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Removel of uranium from aqueous solutions by spirodela punctata as the mechanism of biomineralization

机译:通过螺索德拉丘塞塔从水溶液中除去铀作为生物碳化的机制

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Click here and insert your abstract text. This study evaluates the feasibility of biosorption of uranium from aqueous solutions using living and dried S. punctata. The uranium maximum removal efficiency for the plant cultivar occurrs in the soluation at pH 4-5 and the uranium removal efficiency exceeds 90%. In the kinetics studies, the dried powder of duckweed can reach nearly 80% adsorption within 5 min, and the batch adsorption equilibrium can be reached within 24 h for the living and dried powder of duckweed. Both for the living and dried powder of duckweed, the experimental data were fitted by the pseudo-second-order rate model with the degree of fitting (R~2) higher than 0.99. The uranium was deposited onto the root surface of living S. punctata as 100-500 nanometer size schistose structures that consist of primarily U (82.5%,wt%) and P(8.76 %,wt %), and no carbon; while no similar uranium phosphate minerals were found on the dried powder of S. punctata, as revealed by scanning electron microscope and energy dispersive spectrometer analysis. The results suggest that there is one particularly promising biosportion processes, namely, biomineralization. And the root surface of the living S. punctata plays an important role in the uranium phosphate precipitate processes, not only play as a carrier of the functional groups but also as a substrate inducing the nucleation of uranium-phosphate nanoparticles. The dried powder of S. punctata adsorption of U is mainly through the effect of electrostatic attraction, ion exchange, and complexation coordination.
机译:单击此处并插入抽象文本。本研究评估了使用活生植物和干燥的乳头溶液从水溶液中生物吸附的可行性。植物品种在pH4-5溶液中的铀的最大去除效率在溶质中溶液和铀去除效率超过90%。在动力学研究中,鸭草的干燥粉末可以在5分钟内达到近80%的吸附,并且可以在24小时内达到批量吸附平衡,以使浮萍的活性和干燥的粉末。对于浮萍的活性和干燥的粉末,实验数据被伪二阶速率模型装配,具有高于0.99的拟合度(R〜2)。将铀沉积在生活S.Punctata的根表面上,作为100-500纳米尺寸的血基结构,该结构主要由U(82.5%,重量%)和P(8.76%,重量%)和无碳;虽然在S.Punctata的干燥粉末中没有发现类似的磷酸铀矿物,但通过扫描电子显微镜和能量分散光谱仪分析揭示。结果表明,存在一个特别有前途的生物产物过程,即生物矿化。并且生活S.Punctata的根表面在磷酸铀沉淀过程中起重要作用,不仅可以作为官能团的载体,而且作为诱导铀 - 磷酸纳米粒子成核的基材。 S.Punctata的干燥粉末吸附U主要是通过静电吸引,离子交换和络合协调的影响。

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