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扇贝壳作为用于从水中去除重金属的生物吸附剂:壳成分在从水相中吸附镉的过程中的作用及机制

Scallop shells as biosorbents for water remediation from heavy metals: Contributions and mechanism of shell components in the adsorption of cadmium from aqueous matrix.

作者信息

Chenet Tatiana, Schwarz Gunnar, Neff Christoph, Hattendorf Bodo, Günther Detlef, Martucci Annalisa, Cescon Mirco, Baldi Andrea, Pasti Luisa

机构信息

Department of Environment and Prevention Sciences, University of Ferrara, Via Borsari, 46, 44121, Ferrara, Italy.

Laboratory of Inorganic Chemistry, ETH Zürich, Vladimir-Prelog-Weg, 1, 8093, Zürich, Switzerland.

出版信息

Heliyon. 2024 Apr 5;10(7):e29296. doi: 10.1016/j.heliyon.2024.e29296. eCollection 2024 Apr 15.

Abstract

To ascertain their potential for heavy metal pollution remedy, we studied the adsorption mechanism of cadmium onto scallop shells and the interactions between the heavy metal and the shell matrix. Intact shells were used to investigate the uptake and diffusion of the metal contaminant onto the shell carbonatic layers, as well as to evaluate the distribution of major and trace elements in the matrix. LA-ICPMS measurements demonstrate that Cd is adsorbed on a very thin layer on the inner and outer surfaces of the shell. Structural and thermal analyses showed the presence of 9 wt.-% of a CdCO phase indicating that the adsorption is mainly a superficial process which involves different processes, including ion exchange of Ca by Cd. In addition, organic components of the shell could contribute to adsorption as highlighted by different metal uptake observed for shells with different colours. In particular, darker shells appeared to adsorb more contaminant than the white ones. The contribution of the organic shell components on the adsorption of heavy metals was also highlighted by the element bulk content which showed higher concentrations of different metals in the darker specimen. Raman spectroscopy allowed to identify the pigments as carotenoids, confirmed by XRD measurements which highlighted the presence of astaxanthin phases. The results presented here provide new insights into the Cd adsorption mechanism highlighting the important contribution given by the organic components present in the biogenic carbonate matrix. Furthermore, the high efficiency of Cd removal from water by scallop shells, supported by adsorption kinetic and isotherm studies, has been demonstrated.

摘要

为了确定它们在重金属污染修复方面的潜力,我们研究了镉在扇贝壳上的吸附机制以及重金属与壳基质之间的相互作用。使用完整的贝壳来研究金属污染物在贝壳碳酸盐层上的吸收和扩散,以及评估基质中主要和微量元素的分布。激光烧蚀电感耦合等离子体质谱测量表明,镉吸附在贝壳内外表面的非常薄的一层上。结构和热分析表明存在9重量%的碳酸镉相,这表明吸附主要是一个表面过程,涉及不同的过程,包括镉对钙的离子交换。此外,贝壳的有机成分可能有助于吸附,不同颜色贝壳观察到的不同金属吸收情况突出了这一点。特别是,颜色较深的贝壳似乎比白色贝壳吸附更多的污染物。元素总量也突出了贝壳有机成分对重金属吸附的贡献,其显示较深色样本中不同金属的浓度更高。拉曼光谱能够将色素鉴定为类胡萝卜素,X射线衍射测量证实了这一点,该测量突出了虾青素相的存在。这里呈现的结果为镉的吸附机制提供了新的见解,突出了生物源碳酸盐基质中存在的有机成分所起的重要作用。此外,吸附动力学和等温线研究支持了扇贝壳从水中高效去除镉的能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ced/11004421/31ff3051f18e/ga1.jpg

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