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竞争生物吸附 Cu 和 Ag 离子在褐藻废料上的研究:动力学和离子交换研究。

Competitive biosorption of Cu and Ag ions on brown macro-algae waste: kinetic and ion-exchange studies.

机构信息

School of Chemical Engineering, Universidade Estadual de Campinas, Albert Einstein av., Campinas, São Paulo, 13083-852, Brazil.

出版信息

Environ Sci Pollut Res Int. 2019 Aug;26(23):23416-23428. doi: 10.1007/s11356-019-05471-w. Epub 2019 Jun 14.

Abstract

The application of biosorption operation has gained attention in the removal and retrieval of toxic metal ions from water bodies. Wastewater from industrial activity generally presents great complexity due to the coadsorption of cations to the inactive biomass binding sites. In this work, the competitive biosorption of Cu(II) and Ag(I) ions was studied in batch systems. A kinetic study applying a non-acidified and acidified waste of Sargassum filipendula in equimolar and non-equimolar metal samples was carried out and the acidified biosorbent was selected due to higher removal rates and selectivity of silver ions. The assays were performed with 2 g L of biosorbent concentration at 25 °C for 12 h and pH was controlled at around 5.0. Copper presented higher affinity for the biosorbent and a fast biosorption kinetic profile, while silver equilibrium times exhibited dependence on the copper concentration. External diffusion is the rate-limiting step in Cu(II) ion removal and it might also limit the kinetic rates of Ag(I) ions with intraparticle diffusion, depending on the initial concentration of metal cations. The ion-exchange mechanism is evidenced and complexation and electrostatic attraction mechanisms might be suggested, explained by simultaneous chemisorption and physisorption processes during the operation. Calcium and sodium were released in considerable amounts by the ion-exchange mechanism. Characterization analyses confirmed the role of several functional groups in the competitive biosorption accompanied by a homogenous covering of both metal ions on the surface of the particles. Particle porosity analyses revealed that the material is macroporous and an appreciable amount of macropores are filled with metal cations after biosorption.

摘要

从水体中去除和回收有毒金属离子的生物吸附操作应用受到关注。工业活动废水通常由于阳离子与非活性生物质结合位点的共吸附而呈现出极大的复杂性。在这项工作中,在批处理系统中研究了 Cu(II)和 Ag(I)离子的竞争生物吸附。进行了动力学研究,应用未经酸化和酸化的 Sargassum filipendula 废物进行等摩尔和非等摩尔金属样品的研究,由于银离子的去除率和选择性更高,选择了酸化的生物吸附剂。在 25°C 下进行了 12 小时,2 g L 的生物吸附剂浓度和 pH 值控制在 5.0 左右的试验。铜对生物吸附剂具有更高的亲和力和快速的生物吸附动力学特性,而银的平衡时间取决于铜的浓度。外部扩散是去除 Cu(II)离子的速率限制步骤,它也可能限制 Ag(I)离子的动力学速率,这取决于金属阳离子的初始浓度。离子交换机制得到证实,并且可能提出配位和静电吸引机制,这可以通过操作过程中的同时化学吸附和物理吸附过程来解释。钙和钠通过离子交换机制大量释放。特征分析证实了在竞争生物吸附中几种官能团的作用,伴随着两种金属离子在颗粒表面上的均匀覆盖。颗粒孔隙率分析表明,该材料是大孔的,并且在生物吸附后,大量的大孔被金属阳离子填充。

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