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Geochemistry And Biogeochemistry Of Rare Earth Elements In A Surface Environment (soil And Plant) In South China

机译:中国南方表层环境(土壤和植物)中稀土元素的地球化学和生物地球化学

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Plants and soils derived from different kinds of parent materials in South China were collected for analyses of rare earth elements (REEs) by inductively coupled plasma-mass spectrometry (ICP-MS). The distribution patterns and transportation characteristics of REEs in the soil-plant system were studied. The results show that geochemical characteristics of REEs depend on the types of soils, soils derived from granite being the highest in REE concentration. In a soil profile, REE concentrations are higher in B and C horizons than those in A horizon, with Eu negative anomaly and Ce positive anomaly. Plants of different genera growing in the same sampling site have quite similar REE distribution pattern, but plants of the same genera growing in different soils show considerable variation in characteristics of REEs. The patterns of the different parts of plant resemble each other, but the slope of the patterns becomes different. REEs have fractionated when they were transported and migrated from soil to plant root, stem and leaf, revealing that heavy REEs are relatively less available. REEs distributions in plants are influenced by the soil they grow in and also characterized by their individual biogeochemical characteristics. Biological absorption coefficients indicate difference of REE absorption capacity of plants.
机译:收集了华南地区不同母体来源的植物和土壤,通过电感耦合等离子体质谱法(ICP-MS)分析稀土元素(REE)。研究了稀土元素在土壤-植物系统中的分布规律和迁移特征。结果表明,稀土元素的地球化学特征取决于土壤的类型,其中花岗岩中的稀土元素含量最高。在土壤剖面中,B和C层的REE浓度高于A层的REE浓度,Eu为负,Ce为正。在同一采样点生长的不同属植物的REE分布模式非常相似,但是在不同土壤中生长的同一属植物的REEs特征表现出相当大的差异。植物的不同部分的图案彼此相似,但是图案的斜率变得不同。稀土元素在从土壤运输到植物的根,茎和叶时已经分馏,这表明重稀土元素的利用率相对较低。植物中的稀土元素分布受其生长土壤的影响,并且还具有其各自的生物地球化学特征。生物吸收系数表明植物对REE的吸收能力的差异。

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