首页> 外文期刊>Biotechnology Progress >Biosorption and Desorption of Lanthanum(III) and Neodymium(III) in Fixed-Bed Columns with Sargassum sp.: Perspectives for Separation of Rare Earth Metals
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Biosorption and Desorption of Lanthanum(III) and Neodymium(III) in Fixed-Bed Columns with Sargassum sp.: Perspectives for Separation of Rare Earth Metals

机译:固定床柱中Sargassum sp。对镧(III)和钕(III)的生物吸附和解吸:稀土金属分离的前景

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摘要

Rare earth (RE) metals are essentials for the manufacturing of high-technology products. The separation of RE is complex and expensive; biosorption is an alternative to conventional processes. This work focuses on the biosorption of monocomponent and bicomponent solutions of lanthanum(III) and neodymium(III) in fixed-bed columns using Sargassum sp. biomass. The desorption of metals with HCl 0.10 mol L~(-1) from loaded biomass is also carried out with the objective of increasing the efficiency of metal separation. Simple models have been successfully used to model breakthrough curves (i.e., Thomas, Bohart-Adams, and Yoon-Nelson equations) for the biosorption of monocomponent solutions. From, biosorption and desorption experiments in both monocomponent and bicOmponent solutions, a slight selectivity of the biomass for Nd(III) over La(III) is observed. The experiments did not find an effective separation of the RE studied, but their results indicate a possible partition between the metals, which is the fundamental condition for separation perspectives.
机译:稀土(RE)金属对于制造高科技产品至关重要。 RE的分离既复杂又昂贵。生物吸附是常规方法的替代方法。这项工作致力于使用Sargassum sp。在固定床色谱柱中对镧(III)和钕(III)的单组分和双组分溶液进行生物吸附。生物质。为了提高金属分离效率,还进行了从负载的生物质中用HCl 0.10 mol L〜(-1)解吸金属的研究。简单的模型已成功用于为单组分溶液的生物吸附建模突破曲线(即Thomas,Bohart-Adams和Yoon-Nelson方程)。从单组分和bicOponent溶液的生物吸附和解吸实验中,观察到生物质对La(III)的Nd(III)的选择性很小。实验没有找到所研究的稀土的有效分离方法,但是他们的结果表明金属之间可能存在分隔,这是分离观点的基本条件。

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