稀土元素吸附的比较评价

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Competitive adsorption of scandium, yttrium, and lanthanides was studied for soddy-podzolic and gray forest soils and for leached chernozem. The chemical behavior of scandium significantly differs from that of other rare-earth elements (REEs) by the quick reaching of equilibrium in the soil-solution system and by the fact that its adsorption is not described by the Langmuir equation unlike yttrium and lanthanides. Individual chemical properties of REEs are the most pronounced in the experiments on competitive adsorption. In the yttrium-lutetium sequence, there is a tendency for a gradual decrease in the maximal adsorption capacity (from 0.025 to 0.010 mmol/kg in soddy-podzolic soil and from 0.100 to 0.050 mmol/kg in leached chernozem) and more pronounced increase in the Langmuir adsorption constants (from 5000 to 25 000 L/mmol in soddy-podzolic soil and from 5000 to 40 000 L/mmol in leached chernozem). This reflects the competition between different elements for soil sorption sites, which is directly related to the change in ionic radii of the elements (so-called "lanthanide contraction"). Unlike other soils, leached chernozem absorbs a large amount of REEs and provides their stronger fixation.
机译:研究了Scandium,Yttrium和镧系元素的竞争吸附,用于SODDY-豆豆和灰林土壤和浸出的Chernozem。通过在土壤 - 溶液系统中的快速达到平衡的情况下,钪的化学行为与其他稀土元素(REES)的化学行为有显着不同,并且通过Zangmuir方程不与钇和镧和镧系相比,其吸附不是描述其吸附。 REES的个体化学性质在竞争吸附的实验中是最明显的。在钇含钇序列中,存在最大吸附能力(从0.025至0.010mmol / kg中的Soddy-podzolic土壤中的趋势逐渐减小,并且在浸出的Chernozem中的0.100至0.050mmol / kg)和更明显的增加Langmuir吸附常数(从5000至25000升/ mmol,在豆荚中的5000至40 000升/ mmol)。这反映了土壤吸附位点的不同元素之间的竞争,其与元素离子半径的变化直接相关(所谓的“镧系元素收缩”)。与其他土壤不同,浸出的Chernozem吸收大量的REES并提供更强的固定。

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