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利用不同替代生物吸附剂从水溶液中吸附稀土和有毒金属:金属亲和性评估。

Biosorption of rare-earth and toxic metals from aqueous medium using different alternative biosorbents: evaluation of metallic affinity.

机构信息

School of Chemical Engineering, University of Campinas, Albert Einstein Avenue, Campinas, 13083-852, Brazil.

出版信息

Environ Sci Pollut Res Int. 2022 Nov;29(53):79788-79797. doi: 10.1007/s11356-021-16506-6. Epub 2021 Sep 24.

DOI:10.1007/s11356-021-16506-6
PMID:34561807
Abstract

Currently, the world faces difficulties related to the quantity and quality of water because of industrial expansion, population growth, and urbanization intensification. Biosorption is considered a promising technology that can be applied to remove toxic metals (TMs) and rare-earth metals (REMs) in wastewater at low concentrations, due to its efficiency and low cost. In this work, we investigated different non-conventional biosorbents to remove metallic ions (TMs and REMs) in biosorptive affinity tests. Metallic affinity assays among lanthanum and different biosorbents showed that greater affinities were found for sericin-alginate beads crosslinked with polyvinyl alcohol (SAPVA) (0.280 mmol/g) and polyethylene glycol diglycidyl ether (SAPEG) (0.277 mmol/g), expanded vermiculite (0.281 mmol/g), Sargassum filipendula seaweed (0.287 mmol/g), and seaweed biomass waste (0.289 mmol/g). Among the biosorbents evaluated, SAPVA and SAPEG beads, besides to sericin-alginate beads crosslinked with proanthocyanidins (SAPAs) were selected for affinity assays with other REMs and TMs. Compared to other particles, SAPVA beads showed higher potential for biosorption by REMs with the following order of affinity: Yb > Dy > Nd > Ce > La. Additionally, the biosorptive affinity of TMs by SAPVA beads followed the order: Al > Cr > Pb > Cu > Cd > Zn > Ni.

摘要

目前,由于工业扩张、人口增长和城市化加剧,世界面临着与水量和水质有关的困难。由于其效率高、成本低,生物吸附被认为是一种很有前途的技术,可用于去除低浓度废水中的有毒金属 (TMs) 和稀土金属 (REMs)。在这项工作中,我们研究了不同的非常规生物吸附剂,以在生物吸附亲和力测试中去除金属离子 (TMs 和 REMs)。镧与不同生物吸附剂之间的金属亲和力测定表明,丝胶-藻酸盐珠与聚乙烯醇交联 (SAPVA) (0.280 mmol/g) 和聚乙二醇二缩水甘油醚 (SAPEG) (0.277 mmol/g)、膨胀蛭石 (0.281 mmol/g)、马尾藻 (0.287 mmol/g) 和海藻生物质废物 (0.289 mmol/g) 具有更大的亲和力。在所评估的生物吸附剂中,SAPVA 和 SAPEG 珠以及与原花青素交联的丝胶-藻酸盐珠 (SAPAs) 被选用于与其他 REMs 和 TMs 进行亲和力测定。与其他颗粒相比,SAPVA 珠对 REMs 的生物吸附具有更高的潜力,亲和力顺序为:Yb > Dy > Nd > Ce > La。此外,SAPVA 珠对 TMs 的生物吸附亲和力顺序为:Al > Cr > Pb > Cu > Cd > Zn > Ni。

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