Tofan Lavinia
Department of Environmental Engineering and Management, "Cristofor Simionescu" Faculty of Chemical Engineering and Environmental Protection, "Gheorghe Asachi" Technical University of Iasi, 73 D. Mangeron Blvd, 700050 Iasi, Romania.
Polymers (Basel). 2022 Apr 19;14(9):1647. doi: 10.3390/polym14091647.
The gradual replacement of conventional materials with materials tailored to the green development goals is one of the needs of the day. Correspondingly, this article reviews and integrates, for the first time, the gathered knowledge on the use of the adsorbents based on polymeric biomasses (biosorbents) for a cleaner separation of cobalt (Co) from synthetic and actual solutions. It is a two-part comprehensive approach that debates the Co biosorption potential of bio-based polymers from the perspective of their virtual and real applications for decontamination, recovery, and analytical purposes. First, the removal performances of these materials to batch and fixed column biosorption of Co(II) from mono-component and multi-metallic laboratory solutions are systematized and discussed. Following that, the focus of the first part is shifted to the analytical capabilities of the biosorbents proposed for Co(II) quantification from synthetic solutions. The second section considers the polymeric biomasses successfully incorporated in practical strategies for the removal and recovery of Co(II) from real solutions. The opportunities provided by the use of biosorbents for the development of accurate and greener procedures in Co(II) analysis are also highlighted. The directions in which the research on this topic should be continued and strengthened are suggested.
用符合绿色发展目标的定制材料逐步取代传统材料是当今的需求之一。相应地,本文首次回顾并整合了关于使用基于聚合生物质的吸附剂(生物吸附剂)从合成溶液和实际溶液中更清洁地分离钴(Co)的已积累知识。这是一种分为两部分的综合方法,从生物基聚合物在去污、回收和分析目的的虚拟和实际应用角度探讨其对钴的生物吸附潜力。首先,系统地讨论了这些材料对单组分和多金属实验室溶液中Co(II)的间歇式和固定柱生物吸附的去除性能。随后,第一部分的重点转向了从合成溶液中定量Co(II)所提出的生物吸附剂的分析能力。第二部分考虑了成功应用于从实际溶液中去除和回收Co(II)的实际策略中的聚合生物质。还强调了使用生物吸附剂为Co(II)分析开发准确且更环保程序所带来的机遇。提出了该主题研究应继续和加强的方向。